* [misc]progress: [Phase 1 of 3] Setting up. * * * [misc]progress: [1/2] Preparing points * * * * [misc]points: Sampling 256 additional inputs, on iter 0 have 0 / 256 * * * * [misc]points: Computing exacts on every 16 of 256 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 8 of 256 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 4 of 256 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 2 of 256 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts for 256 points * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Filtering points with unrepresentable outputs * * * * [exit]points: Sampled 256 points with exact outputs * * * [misc]progress: [2/2] Setting up program. * [misc]progress: [Phase 2 of 3] Improving. * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * [misc]progress: iteration 1 / 4 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 1 ] rewriting at (2) * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 1 ] generating series at (2) * [misc]approximate: Taking taylor expansion of (/ (atan2 im re) (log 10)) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (atan2 im re) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 im re) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 im re) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 im re) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]approximate: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re))) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]approximate: Taking taylor expansion of (/ (atan2 (/ 1 (- im)) (/ 1 (- re))) (log 10)) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 (- im)) (/ 1 (- re))) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 (- im)) (/ 1 (- re))) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 (- im)) (/ 1 (- re))) (log 10)) in im * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re)))) (log 10)) into (/ (atan2 im re) (log 10)) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 30 ] simplifiying candidate # * * * * [misc]progress: [ 2 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (- (log (atan2 im re)) (log (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (11 enodes) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * * * * [misc]progress: [ 3 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (log (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (12 enodes) * * [misc]simplify: iters left: 1 (13 enodes) * [exit]simplify: Simplified to (log (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (log (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 4 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (exp (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (exp (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 5 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (* (atan2 im re) (atan2 im re)) (atan2 im re)) (* (* (log 10) (log 10)) (log 10))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (19 enodes) * * [misc]simplify: iters left: 4 (47 enodes) * * [misc]simplify: iters left: 3 (97 enodes) * * [misc]simplify: iters left: 2 (150 enodes) * * [misc]simplify: iters left: 1 (167 enodes) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * * * * [misc]progress: [ 6 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (atan2 im re) (log 10))) (cbrt (/ (atan2 im re) (log 10)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (atan2 im re) (log 10))) (cbrt (/ (atan2 im re) (log 10)))) * [exit]simplify: Simplified to (* (cbrt (/ (atan2 im re) (log 10))) (cbrt (/ (atan2 im re) (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (cbrt (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 7 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (/ (atan2 im re) (log 10)) (/ (atan2 im re) (log 10))) (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * * [misc]simplify: iters left: 4 (35 enodes) * * [misc]simplify: iters left: 3 (60 enodes) * * [misc]simplify: iters left: 2 (101 enodes) * * [misc]simplify: iters left: 1 (132 enodes) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * * * * [misc]progress: [ 8 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [enter]simplify: Simplifying (sqrt (/ (atan2 im re) (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 9 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (- (atan2 im re)) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (- (atan2 im re)) * [exit]simplify: Simplified to (- (atan2 im re)) * [enter]simplify: Simplifying (- (log 10)) * * [misc]simplify: iters left: 3 (3 enodes) * [exit]simplify: Simplified to (- (log 10)) * [exit]simplify: Simplified to (- (log 10)) * * * * [misc]progress: [ 10 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) (* (cbrt (log 10)) (cbrt (log 10)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (25 enodes) * * [misc]simplify: iters left: 3 (28 enodes) * * [misc]simplify: iters left: 2 (31 enodes) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (cbrt (log 10))) (/ (cbrt (atan2 im re)) (cbrt (log 10)))) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (cbrt (log 10))) (/ (cbrt (atan2 im re)) (cbrt (log 10)))) * [enter]simplify: Simplifying (/ (cbrt (atan2 im re)) (cbrt (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (cbrt (log 10))) * * * * [misc]progress: [ 11 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) (sqrt (log 10))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (13 enodes) * * [misc]simplify: iters left: 3 (14 enodes) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (/ (cbrt (atan2 im re)) (sqrt (log 10)))) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (/ (cbrt (atan2 im re)) (sqrt (log 10)))) * [enter]simplify: Simplifying (/ (cbrt (atan2 im re)) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (sqrt (log 10))) * * * * [misc]progress: [ 12 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) 1) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * [enter]simplify: Simplifying (/ (cbrt (atan2 im re)) (log 10)) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (log 10)) * [exit]simplify: Simplified to (/ (cbrt (atan2 im re)) (log 10)) * * * * [misc]progress: [ 13 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) (* (cbrt (log 10)) (cbrt (log 10)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (/ (/ (sqrt (atan2 im re)) (cbrt (log 10))) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (/ (sqrt (atan2 im re)) (cbrt (log 10))) (cbrt (log 10))) * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) (cbrt (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (cbrt (log 10))) * * * * [misc]progress: [ 14 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * * * * [misc]progress: [ 15 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) 1) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * * [misc]simplify: iters left: 2 (10 enodes) * [exit]simplify: Simplified to (sqrt (atan2 im re)) * [exit]simplify: Simplified to (sqrt (atan2 im re)) * [enter]simplify: Simplifying (/ (sqrt (atan2 im re)) (log 10)) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (log 10)) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (log 10)) * * * * [misc]progress: [ 16 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (* (cbrt (log 10)) (cbrt (log 10)))) * * [misc]simplify: iters left: 6 (6 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (/ 1 (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (/ 1 (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (/ (atan2 im re) (cbrt (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (atan2 im re) (cbrt (log 10))) * * * * [misc]progress: [ 17 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (sqrt (log 10))) * * [misc]simplify: iters left: 4 (5 enodes) * * [misc]simplify: iters left: 3 (7 enodes) * [exit]simplify: Simplified to (/ 1 (sqrt (log 10))) * [exit]simplify: Simplified to (/ 1 (sqrt (log 10))) * [enter]simplify: Simplifying (/ (atan2 im re) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * * * * [misc]progress: [ 18 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to 1 * [exit]simplify: Simplified to 1 * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 19 / 30 ] simplifiying candidate # * * * * [misc]progress: [ 20 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (log 10)) * * [misc]simplify: iters left: 3 (4 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (/ 1 (log 10)) * [exit]simplify: Simplified to (/ 1 (log 10)) * * * * [misc]progress: [ 21 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (atan2 im re)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 22 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (* (cbrt (log 10)) (cbrt (log 10)))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (/ (/ (atan2 im re) (cbrt (log 10))) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (/ (atan2 im re) (cbrt (log 10))) (cbrt (log 10))) * * * * [misc]progress: [ 23 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * * * * [misc]progress: [ 24 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) 1) * * [misc]simplify: iters left: 3 (5 enodes) * * [misc]simplify: iters left: 2 (7 enodes) * * [misc]simplify: iters left: 1 (9 enodes) * [exit]simplify: Simplified to (atan2 im re) * [exit]simplify: Simplified to (atan2 im re) * * * * [misc]progress: [ 25 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (cbrt (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (log 10) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (log 10) (cbrt (atan2 im re))) * * * * [misc]progress: [ 26 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * * * * [misc]progress: [ 27 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (atan2 im re)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 28 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 29 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 30 / 30 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * [misc]progress: adding candidates to table * * [misc]progress: iteration 2 / 4 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 2 ] rewriting at (2 2) * * * * [misc]progress: [ 2 / 2 ] rewriting at (2) * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 2 ] generating series at (2 2) * [misc]approximate: Taking taylor expansion of (/ (log 10) (atan2 im re)) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]approximate: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) into (/ (log 10) (atan2 im re)) * [misc]approximate: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) into (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 2 / 2 ] generating series at (2) * [misc]approximate: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 im re))) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 im re))) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 im re))) into (/ (atan2 im re) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 im re) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 im re) (log 10)) (/ 0 (/ (log 10) (atan2 im re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 im re) (log 10)) (/ 0 (/ (log 10) (atan2 im re)))) (* 0 (/ 0 (/ (log 10) (atan2 im re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 im re) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 im re) (log 10)) (/ 0 (/ (log 10) (atan2 im re)))) (* 0 (/ 0 (/ (log 10) (atan2 im re)))) (* 0 (/ 0 (/ (log 10) (atan2 im re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 im re) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]approximate: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) into (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ 1 im) (/ 1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re))) (log 10)) into (/ (atan2 im re) (log 10)) * [misc]approximate: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ 1 (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (/ 1 (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]taylor: Taking taylor expansion of (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) into (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (log 10)) (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (log 10))) (* 0 (/ 0 (log 10))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ (atan2 (/ -1 im) (/ -1 re)) (log 10)) (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) (* 0 (/ 0 (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re)))) (log 10)) into (/ (atan2 im re) (log 10)) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 61 ] simplifiying candidate # * * * * [misc]progress: [ 2 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- (log (log 10)) (log (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (11 enodes) * [exit]simplify: Simplified to (- (log (log 10)) (log (atan2 im re))) * [exit]simplify: Simplified to (- (log (log 10)) (log (atan2 im re))) * * * * [misc]progress: [ 3 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (log (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (12 enodes) * * [misc]simplify: iters left: 1 (13 enodes) * [exit]simplify: Simplified to (log (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (log (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 4 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (exp (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (exp (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 5 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (* (log 10) (log 10)) (log 10)) (* (* (atan2 im re) (atan2 im re)) (atan2 im re))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (19 enodes) * * [misc]simplify: iters left: 4 (47 enodes) * * [misc]simplify: iters left: 3 (97 enodes) * * [misc]simplify: iters left: 2 (150 enodes) * * [misc]simplify: iters left: 1 (167 enodes) * [exit]simplify: Simplified to (pow (/ (log 10) (atan2 im re)) 3) * [exit]simplify: Simplified to (pow (/ (log 10) (atan2 im re)) 3) * * * * [misc]progress: [ 6 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 7 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * * [misc]simplify: iters left: 4 (35 enodes) * * [misc]simplify: iters left: 3 (60 enodes) * * [misc]simplify: iters left: 2 (101 enodes) * * [misc]simplify: iters left: 1 (130 enodes) * [exit]simplify: Simplified to (pow (/ (log 10) (atan2 im re)) 3) * [exit]simplify: Simplified to (pow (/ (log 10) (atan2 im re)) 3) * * * * [misc]progress: [ 8 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (sqrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (sqrt (/ (log 10) (atan2 im re))) * [enter]simplify: Simplifying (sqrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (sqrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (sqrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 9 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- (log 10)) * * [misc]simplify: iters left: 3 (3 enodes) * [exit]simplify: Simplified to (- (log 10)) * [exit]simplify: Simplified to (- (log 10)) * [enter]simplify: Simplifying (- (atan2 im re)) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (- (atan2 im re)) * [exit]simplify: Simplified to (- (atan2 im re)) * * * * [misc]progress: [ 10 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (25 enodes) * * [misc]simplify: iters left: 3 (28 enodes) * * [misc]simplify: iters left: 2 (31 enodes) * [exit]simplify: Simplified to (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (/ (cbrt (log 10)) (cbrt (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (cbrt (atan2 im re))) * * * * [misc]progress: [ 11 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (13 enodes) * * [misc]simplify: iters left: 3 (14 enodes) * [exit]simplify: Simplified to (* (/ (cbrt (log 10)) (sqrt (atan2 im re))) (cbrt (log 10))) * [exit]simplify: Simplified to (* (/ (cbrt (log 10)) (sqrt (atan2 im re))) (cbrt (log 10))) * [enter]simplify: Simplifying (/ (cbrt (log 10)) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (sqrt (atan2 im re))) * * * * [misc]progress: [ 12 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (* (cbrt (log 10)) (cbrt (log 10))) 1) * * [misc]simplify: iters left: 6 (6 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * * [misc]simplify: iters left: 3 (21 enodes) * * [misc]simplify: iters left: 2 (31 enodes) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (log 10))) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (log 10))) * [enter]simplify: Simplifying (/ (cbrt (log 10)) (atan2 im re)) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (atan2 im re)) * [exit]simplify: Simplified to (/ (cbrt (log 10)) (atan2 im re)) * * * * [misc]progress: [ 13 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re))) * [enter]simplify: Simplifying (/ (sqrt (log 10)) (cbrt (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (cbrt (atan2 im re))) * * * * [misc]progress: [ 14 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (log 10)) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (sqrt (atan2 im re))) * [enter]simplify: Simplifying (/ (sqrt (log 10)) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (8 enodes) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (sqrt (atan2 im re))) * * * * [misc]progress: [ 15 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (sqrt (log 10)) 1) * * [misc]simplify: iters left: 4 (5 enodes) * * [misc]simplify: iters left: 3 (7 enodes) * * [misc]simplify: iters left: 2 (9 enodes) * [exit]simplify: Simplified to (sqrt (log 10)) * [exit]simplify: Simplified to (sqrt (log 10)) * [enter]simplify: Simplifying (/ (sqrt (log 10)) (atan2 im re)) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (atan2 im re)) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (atan2 im re)) * * * * [misc]progress: [ 16 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (atan2 im re))) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (atan2 im re))) (cbrt (atan2 im re))) * [enter]simplify: Simplifying (/ (log 10) (cbrt (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (log 10) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (log 10) (cbrt (atan2 im re))) * * * * [misc]progress: [ 17 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (/ 1 (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ 1 (sqrt (atan2 im re))) * [enter]simplify: Simplifying (/ (log 10) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * * * * [misc]progress: [ 18 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to 1 * [exit]simplify: Simplified to 1 * [enter]simplify: Simplifying (/ (log 10) (atan2 im re)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 19 / 61 ] simplifiying candidate # * * * * [misc]progress: [ 20 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (atan2 im re)) * * [misc]simplify: iters left: 3 (5 enodes) * * [misc]simplify: iters left: 2 (7 enodes) * [exit]simplify: Simplified to (/ 1 (atan2 im re)) * [exit]simplify: Simplified to (/ 1 (atan2 im re)) * * * * [misc]progress: [ 21 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 22 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (/ (/ (log 10) (cbrt (atan2 im re))) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (/ (/ (log 10) (cbrt (atan2 im re))) (cbrt (atan2 im re))) * * * * [misc]progress: [ 23 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) (sqrt (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * [exit]simplify: Simplified to (/ (log 10) (sqrt (atan2 im re))) * * * * [misc]progress: [ 24 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (log 10) 1) * * [misc]simplify: iters left: 3 (4 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * * [misc]simplify: iters left: 1 (8 enodes) * [exit]simplify: Simplified to (log 10) * [exit]simplify: Simplified to (log 10) * * * * [misc]progress: [ 25 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (cbrt (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (cbrt (log 10))) * [exit]simplify: Simplified to (/ (atan2 im re) (cbrt (log 10))) * * * * [misc]progress: [ 26 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (sqrt (log 10))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (atan2 im re) (sqrt (log 10))) * * * * [misc]progress: [ 27 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 28 / 61 ] simplifiying candidate # * * * * [misc]progress: [ 29 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to (- 1) * [exit]simplify: Simplified to (- 1) * * * * [misc]progress: [ 30 / 61 ] simplifiying candidate # * * * * [misc]progress: [ 31 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- (- (log (log 10)) (log (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (15 enodes) * * [misc]simplify: iters left: 3 (20 enodes) * * [misc]simplify: iters left: 2 (26 enodes) * * [misc]simplify: iters left: 1 (30 enodes) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * * * * [misc]progress: [ 32 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- (log (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (13 enodes) * * [misc]simplify: iters left: 3 (17 enodes) * * [misc]simplify: iters left: 2 (22 enodes) * * [misc]simplify: iters left: 1 (28 enodes) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * [exit]simplify: Simplified to (- (log (atan2 im re)) (log (log 10))) * * * * [misc]progress: [ 33 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (log (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (48 enodes) * * [misc]simplify: iters left: 2 (114 enodes) * * [misc]simplify: iters left: 1 (212 enodes) * [exit]simplify: Simplified to (log (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (log (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 34 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * * [misc]simplify: iters left: 3 (26 enodes) * * [misc]simplify: iters left: 2 (35 enodes) * * [misc]simplify: iters left: 1 (45 enodes) * [exit]simplify: Simplified to (exp (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (exp (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 35 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ 1 (/ (log 10) (atan2 im re)))) (cbrt (/ 1 (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (25 enodes) * * [misc]simplify: iters left: 2 (34 enodes) * * [misc]simplify: iters left: 1 (44 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (atan2 im re) (log 10))) (cbrt (/ (atan2 im re) (log 10)))) * [exit]simplify: Simplified to (* (cbrt (/ (atan2 im re) (log 10))) (cbrt (/ (atan2 im re) (log 10)))) * [enter]simplify: Simplifying (cbrt (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * * [misc]simplify: iters left: 3 (24 enodes) * * [misc]simplify: iters left: 2 (33 enodes) * * [misc]simplify: iters left: 1 (43 enodes) * [exit]simplify: Simplified to (cbrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (cbrt (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 36 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (/ 1 (/ (log 10) (atan2 im re))) (/ 1 (/ (log 10) (atan2 im re)))) (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (21 enodes) * * [misc]simplify: iters left: 4 (47 enodes) * * [misc]simplify: iters left: 3 (147 enodes) * * [misc]simplify: iters left: 2 (358 enodes) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * [exit]simplify: Simplified to (pow (/ (atan2 im re) (log 10)) 3) * * * * [misc]progress: [ 37 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * * [misc]simplify: iters left: 3 (24 enodes) * * [misc]simplify: iters left: 2 (33 enodes) * * [misc]simplify: iters left: 1 (43 enodes) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [enter]simplify: Simplifying (sqrt (/ 1 (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * * [misc]simplify: iters left: 3 (24 enodes) * * [misc]simplify: iters left: 2 (33 enodes) * * [misc]simplify: iters left: 1 (43 enodes) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * [exit]simplify: Simplified to (sqrt (/ (atan2 im re) (log 10))) * * * * [misc]progress: [ 38 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (- 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to (- 1) * [exit]simplify: Simplified to (- 1) * [enter]simplify: Simplifying (- (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (- (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (- (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 39 / 61 ] simplifiying candidate # * * * * [misc]progress: [ 40 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (31 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 41 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ (log 10) (atan2 im re)) 1) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * * [misc]simplify: iters left: 2 (19 enodes) * * [misc]simplify: iters left: 1 (20 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 42 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 43 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (/ 1 (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (/ 1 (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 44 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (22 enodes) * * [misc]simplify: iters left: 4 (40 enodes) * * [misc]simplify: iters left: 3 (62 enodes) * * [misc]simplify: iters left: 2 (168 enodes) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (cbrt (log 10))) (/ (cbrt (atan2 im re)) (cbrt (log 10)))) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (cbrt (log 10))) (/ (cbrt (atan2 im re)) (cbrt (log 10)))) * * * * [misc]progress: [ 45 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (44 enodes) * * [misc]simplify: iters left: 2 (85 enodes) * * [misc]simplify: iters left: 1 (192 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (* (cbrt (log 10)) (cbrt (log 10)))) * * * * [misc]progress: [ 46 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (22 enodes) * * [misc]simplify: iters left: 3 (30 enodes) * * [misc]simplify: iters left: 2 (42 enodes) * [exit]simplify: Simplified to (/ 1 (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (/ 1 (* (cbrt (log 10)) (cbrt (log 10)))) * * * * [misc]progress: [ 47 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (22 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (59 enodes) * * [misc]simplify: iters left: 1 (112 enodes) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (sqrt (log 10))) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (* (/ (cbrt (atan2 im re)) (sqrt (log 10))) (cbrt (atan2 im re))) * * * * [misc]progress: [ 48 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (25 enodes) * * [misc]simplify: iters left: 2 (33 enodes) * * [misc]simplify: iters left: 1 (43 enodes) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * [exit]simplify: Simplified to (/ (sqrt (atan2 im re)) (sqrt (log 10))) * * * * [misc]progress: [ 49 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 6 (6 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * [exit]simplify: Simplified to (/ 1 (sqrt (log 10))) * [exit]simplify: Simplified to (/ 1 (sqrt (log 10))) * * * * [misc]progress: [ 50 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (21 enodes) * * [misc]simplify: iters left: 3 (23 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * * [misc]simplify: iters left: 1 (40 enodes) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * * * * [misc]progress: [ 51 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (19 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * [exit]simplify: Simplified to (sqrt (atan2 im re)) * [exit]simplify: Simplified to (sqrt (atan2 im re)) * * * * [misc]progress: [ 52 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ 1 1)) * * [misc]simplify: iters left: 4 (3 enodes) * * [misc]simplify: iters left: 3 (5 enodes) * [exit]simplify: Simplified to 1 * [exit]simplify: Simplified to 1 * * * * [misc]progress: [ 53 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to 1 * [exit]simplify: Simplified to 1 * * * * [misc]progress: [ 54 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (log 10)) * * [misc]simplify: iters left: 3 (4 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (/ 1 (log 10)) * [exit]simplify: Simplified to (/ 1 (log 10)) * * * * [misc]progress: [ 55 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (log 10)) * * [misc]simplify: iters left: 3 (4 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (/ 1 (log 10)) * [exit]simplify: Simplified to (/ 1 (log 10)) * * * * [misc]progress: [ 56 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (31 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 57 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (31 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 58 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ 1 (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (31 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 59 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 60 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 61 / 61 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (atan2 im re) (log 10)) * * [misc]simplify: iters left: 3 (6 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * [misc]progress: adding candidates to table * * [misc]progress: iteration 3 / 4 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 4 ] rewriting at (2 2) * * * * [misc]progress: [ 2 / 4 ] rewriting at (2 1 2 2) * * * * [misc]progress: [ 3 / 4 ] rewriting at (2 1 2 1) * * * * [misc]progress: [ 4 / 4 ] rewriting at (2 1 2) * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 4 ] generating series at (2 2) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 im re)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * * * * [misc]progress: [ 2 / 4 ] generating series at (2 1 2 2) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 im re)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * * * * [misc]progress: [ 3 / 4 ] generating series at (2 1 2 1) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 im re)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * * * * [misc]progress: [ 4 / 4 ] generating series at (2 1 2) * [misc]approximate: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (* (pow (/ (log 10) (atan2 im re)) 1/3) (pow (/ (log 10) (atan2 im re)) 1/3)) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))) in re * [misc]taylor: Taking taylor expansion of (/ (pow (log 10) 2) (pow (atan2 im re) 2)) in re * [misc]taylor: Taking taylor expansion of (pow (log 10) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (log 10)))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (log 10))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (log (log 10)) into (log (log 10)) * [misc]backup-simplify: Simplify (* 2 (log (log 10))) into (* 2 (log (log 10))) * [misc]backup-simplify: Simplify (exp (* 2 (log (log 10)))) into (pow (log 10) 2) * [misc]taylor: Taking taylor expansion of (pow (atan2 im re) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (log (atan2 im re)) into (log (atan2 im re)) * [misc]backup-simplify: Simplify (* 2 (log (atan2 im re))) into (* 2 (log (atan2 im re))) * [misc]backup-simplify: Simplify (exp (* 2 (log (atan2 im re)))) into (pow (atan2 im re) 2) * [misc]backup-simplify: Simplify (/ (pow (log 10) 2) (pow (atan2 im re) 2)) into (/ (pow (log 10) 2) (pow (atan2 im re) 2)) * [misc]backup-simplify: Simplify (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))) into (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2)))) into (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))))) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 im re)) 1/3) 0) (* 0 (pow (/ (log 10) (atan2 im re)) 1/3))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (log 10) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (log 10)))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (atan2 im re) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (atan2 im re)))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 im re)))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 im re) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 im re) 2)) (/ 0 (pow (atan2 im re) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 im re)) 1/3) 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 im re)) 1/3)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (log 10) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (log 10) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (log 10))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (atan2 im re) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (atan2 im re) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 im re)))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 im re) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 im re) 2)) (/ 0 (pow (atan2 im re) 2))) (* 0 (/ 0 (pow (atan2 im re) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 im re) 2))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 im re)) 1/3) 0) (+ (* 0 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 im re)) 1/3))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * [misc]approximate: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (* (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3)) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))) in re * [misc]taylor: Taking taylor expansion of (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) in re * [misc]taylor: Taking taylor expansion of (pow (log 10) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (log 10)))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (log 10))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (log (log 10)) into (log (log 10)) * [misc]backup-simplify: Simplify (* 2 (log (log 10))) into (* 2 (log (log 10))) * [misc]backup-simplify: Simplify (exp (* 2 (log (log 10)))) into (pow (log 10) 2) * [misc]taylor: Taking taylor expansion of (pow (atan2 (/ 1 im) (/ 1 re)) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (log (atan2 (/ 1 im) (/ 1 re))) into (log (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (* 2 (log (atan2 (/ 1 im) (/ 1 re)))) into (* 2 (log (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (exp (* 2 (log (atan2 (/ 1 im) (/ 1 re))))) into (pow (atan2 (/ 1 im) (/ 1 re)) 2) * [misc]backup-simplify: Simplify (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) into (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) * [misc]backup-simplify: Simplify (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))) into (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)))) into (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) 0) (* 0 (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (log 10) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (log 10)))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (atan2 (/ 1 im) (/ 1 re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (atan2 (/ 1 im) (/ 1 re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 (/ 1 im) (/ 1 re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 (/ 1 im) (/ 1 re)) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) (/ 0 (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (log 10) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (log 10) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (log 10))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (atan2 (/ 1 im) (/ 1 re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (atan2 (/ 1 im) (/ 1 re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 (/ 1 im) (/ 1 re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 (/ 1 im) (/ 1 re)) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) (/ 0 (pow (atan2 (/ 1 im) (/ 1 re)) 2))) (* 0 (/ 0 (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ 1 im) (/ 1 re)) 2))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) 0) (+ (* 0 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re))) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * [misc]approximate: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (* (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (* (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3)) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))) in re * [misc]taylor: Taking taylor expansion of (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) in re * [misc]taylor: Taking taylor expansion of (pow (log 10) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (log 10)))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (log 10))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (log (log 10)) into (log (log 10)) * [misc]backup-simplify: Simplify (* 2 (log (log 10))) into (* 2 (log (log 10))) * [misc]backup-simplify: Simplify (exp (* 2 (log (log 10)))) into (pow (log 10) 2) * [misc]taylor: Taking taylor expansion of (pow (atan2 (/ -1 im) (/ -1 re)) 2) in re * [misc]taylor: Taking taylor expansion of (exp (* 2 (log (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of (* 2 (log (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of 2 in re * [misc]backup-simplify: Simplify 2 into 2 * [misc]taylor: Taking taylor expansion of (log (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (log (atan2 (/ -1 im) (/ -1 re))) into (log (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (* 2 (log (atan2 (/ -1 im) (/ -1 re)))) into (* 2 (log (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (exp (* 2 (log (atan2 (/ -1 im) (/ -1 re))))) into (pow (atan2 (/ -1 im) (/ -1 re)) 2) * [misc]backup-simplify: Simplify (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) into (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) * [misc]backup-simplify: Simplify (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))) into (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)))) into (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) 0) (* 0 (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (log 10) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (log 10)))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (atan2 (/ -1 im) (/ -1 re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (* 0 (log (atan2 (/ -1 im) (/ -1 re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 (/ -1 im) (/ -1 re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 (/ -1 im) (/ -1 re)) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) (/ 0 (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (log 10) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (log 10) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (log 10))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (log 10)))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (atan2 (/ -1 im) (/ -1 re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (atan2 (/ -1 im) (/ -1 re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 2 0) (+ (* 0 0) (* 0 (log (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 2 (log (atan2 (/ -1 im) (/ -1 re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (pow (atan2 (/ -1 im) (/ -1 re)) 2)) (+ (* (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) (/ 0 (pow (atan2 (/ -1 im) (/ -1 re)) 2))) (* 0 (/ 0 (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (pow (log 10) 2) (pow (atan2 (/ -1 im) (/ -1 re)) 2))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify (+ (* (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) 0) (+ (* 0 0) (+ (* 0 0) (* 0 (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (pow (log 10) 2) (pow (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re)))) 2)) 1/3) into (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 2 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 3 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 4 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 5 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 6 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 7 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 8 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 9 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 10 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 11 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 12 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 5 (6 enodes) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 13 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 14 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 15 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 16 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 17 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 18 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 19 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 20 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 21 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 22 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 23 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 24 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 25 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 26 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 27 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 28 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 29 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 30 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 31 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 32 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 33 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 34 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 5 (6 enodes) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 35 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 36 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 37 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 38 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 39 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 40 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 41 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 42 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 43 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 44 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 45 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 46 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 47 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 48 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 49 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 50 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 51 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 52 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 53 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 54 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 55 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 56 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 5 (6 enodes) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 57 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 58 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 59 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 60 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 61 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 62 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 63 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 64 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 65 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 66 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 67 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (+ 1/3 1/3) * * [misc]simplify: iters left: 2 (2 enodes) * [exit]simplify: Simplified to (+ 1/3 1/3) * [exit]simplify: Simplified to (+ 1/3 1/3) * * * * [misc]progress: [ 68 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (+ 1 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to (+ 1 1) * [exit]simplify: Simplified to (+ 1 1) * * * * [misc]progress: [ 69 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * * [misc]simplify: iters left: 3 (17 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (26 enodes) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 70 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 71 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 72 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (+ 1 1) * * [misc]simplify: iters left: 2 (2 enodes) * * [misc]simplify: iters left: 1 (4 enodes) * [exit]simplify: Simplified to (+ 1 1) * [exit]simplify: Simplified to (+ 1 1) * * * * [misc]progress: [ 73 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 74 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (+ (log (cbrt (/ (log 10) (atan2 im re)))) (log (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (+ (log (cbrt (/ (log 10) (atan2 im re)))) (log (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (+ (log (cbrt (/ (log 10) (atan2 im re)))) (log (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 75 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (log (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (log (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (log (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 76 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (exp (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (exp (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 77 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * * [misc]simplify: iters left: 3 (17 enodes) * * [misc]simplify: iters left: 2 (23 enodes) * * [misc]simplify: iters left: 1 (26 enodes) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 78 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))))) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))))) * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 79 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (25 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (50 enodes) * * [misc]simplify: iters left: 1 (79 enodes) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 80 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (fabs (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (fabs (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (fabs (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (fabs (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 81 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (log 10)) (cbrt (log 10))) * * [misc]simplify: iters left: 4 (4 enodes) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (log 10))) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (log 10))) * [enter]simplify: Simplifying (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * [exit]simplify: Simplified to (* (cbrt (atan2 im re)) (cbrt (atan2 im re))) * * * * [misc]progress: [ 82 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 83 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 84 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (cbrt (sqrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (sqrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 85 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (21 enodes) * * [misc]simplify: iters left: 4 (30 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (36 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re)))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re)))))) * * * * [misc]progress: [ 86 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * * [misc]simplify: iters left: 3 (19 enodes) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (log 10)) (/ (cbrt (log 10)) (sqrt (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (log 10)) (/ (cbrt (log 10)) (sqrt (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 87 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (40 enodes) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 88 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 89 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 90 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) 1))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * [exit]simplify: Simplified to (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 91 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re)))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (/ 1 (cbrt (atan2 im re))) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (/ 1 (cbrt (atan2 im re))) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 92 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ 1 (sqrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (* (cbrt (/ 1 (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ 1 (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 93 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ 1 1))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt 1)) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt 1)) * * * * [misc]progress: [ 94 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt 1)) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt 1) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt 1) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 95 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (log 10))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 96 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re)))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (15 enodes) * [exit]simplify: Simplified to (* (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 97 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (sqrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (sqrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (sqrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 98 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) 1) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 99 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 100 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (sqrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 101 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * * * * [misc]progress: [ 102 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re))))) * * * * [misc]progress: [ 103 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (cbrt (log 10)) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (cbrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 104 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re))))) * * * * [misc]progress: [ 105 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re))))) * * * * [misc]progress: [ 106 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (sqrt (log 10)) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 107 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (cbrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (cbrt (atan2 im re))))) * * * * [misc]progress: [ 108 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (sqrt (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (sqrt (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (sqrt (atan2 im re))))) * * * * [misc]progress: [ 109 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 110 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 111 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ 1 (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ 1 (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ 1 (atan2 im re)))) * * * * [misc]progress: [ 112 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 113 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (sqrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (sqrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (sqrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 114 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (8 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 115 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (log 10))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (* (cbrt (log 10)) (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 116 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (log 10)) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (log 10))) * [exit]simplify: Simplified to (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (log 10))) * * * * [misc]progress: [ 117 / 129 ] simplifiying candidate # * * * * [misc]progress: [ 118 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (42 enodes) * * [misc]simplify: iters left: 1 (57 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 119 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (42 enodes) * * [misc]simplify: iters left: 1 (57 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 120 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (33 enodes) * * [misc]simplify: iters left: 2 (42 enodes) * * [misc]simplify: iters left: 1 (57 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 121 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (pow (/ (log 10) (atan2 im re)) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (53 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 122 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (pow (/ (log 10) (atan2 im re)) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (53 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 123 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (pow (/ (log 10) (atan2 im re)) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (53 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 124 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (pow (/ (log 10) (atan2 im re)) 1/3) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (30 enodes) * * [misc]simplify: iters left: 2 (39 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 125 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (pow (/ (log 10) (atan2 im re)) 1/3) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (30 enodes) * * [misc]simplify: iters left: 2 (39 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 126 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (pow (/ (log 10) (atan2 im re)) 1/3) (cbrt (/ (log 10) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (30 enodes) * * [misc]simplify: iters left: 2 (39 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (/ (atan2 im re) (log 10)) * * * * [misc]progress: [ 127 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3)) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (23 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (40 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (46 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 128 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3)) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (23 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (40 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (46 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))))) * * * * [misc]progress: [ 129 / 129 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (pow (/ (pow (log 10) 2) (pow (atan2 im re) 2)) 1/3)) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (23 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (40 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (46 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (* (/ (log 10) (atan2 im re)) (/ (log 10) (atan2 im re))))) * * * [misc]progress: adding candidates to table * * [misc]progress: iteration 4 / 4 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 4 ] rewriting at (2 1 2 2) * * * * [misc]progress: [ 2 / 4 ] rewriting at (2 2) * * * * [misc]progress: [ 3 / 4 ] rewriting at (2 1 2 1 2) * * * * [misc]progress: [ 4 / 4 ] rewriting at (2 1 2 1 1) * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 4 ] generating series at (2 1 2 2) * [misc]approximate: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 im re)) into (* (/ 1 (atan2 im re)) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) into (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 im re)) into (* (/ 1 (atan2 im re)) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) into (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 im re)) into (* (/ 1 (atan2 im re)) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) into (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) in re * [misc]taylor: Taking taylor expansion of (* (/ 1 (atan2 im re)) (sqrt (log 10))) in re * [misc]taylor: Taking taylor expansion of (/ 1 (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ 1 (atan2 im re)) into (/ 1 (atan2 im re)) * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (* (/ 1 (atan2 im re)) (sqrt (log 10))) into (* (/ 1 (atan2 im re)) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) into (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]backup-simplify: Simplify (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (* (/ 1 (atan2 im re)) (sqrt (log 10))) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (+ (* (/ 1 (atan2 im re)) 0) (* 0 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (* (/ 1 (atan2 im re)) (sqrt (log 10))) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (+ (* (/ 1 (atan2 im re)) 0) (+ (* 0 0) (* 0 (sqrt (log 10))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 im re)) (sqrt (log 10))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (* (/ 1 (atan2 im re)) (sqrt (log 10))) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 im re)) (sqrt (log 10)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) into (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) into (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) into (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) into (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ 1 im) (/ 1 re))) into (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) into (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) in re * [misc]taylor: Taking taylor expansion of (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) in re * [misc]taylor: Taking taylor expansion of (/ 1 (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ 1 (atan2 (/ 1 im) (/ 1 re))) into (/ 1 (atan2 (/ 1 im) (/ 1 re))) * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) into (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) into (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) into (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) * [misc]backup-simplify: Simplify (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) into (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1/3) * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (+ (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) 0) (* 0 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (+ (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) 0) (+ (* 0 0) (* 0 (sqrt (log 10))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ 1 im) (/ 1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (* (/ 1 (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) (sqrt (log 10))) 1/3) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ -1 im) (/ -1 re))) into (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))) into (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) into (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) into (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ -1 im) (/ -1 re))) into (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))) into (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) into (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) into (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (sqrt (log 10)) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (sqrt (log 10)) (atan2 (/ -1 im) (/ -1 re))) into (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))) into (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) into (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) into (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (sqrt (log 10)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]backup-simplify: Simplify (sqrt (log 10)) into (sqrt (log 10)) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (log 10)))) into 0 * [misc]taylor: Taking taylor expansion of (/ 1 (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ 1 (atan2 (/ -1 im) (/ -1 re))) into (/ 1 (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) into (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) * [misc]backup-simplify: Simplify (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))) into (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (* 1/3 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) into (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) into (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) * [misc]backup-simplify: Simplify (pow (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))) 1/3) into (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1/3) * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (+ (* (sqrt (log 10)) 0) (* 0 (/ 1 (atan2 (/ -1 im) (/ -1 re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (- (+ (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (+ (* (sqrt (log 10)) 0) (+ (* 0 0) (* 0 (/ 1 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (log 10)))) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (* (sqrt (log 10)) (/ 1 (atan2 (/ -1 im) (/ -1 re))))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (* (/ 1 (atan2 (/ -1 im) (/ -1 re))) (sqrt (log 10)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (* (/ 1 (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) (sqrt (log 10))) 1/3) into (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3) * * * * [misc]progress: [ 2 / 4 ] generating series at (2 2) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 im re)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * * * * [misc]progress: [ 3 / 4 ] generating series at (2 1 2 1 2) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 im re))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in im * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 im re)) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 im re)))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 im re))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 im re)) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 im re) in re * [misc]backup-simplify: Simplify (atan2 im re) into (atan2 im re) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 im re)) into (/ (log 10) (atan2 im re)) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 im re))) into (log (/ (log 10) (atan2 im re))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 im re)))) into (* 1/3 (log (/ (log 10) (atan2 im re)))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 im re)) (+ (* (/ (log 10) (atan2 im re)) (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))) (* 0 (/ 0 (atan2 im re))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 im re)) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 im re)) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 im re)) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 im re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 im re))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 im re)) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 im) (/ 1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 im) (/ 1 re)) into (atan2 (/ 1 im) (/ 1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) into (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) into (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ 1 im) (/ 1 re))) (+ (* (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))) (* 0 (/ 0 (atan2 (/ 1 im) (/ 1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ 1 im) (/ 1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 im) (/ 1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ 1 (/ 1 im)) (/ 1 (/ 1 re)))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * [misc]approximate: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in (im re) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in re * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (cbrt (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Rewrote expression to (pow (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) 1/3) * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))))) in im * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 1/3 in im * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ 1 (- im)) (/ 1 (- re)))) in im * [misc]taylor: Taking taylor expansion of (log 10) in im * [misc]taylor: Taking taylor expansion of 10 in im * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ 1 (- im)) (/ 1 (- re))) in im * [misc]backup-simplify: Simplify (atan2 (/ 1 (- im)) (/ 1 (- re))) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]taylor: Taking taylor expansion of (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) in re * [misc]taylor: Taking taylor expansion of (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) in re * [misc]taylor: Taking taylor expansion of (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) in re * [misc]taylor: Taking taylor expansion of 1/3 in re * [misc]backup-simplify: Simplify 1/3 into 1/3 * [misc]taylor: Taking taylor expansion of (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) in re * [misc]taylor: Taking taylor expansion of (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) in re * [misc]taylor: Taking taylor expansion of (log 10) in re * [misc]taylor: Taking taylor expansion of 10 in re * [misc]backup-simplify: Simplify 10 into 10 * [misc]backup-simplify: Simplify (log 10) into (log 10) * [misc]taylor: Taking taylor expansion of (atan2 (/ -1 im) (/ -1 re)) in re * [misc]backup-simplify: Simplify (atan2 (/ -1 im) (/ -1 re)) into (atan2 (/ -1 im) (/ -1 re)) * [misc]backup-simplify: Simplify (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) into (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) * [misc]backup-simplify: Simplify (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) into (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))) * [misc]backup-simplify: Simplify (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) into (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))) * [misc]backup-simplify: Simplify (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) into (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1/3) * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 10 1)))) 1) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 1) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 10 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 10 1)))) 2) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 2) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 2) 2)) (* (/ (pow 0 1) 1)))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 10 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 10 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 10 1)))) 6) into 0 * [misc]backup-simplify: Simplify (- (/ 0 (atan2 (/ -1 im) (/ -1 re))) (+ (* (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))) (* 0 (/ 0 (atan2 (/ -1 im) (/ -1 re)))))) into 0 * [misc]backup-simplify: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow (/ (log 10) (atan2 (/ -1 im) (/ -1 re))) 1)))) 6) into 0 * [misc]backup-simplify: Simplify (+ (* 1/3 0) (+ (* 0 0) (+ (* 0 0) (* 0 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))))) into 0 * [misc]backup-simplify: Simplify (* (exp (* 1/3 (log (/ (log 10) (atan2 (/ -1 im) (/ -1 re)))))) (+ (* (/ (pow 0 3) 6)) (* (/ (pow 0 1) 1) (/ (pow 0 1) 1)) (* (/ (pow 0 1) 1)))) into 0 * [misc]taylor: Taking taylor expansion of 0 in re * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (pow (/ (log 10) (atan2 (/ -1 (/ 1 (- im))) (/ -1 (/ 1 (- re))))) 1/3) into (pow (/ (log 10) (atan2 im re)) 1/3) * * * * [misc]progress: [ 4 / 4 ] generating series at (2 1 2 1 1) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 2 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 3 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 4 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 5 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (sqrt (log 10)) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (sqrt (log 10)) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (sqrt (log 10)) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 6 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 7 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10)))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (30 enodes) * * [misc]simplify: iters left: 2 (33 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re))) (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re))) (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 8 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10)))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * * [misc]simplify: iters left: 4 (15 enodes) * * [misc]simplify: iters left: 3 (16 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (/ (sqrt (atan2 im re)) (cbrt (sqrt (log 10)))))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (/ (sqrt (atan2 im re)) (cbrt (sqrt (log 10)))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 9 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10)))) 1)) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * * [misc]simplify: iters left: 3 (23 enodes) * * [misc]simplify: iters left: 2 (34 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (sqrt (log 10))) (atan2 im re))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (sqrt (log 10))) (atan2 im re))) * * * * [misc]progress: [ 10 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (* (cbrt (log 10)) (cbrt (log 10)))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (fabs (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ (fabs (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (cbrt (log 10))) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 11 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (* (cbrt (log 10)) (cbrt (log 10)))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (fabs (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (fabs (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 12 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (* (cbrt (log 10)) (cbrt (log 10)))) 1)) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (13 enodes) * [exit]simplify: Simplified to (cbrt (fabs (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (fabs (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (cbrt (log 10))) (atan2 im re))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (cbrt (log 10))) (atan2 im re))) * * * * [misc]progress: [ 13 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 14 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 15 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (9 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * * * * [misc]progress: [ 16 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt 1) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt 1) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt 1) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 17 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt 1) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt 1) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt 1) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 18 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt 1) 1)) * * [misc]simplify: iters left: 4 (4 enodes) * * [misc]simplify: iters left: 3 (6 enodes) * * [misc]simplify: iters left: 2 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt 1)) * [exit]simplify: Simplified to (cbrt (sqrt 1)) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 19 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 20 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 21 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (9 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (sqrt (log 10))) (atan2 im re))) * * * * [misc]progress: [ 22 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 23 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 24 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 25 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 26 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (log 10))) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 27 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (log 10))) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 28 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 29 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (sqrt (log 10)) (atan2 im re))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (13 enodes) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (atan2 im re)) * [exit]simplify: Simplified to (/ (sqrt (log 10)) (atan2 im re)) * * * * [misc]progress: [ 30 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (sqrt (log 10)) (atan2 im re)))) * * * * [misc]progress: [ 31 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 32 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 33 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 34 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 35 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 36 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 37 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 38 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 39 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 40 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 41 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 42 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 43 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 5 (6 enodes) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 44 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 45 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 46 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 47 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 48 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 49 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 50 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 51 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 52 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 53 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 54 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 55 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 56 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (log (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 57 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (exp (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 58 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 59 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (sqrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 60 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (26 enodes) * * [misc]simplify: iters left: 3 (29 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (* (/ (cbrt (log 10)) (cbrt (atan2 im re))) (/ (cbrt (log 10)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 61 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * * [misc]simplify: iters left: 4 (14 enodes) * * [misc]simplify: iters left: 3 (15 enodes) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 62 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (* (cbrt (log 10)) (cbrt (log 10))) 1)) * * [misc]simplify: iters left: 6 (7 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * * [misc]simplify: iters left: 3 (22 enodes) * * [misc]simplify: iters left: 2 (32 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (* (cbrt (log 10)) (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (cbrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 63 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (/ (sqrt (log 10)) (cbrt (atan2 im re))) (cbrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 64 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 65 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) 1)) * * [misc]simplify: iters left: 5 (6 enodes) * * [misc]simplify: iters left: 4 (8 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [enter]simplify: Simplifying (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (sqrt (log 10)) (atan2 im re))) * * * * [misc]progress: [ 66 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * * [misc]simplify: iters left: 6 (8 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [exit]simplify: Simplified to (cbrt (/ 1 (* (cbrt (atan2 im re)) (cbrt (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (cbrt (atan2 im re)))) * * * * [misc]progress: [ 67 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ 1 (sqrt (atan2 im re)))) * [enter]simplify: Simplifying (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (sqrt (atan2 im re)))) * * * * [misc]progress: [ 68 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (/ 1 1)) * * [misc]simplify: iters left: 3 (3 enodes) * * [misc]simplify: iters left: 2 (5 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 69 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (/ (log 10) (atan2 im re))) * * [misc]simplify: iters left: 4 (7 enodes) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ (log 10) (atan2 im re))) * * * * [misc]progress: [ 70 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (/ 1 (atan2 im re))) * * [misc]simplify: iters left: 4 (6 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * [exit]simplify: Simplified to (cbrt (/ 1 (atan2 im re))) * * * * [misc]progress: [ 71 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log 10)) * * [misc]simplify: iters left: 2 (3 enodes) * [exit]simplify: Simplified to (cbrt (log 10)) * [exit]simplify: Simplified to (cbrt (log 10)) * [enter]simplify: Simplifying (cbrt (atan2 im re)) * * [misc]simplify: iters left: 2 (4 enodes) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * [exit]simplify: Simplified to (cbrt (atan2 im re)) * * * * [misc]progress: [ 72 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (9 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (/ (log 10) (atan2 im re)))) (cbrt (cbrt (/ (log 10) (atan2 im re))))) * [enter]simplify: Simplifying (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (cbrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 73 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (10 enodes) * * [misc]simplify: iters left: 4 (12 enodes) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * [exit]simplify: Simplified to (/ (log 10) (atan2 im re)) * * * * [misc]progress: [ 74 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [enter]simplify: Simplifying (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 5 (8 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * [exit]simplify: Simplified to (sqrt (cbrt (/ (log 10) (atan2 im re)))) * * * * [misc]progress: [ 75 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 76 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 77 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 78 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (log (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (log (cbrt (sqrt (log 10)))) * * * * [misc]progress: [ 79 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (exp (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (exp (cbrt (sqrt (log 10)))) * * * * [misc]progress: [ 80 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10))))) * * [misc]simplify: iters left: 6 (6 enodes) * [exit]simplify: Simplified to (cbrt (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10))))) * [exit]simplify: Simplified to (cbrt (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10))))) * [enter]simplify: Simplifying (cbrt (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (cbrt (sqrt (log 10)))) * * * * [misc]progress: [ 81 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (* (cbrt (log 10)) (cbrt (log 10))))) * * [misc]simplify: iters left: 6 (6 enodes) * * [misc]simplify: iters left: 5 (7 enodes) * [exit]simplify: Simplified to (cbrt (fabs (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (fabs (cbrt (log 10)))) * [enter]simplify: Simplifying (cbrt (sqrt (cbrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (cbrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (cbrt (log 10)))) * * * * [misc]progress: [ 82 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [enter]simplify: Simplifying (cbrt (sqrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * * * * [misc]progress: [ 83 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt 1)) * * [misc]simplify: iters left: 2 (3 enodes) * * [misc]simplify: iters left: 1 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt 1)) * [exit]simplify: Simplified to (cbrt (sqrt 1)) * [enter]simplify: Simplifying (cbrt (sqrt (log 10))) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * * * * [misc]progress: [ 84 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [enter]simplify: Simplifying (cbrt (sqrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (sqrt (sqrt (log 10)))) * * * * [misc]progress: [ 85 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (sqrt (log 10))) * * [misc]simplify: iters left: 3 (4 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * [exit]simplify: Simplified to (cbrt (sqrt (log 10))) * * * * [misc]progress: [ 86 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (cbrt (cbrt (sqrt (log 10)))) (cbrt (cbrt (sqrt (log 10))))) * * [misc]simplify: iters left: 6 (6 enodes) * [exit]simplify: Simplified to (* (cbrt (cbrt (sqrt (log 10)))) (cbrt (cbrt (sqrt (log 10))))) * [exit]simplify: Simplified to (* (cbrt (cbrt (sqrt (log 10)))) (cbrt (cbrt (sqrt (log 10))))) * [enter]simplify: Simplifying (cbrt (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (cbrt (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (cbrt (cbrt (sqrt (log 10)))) * * * * [misc]progress: [ 87 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (* (* (cbrt (sqrt (log 10))) (cbrt (sqrt (log 10)))) (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 6 (6 enodes) * * [misc]simplify: iters left: 5 (7 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (sqrt (log 10)) * [exit]simplify: Simplified to (sqrt (log 10)) * * * * [misc]progress: [ 88 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (sqrt (cbrt (sqrt (log 10)))) * [enter]simplify: Simplifying (sqrt (cbrt (sqrt (log 10)))) * * [misc]simplify: iters left: 4 (5 enodes) * [exit]simplify: Simplified to (sqrt (cbrt (sqrt (log 10)))) * [exit]simplify: Simplified to (sqrt (cbrt (sqrt (log 10)))) * * * * [misc]progress: [ 89 / 101 ] simplifiying candidate # * * * * [misc]progress: [ 90 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (32 enodes) * * [misc]simplify: iters left: 4 (55 enodes) * * [misc]simplify: iters left: 3 (77 enodes) * * [misc]simplify: iters left: 2 (111 enodes) * * [misc]simplify: iters left: 1 (129 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 91 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (32 enodes) * * [misc]simplify: iters left: 4 (55 enodes) * * [misc]simplify: iters left: 3 (77 enodes) * * [misc]simplify: iters left: 2 (111 enodes) * * [misc]simplify: iters left: 1 (129 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 92 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (pow (* (/ 1 (atan2 im re)) (sqrt (log 10))) 1/3))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (32 enodes) * * [misc]simplify: iters left: 4 (55 enodes) * * [misc]simplify: iters left: 3 (77 enodes) * * [misc]simplify: iters left: 2 (111 enodes) * * [misc]simplify: iters left: 1 (129 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 93 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (46 enodes) * * [misc]simplify: iters left: 3 (67 enodes) * * [misc]simplify: iters left: 2 (104 enodes) * * [misc]simplify: iters left: 1 (124 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (sqrt (log 10)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 94 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (46 enodes) * * [misc]simplify: iters left: 3 (67 enodes) * * [misc]simplify: iters left: 2 (104 enodes) * * [misc]simplify: iters left: 1 (124 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (sqrt (log 10)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 95 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (pow (/ (log 10) (atan2 im re)) 1/3)) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (46 enodes) * * [misc]simplify: iters left: 3 (67 enodes) * * [misc]simplify: iters left: 2 (104 enodes) * * [misc]simplify: iters left: 1 (124 enodes) * [exit]simplify: Simplified to (/ (/ 1 (cbrt (sqrt (log 10)))) (* (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 96 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (pow (/ (log 10) (atan2 im re)) 1/3)) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (44 enodes) * * [misc]simplify: iters left: 3 (62 enodes) * * [misc]simplify: iters left: 2 (97 enodes) * * [misc]simplify: iters left: 1 (107 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) (* (cbrt (sqrt (log 10))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 97 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (pow (/ (log 10) (atan2 im re)) 1/3)) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (44 enodes) * * [misc]simplify: iters left: 3 (62 enodes) * * [misc]simplify: iters left: 2 (97 enodes) * * [misc]simplify: iters left: 1 (107 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) (* (cbrt (sqrt (log 10))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 98 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (pow (/ (log 10) (atan2 im re)) 1/3)) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (18 enodes) * * [misc]simplify: iters left: 5 (28 enodes) * * [misc]simplify: iters left: 4 (44 enodes) * * [misc]simplify: iters left: 3 (62 enodes) * * [misc]simplify: iters left: 2 (97 enodes) * * [misc]simplify: iters left: 1 (107 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (log 10) (atan2 im re)))) (* (cbrt (sqrt (log 10))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) * * * * [misc]progress: [ 99 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (26 enodes) * * [misc]simplify: iters left: 4 (42 enodes) * * [misc]simplify: iters left: 3 (57 enodes) * * [misc]simplify: iters left: 2 (86 enodes) * * [misc]simplify: iters left: 1 (95 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10))))) * * * * [misc]progress: [ 100 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (26 enodes) * * [misc]simplify: iters left: 4 (42 enodes) * * [misc]simplify: iters left: 3 (57 enodes) * * [misc]simplify: iters left: 2 (86 enodes) * * [misc]simplify: iters left: 1 (95 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10))))) * * * * [misc]progress: [ 101 / 101 ] simplifiying candidate # * [enter]simplify: Simplifying (/ (/ 1 (* (* (cbrt (sqrt (log 10))) (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re))))) (cbrt (/ (log 10) (atan2 im re)))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (26 enodes) * * [misc]simplify: iters left: 4 (42 enodes) * * [misc]simplify: iters left: 3 (57 enodes) * * [misc]simplify: iters left: 2 (86 enodes) * * [misc]simplify: iters left: 1 (95 enodes) * [exit]simplify: Simplified to (/ (/ (/ 1 (cbrt (/ (log 10) (atan2 im re)))) (cbrt (/ (sqrt (log 10)) (atan2 im re)))) (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (sqrt (log 10))))) * * * [misc]progress: adding candidates to table * [misc]progress: [Phase 3 of 3] Extracting. * * [misc]regime-changes: Finding splitpoints for: (# # # # # # # # # # # #) * [misc]regimes: Found splitpoints: (#s(sp 0 im +nan.0)) , with alts (#) * [enter]simplify: Simplifying (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * [exit]simplify: Simplified to (/ 1 (* (cbrt (/ (log 10) (atan2 im re))) (cbrt (/ (log 10) (atan2 im re))))) * * * * [misc]points: Sampling 8000 additional inputs, on iter 0 have 0 / 8000 * * * * [misc]points: Computing exacts on every 500 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 250 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 125 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 62 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 31 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 15 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 7 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts on every 3 of 8000 points to ramp up precision * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Computing exacts for 8000 points * * * * [misc]points: Setting MPFR precision to 64 * * * * [misc]points: Setting MPFR precision to 320 * * * * [misc]points: Filtering points with unrepresentable outputs * * * * [exit]points: Sampled 8000 points with exact outputs * [misc]regime-testing: Baseline error score: 0.6586055134094783 * [misc]regime-testing: End program error score: 0.6586055134094783 * [misc]regime-testing: Oracle error score: 0.01802124062518029