0.001 * [progress]: [Phase 1 of 3] Setting up. 0.001 * * * [progress]: [1/2] Preparing points 0.107 * * * [progress]: [2/2] Setting up program. 0.111 * [progress]: [Phase 2 of 3] Improving. 0.111 * * * * [progress]: [ 1 / 1 ] simplifiying candidate # 0.112 * [simplify]: Simplifying (- (log (+ N 1)) (log N)) 0.112 * * [simplify]: iteration 1: (6 enodes) 0.134 * * [simplify]: iteration 2: (23 enodes) 0.145 * * [simplify]: iteration 3: (29 enodes) 0.154 * * [simplify]: Extracting #0: cost 1 inf + 0 0.155 * * [simplify]: Extracting #1: cost 5 inf + 0 0.155 * * [simplify]: Extracting #2: cost 10 inf + 0 0.155 * * [simplify]: Extracting #3: cost 11 inf + 1 0.155 * * [simplify]: Extracting #4: cost 2 inf + 762 0.155 * * [simplify]: Extracting #5: cost 0 inf + 1034 0.156 * [simplify]: Simplified to (- (log1p N) (log N)) 0.156 * * * * [progress]: [ 1 / 1 ] simplifiying candidate # 0.156 * [simplify]: Simplified (2) to (λ (N) (- (log1p N) (log N))) 0.166 * * [progress]: iteration 1 / 4 0.167 * * * [progress]: picking best candidate 0.171 * * * * [pick]: Picked # 0.171 * * * [progress]: localizing error 0.189 * * * [progress]: generating rewritten candidates 0.189 * * * * [progress]: [ 1 / 1 ] rewriting at (2) 0.202 * * * [progress]: generating series expansions 0.202 * * * * [progress]: [ 1 / 1 ] generating series at (2) 0.206 * [backup-simplify]: Simplify (- (log1p N) (log N)) into (- (log1p N) (log N)) 0.206 * [approximate]: Taking taylor expansion of (- (log1p N) (log N)) in (N) around 0 0.208 * [taylor]: Taking taylor expansion of (- (log1p N) (log N)) in N 0.208 * [taylor]: Taking taylor expansion of (log1p N) in N 0.209 * [taylor]: Rewrote expression to (log (+ 1 N)) 0.209 * [taylor]: Taking taylor expansion of (+ 1 N) in N 0.209 * [taylor]: Taking taylor expansion of 1 in N 0.209 * [backup-simplify]: Simplify 1 into 1 0.209 * [taylor]: Taking taylor expansion of N in N 0.209 * [backup-simplify]: Simplify 0 into 0 0.209 * [backup-simplify]: Simplify 1 into 1 0.211 * [backup-simplify]: Simplify (+ 1 0) into 1 0.211 * [backup-simplify]: Simplify (log 1) into 0 0.211 * [taylor]: Taking taylor expansion of (log N) in N 0.211 * [taylor]: Taking taylor expansion of N in N 0.211 * [backup-simplify]: Simplify 0 into 0 0.211 * [backup-simplify]: Simplify 1 into 1 0.211 * [backup-simplify]: Simplify (log 1) into 0 0.211 * [taylor]: Taking taylor expansion of (- (log1p N) (log N)) in N 0.212 * [taylor]: Taking taylor expansion of (log1p N) in N 0.212 * [taylor]: Rewrote expression to (log (+ 1 N)) 0.212 * [taylor]: Taking taylor expansion of (+ 1 N) in N 0.212 * [taylor]: Taking taylor expansion of 1 in N 0.212 * [backup-simplify]: Simplify 1 into 1 0.212 * [taylor]: Taking taylor expansion of N in N 0.212 * [backup-simplify]: Simplify 0 into 0 0.212 * [backup-simplify]: Simplify 1 into 1 0.212 * [backup-simplify]: Simplify (+ 1 0) into 1 0.212 * [backup-simplify]: Simplify (log 1) into 0 0.213 * [taylor]: Taking taylor expansion of (log N) in N 0.213 * [taylor]: Taking taylor expansion of N in N 0.213 * [backup-simplify]: Simplify 0 into 0 0.213 * [backup-simplify]: Simplify 1 into 1 0.213 * [backup-simplify]: Simplify (log 1) into 0 0.216 * [backup-simplify]: Simplify (+ (* (- -1) (log N)) 0) into (log N) 0.216 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 0.216 * [backup-simplify]: Simplify (+ 0 (- (log N))) into (- (log N)) 0.216 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 0.217 * [backup-simplify]: Simplify (+ 0 1) into 1 0.218 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 0.220 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 0.220 * [backup-simplify]: Simplify (- 0) into 0 0.220 * [backup-simplify]: Simplify (+ 1 0) into 1 0.220 * [backup-simplify]: Simplify 1 into 1 0.222 * [backup-simplify]: Simplify (+ 0 0) into 0 0.224 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 0.227 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into 0 0.228 * [backup-simplify]: Simplify (- 0) into 0 0.228 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 0.228 * [backup-simplify]: Simplify -1/2 into -1/2 0.229 * [backup-simplify]: Simplify (+ (* -1/2 (pow N 2)) (+ (* 1 N) (- (log N)))) into (- N (+ (log N) (* 1/2 (pow N 2)))) 0.229 * [backup-simplify]: Simplify (- (log1p (/ 1 N)) (log (/ 1 N))) into (- (log1p (/ 1 N)) (log (/ 1 N))) 0.229 * [approximate]: Taking taylor expansion of (- (log1p (/ 1 N)) (log (/ 1 N))) in (N) around 0 0.229 * [taylor]: Taking taylor expansion of (- (log1p (/ 1 N)) (log (/ 1 N))) in N 0.229 * [taylor]: Taking taylor expansion of (log1p (/ 1 N)) in N 0.229 * [taylor]: Rewrote expression to (log (+ 1 (/ 1 N))) 0.230 * [taylor]: Taking taylor expansion of (+ 1 (/ 1 N)) in N 0.230 * [taylor]: Taking taylor expansion of 1 in N 0.230 * [backup-simplify]: Simplify 1 into 1 0.230 * [taylor]: Taking taylor expansion of (/ 1 N) in N 0.230 * [taylor]: Taking taylor expansion of N in N 0.230 * [backup-simplify]: Simplify 0 into 0 0.230 * [backup-simplify]: Simplify 1 into 1 0.230 * [backup-simplify]: Simplify (/ 1 1) into 1 0.231 * [backup-simplify]: Simplify (+ 0 1) into 1 0.231 * [backup-simplify]: Simplify (log 1) into 0 0.231 * [taylor]: Taking taylor expansion of (log (/ 1 N)) in N 0.231 * [taylor]: Taking taylor expansion of (/ 1 N) in N 0.231 * [taylor]: Taking taylor expansion of N in N 0.231 * [backup-simplify]: Simplify 0 into 0 0.231 * [backup-simplify]: Simplify 1 into 1 0.232 * [backup-simplify]: Simplify (/ 1 1) into 1 0.232 * [backup-simplify]: Simplify (log 1) into 0 0.232 * [taylor]: Taking taylor expansion of (- (log1p (/ 1 N)) (log (/ 1 N))) in N 0.232 * [taylor]: Taking taylor expansion of (log1p (/ 1 N)) in N 0.232 * [taylor]: Rewrote expression to (log (+ 1 (/ 1 N))) 0.232 * [taylor]: Taking taylor expansion of (+ 1 (/ 1 N)) in N 0.232 * [taylor]: Taking taylor expansion of 1 in N 0.232 * [backup-simplify]: Simplify 1 into 1 0.232 * [taylor]: Taking taylor expansion of (/ 1 N) in N 0.232 * [taylor]: Taking taylor expansion of N in N 0.232 * [backup-simplify]: Simplify 0 into 0 0.232 * [backup-simplify]: Simplify 1 into 1 0.233 * [backup-simplify]: Simplify (/ 1 1) into 1 0.233 * [backup-simplify]: Simplify (+ 0 1) into 1 0.234 * [backup-simplify]: Simplify (log 1) into 0 0.234 * [taylor]: Taking taylor expansion of (log (/ 1 N)) in N 0.234 * [taylor]: Taking taylor expansion of (/ 1 N) in N 0.234 * [taylor]: Taking taylor expansion of N in N 0.234 * [backup-simplify]: Simplify 0 into 0 0.234 * [backup-simplify]: Simplify 1 into 1 0.234 * [backup-simplify]: Simplify (/ 1 1) into 1 0.235 * [backup-simplify]: Simplify (log 1) into 0 0.235 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 0.236 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 0.236 * [backup-simplify]: Simplify (- (- (log N))) into (log N) 0.236 * [backup-simplify]: Simplify (+ (- (log N)) (log N)) into 0 0.236 * [backup-simplify]: Simplify 0 into 0 0.237 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 0.237 * [backup-simplify]: Simplify (+ 1 0) into 1 0.239 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 0.240 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 0.241 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 0.241 * [backup-simplify]: Simplify (- 0) into 0 0.242 * [backup-simplify]: Simplify (+ 1 0) into 1 0.242 * [backup-simplify]: Simplify 1 into 1 0.242 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.243 * [backup-simplify]: Simplify (+ 0 0) into 0 0.244 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 0.245 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.247 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into 0 0.247 * [backup-simplify]: Simplify (- 0) into 0 0.247 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 0.247 * [backup-simplify]: Simplify -1/2 into -1/2 0.248 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.248 * [backup-simplify]: Simplify (+ 0 0) into 0 0.251 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 0.252 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.255 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 0 0.255 * [backup-simplify]: Simplify (- 0) into 0 0.255 * [backup-simplify]: Simplify (+ 1/3 0) into 1/3 0.255 * [backup-simplify]: Simplify 1/3 into 1/3 0.256 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 0.256 * [backup-simplify]: Simplify (- (log1p (/ 1 (- N))) (log (/ 1 (- N)))) into (- (log1p (/ -1 N)) (log (/ -1 N))) 0.256 * [approximate]: Taking taylor expansion of (- (log1p (/ -1 N)) (log (/ -1 N))) in (N) around 0 0.256 * [taylor]: Taking taylor expansion of (- (log1p (/ -1 N)) (log (/ -1 N))) in N 0.256 * [taylor]: Taking taylor expansion of (log1p (/ -1 N)) in N 0.256 * [taylor]: Rewrote expression to (log (+ 1 (/ -1 N))) 0.256 * [taylor]: Taking taylor expansion of (+ 1 (/ -1 N)) in N 0.256 * [taylor]: Taking taylor expansion of 1 in N 0.256 * [backup-simplify]: Simplify 1 into 1 0.256 * [taylor]: Taking taylor expansion of (/ -1 N) in N 0.256 * [taylor]: Taking taylor expansion of -1 in N 0.256 * [backup-simplify]: Simplify -1 into -1 0.256 * [taylor]: Taking taylor expansion of N in N 0.256 * [backup-simplify]: Simplify 0 into 0 0.256 * [backup-simplify]: Simplify 1 into 1 0.257 * [backup-simplify]: Simplify (/ -1 1) into -1 0.257 * [backup-simplify]: Simplify (+ 0 -1) into -1 0.258 * [backup-simplify]: Simplify (log -1) into (log -1) 0.258 * [taylor]: Taking taylor expansion of (log (/ -1 N)) in N 0.258 * [taylor]: Taking taylor expansion of (/ -1 N) in N 0.258 * [taylor]: Taking taylor expansion of -1 in N 0.258 * [backup-simplify]: Simplify -1 into -1 0.258 * [taylor]: Taking taylor expansion of N in N 0.258 * [backup-simplify]: Simplify 0 into 0 0.258 * [backup-simplify]: Simplify 1 into 1 0.258 * [backup-simplify]: Simplify (/ -1 1) into -1 0.258 * [backup-simplify]: Simplify (log -1) into (log -1) 0.258 * [taylor]: Taking taylor expansion of (- (log1p (/ -1 N)) (log (/ -1 N))) in N 0.258 * [taylor]: Taking taylor expansion of (log1p (/ -1 N)) in N 0.258 * [taylor]: Rewrote expression to (log (+ 1 (/ -1 N))) 0.258 * [taylor]: Taking taylor expansion of (+ 1 (/ -1 N)) in N 0.258 * [taylor]: Taking taylor expansion of 1 in N 0.259 * [backup-simplify]: Simplify 1 into 1 0.259 * [taylor]: Taking taylor expansion of (/ -1 N) in N 0.259 * [taylor]: Taking taylor expansion of -1 in N 0.259 * [backup-simplify]: Simplify -1 into -1 0.259 * [taylor]: Taking taylor expansion of N in N 0.259 * [backup-simplify]: Simplify 0 into 0 0.259 * [backup-simplify]: Simplify 1 into 1 0.259 * [backup-simplify]: Simplify (/ -1 1) into -1 0.259 * [backup-simplify]: Simplify (+ 0 -1) into -1 0.260 * [backup-simplify]: Simplify (log -1) into (log -1) 0.260 * [taylor]: Taking taylor expansion of (log (/ -1 N)) in N 0.260 * [taylor]: Taking taylor expansion of (/ -1 N) in N 0.260 * [taylor]: Taking taylor expansion of -1 in N 0.260 * [backup-simplify]: Simplify -1 into -1 0.260 * [taylor]: Taking taylor expansion of N in N 0.260 * [backup-simplify]: Simplify 0 into 0 0.260 * [backup-simplify]: Simplify 1 into 1 0.260 * [backup-simplify]: Simplify (/ -1 1) into -1 0.260 * [backup-simplify]: Simplify (log -1) into (log -1) 0.261 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) (log -1)) into (- (log -1) (log N)) 0.261 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) (log -1)) into (- (log -1) (log N)) 0.262 * [backup-simplify]: Simplify (- (- (log -1) (log N))) into (- (log N) (log -1)) 0.262 * [backup-simplify]: Simplify (+ (- (log -1) (log N)) (- (log N) (log -1))) into 0 0.262 * [backup-simplify]: Simplify 0 into 0 0.263 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 0.263 * [backup-simplify]: Simplify (+ 1 0) into 1 0.264 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow -1 1)))) 1) into -1 0.272 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 0.273 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow -1 1)))) 1) into 0 0.274 * [backup-simplify]: Simplify (- 0) into 0 0.274 * [backup-simplify]: Simplify (+ -1 0) into -1 0.274 * [backup-simplify]: Simplify -1 into -1 0.275 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.275 * [backup-simplify]: Simplify (+ 0 0) into 0 0.278 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow -1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow -1 1)))) 2) into -1/2 0.278 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.280 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow -1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow -1 1)))) 2) into 0 0.280 * [backup-simplify]: Simplify (- 0) into 0 0.281 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 0.281 * [backup-simplify]: Simplify -1/2 into -1/2 0.282 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.282 * [backup-simplify]: Simplify (+ 0 0) into 0 0.285 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow -1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow -1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow -1 1)))) 6) into -1/3 0.286 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 0.290 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 0) 3)) (pow -1 3))) (* -3 (/ (* (pow (* 1 0) 1) (pow (* 2 0) 1)) (pow -1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow -1 1)))) 6) into 0 0.290 * [backup-simplify]: Simplify (- 0) into 0 0.291 * [backup-simplify]: Simplify (+ -1/3 0) into -1/3 0.291 * [backup-simplify]: Simplify -1/3 into -1/3 0.291 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 0.293 * * * [progress]: simplifying candidates 0.293 * * * * [progress]: [ 1 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 2 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 3 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 4 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 5 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 6 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 7 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 8 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 9 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 10 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 11 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 12 / 40 ] simplifiying candidate # 0.293 * * * * [progress]: [ 13 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 14 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 15 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 16 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 17 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 18 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 19 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 20 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 21 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 22 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 23 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 24 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 25 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 26 / 40 ] simplifiying candidate # 0.294 * * * * [progress]: [ 27 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 28 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 29 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 30 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 31 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 32 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 33 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 34 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 35 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 36 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 37 / 40 ] simplifiying candidate #real (real->posit16 (- (log1p N) (log N)))))> 0.295 * * * * [progress]: [ 38 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 39 / 40 ] simplifiying candidate # 0.295 * * * * [progress]: [ 40 / 40 ] simplifiying candidate # 0.295 * [simplify]: Simplifying (fma (* (cbrt (log1p N)) (cbrt (log1p N))) (cbrt (log1p N)) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (fma (* (cbrt (log1p N)) (cbrt (log1p N))) (cbrt (log1p N)) (- (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N)))))), (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))), (fma (* (cbrt (log1p N)) (cbrt (log1p N))) (cbrt (log1p N)) (- (* (sqrt (log N)) (sqrt (log N))))), (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))), (fma (* (cbrt (log1p N)) (cbrt (log1p N))) (cbrt (log1p N)) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (fma (sqrt (log1p N)) (sqrt (log1p N)) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (fma (sqrt (log1p N)) (sqrt (log1p N)) (- (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N)))))), (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))), (fma (sqrt (log1p N)) (sqrt (log1p N)) (- (* (sqrt (log N)) (sqrt (log N))))), (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))), (fma (sqrt (log1p N)) (sqrt (log1p N)) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (fma 1 (log1p N) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (fma 1 (log1p N) (- (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N)))))), (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))), (fma 1 (log1p N) (- (* (sqrt (log N)) (sqrt (log N))))), (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))), (fma 1 (log1p N) (- (* (log N) 1))), (fma (- (log N)) 1 (* (log N) 1)), (expm1 (- (log1p N) (log N))), (log1p (- (log1p N) (log N))), (- (log N)), (- (log N)), (- (log N)), (/ (+ 1 N) N), (/ (exp (log1p N)) N), (log (- (log1p N) (log N))), (exp (- (log1p N) (log N))), (* (cbrt (- (log1p N) (log N))) (cbrt (- (log1p N) (log N)))), (cbrt (- (log1p N) (log N))), (* (* (- (log1p N) (log N)) (- (log1p N) (log N))) (- (log1p N) (log N))), (sqrt (- (log1p N) (log N))), (sqrt (- (log1p N) (log N))), (- (pow (log1p N) 3) (pow (log N) 3)), (+ (* (log1p N) (log1p N)) (+ (* (log N) (log N)) (* (log1p N) (log N)))), (- (log N)), (- (* (log1p N) (log1p N)) (* (log N) (log N))), (+ (log1p N) (log N)), (+ (sqrt (log1p N)) (sqrt (log N))), (- (sqrt (log1p N)) (sqrt (log N))), (- (log1p N) (log N)), (- (log1p N) (log N)), (- (log1p N) (log (* (cbrt N) (cbrt N)))), (- (log1p N) (log (sqrt N))), (- (log1p N) (log 1)), (- (log N)), (real->posit16 (- (log1p N) (log N))), (- N (+ (log N) (* 1/2 (pow N 2)))), (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))), (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 0.296 * * [simplify]: iteration 1: (83 enodes) 0.325 * * [simplify]: iteration 2: (334 enodes) 0.440 * * [simplify]: iteration 3: (565 enodes) 0.708 * * [simplify]: Extracting #0: cost 25 inf + 0 0.708 * * [simplify]: Extracting #1: cost 156 inf + 0 0.710 * * [simplify]: Extracting #2: cost 298 inf + 482 0.716 * * [simplify]: Extracting #3: cost 231 inf + 14462 0.731 * * [simplify]: Extracting #4: cost 76 inf + 50010 0.750 * * [simplify]: Extracting #5: cost 14 inf + 67602 0.769 * * [simplify]: Extracting #6: cost 0 inf + 72343 0.781 * [simplify]: Simplified to (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)), (* (log N) 0), (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)), (* (log N) 0), (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)), (* (log N) 0), (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (- (log1p N) (log N)), (* (log N) 0), (expm1 (- (log1p N) (log N))), (log1p (- (log1p N) (log N))), (- (log N)), (- (log N)), (- (log N)), (/ (+ 1 N) N), (/ (exp (log1p N)) N), (log (- (log1p N) (log N))), (/ (exp (log1p N)) N), (* (cbrt (- (log1p N) (log N))) (cbrt (- (log1p N) (log N)))), (cbrt (- (log1p N) (log N))), (* (* (- (log1p N) (log N)) (- (log1p N) (log N))) (- (log1p N) (log N))), (sqrt (- (log1p N) (log N))), (sqrt (- (log1p N) (log N))), (- (* (* (log1p N) (log1p N)) (log1p N)) (* (* (log N) (log N)) (log N))), (fma (log N) (+ (log N) (log1p N)) (* (log1p N) (log1p N))), (- (log N)), (- (* (log1p N) (log1p N)) (* (log N) (log N))), (+ (log N) (log1p N)), (+ (sqrt (log N)) (sqrt (log1p N))), (- (sqrt (log1p N)) (sqrt (log N))), (- (log1p N) (log N)), (- (log1p N) (log N)), (- (- (log1p N) (log (cbrt N))) (log (cbrt N))), (- (log1p N) (log (sqrt N))), (log1p N), (- (log N)), (real->posit16 (- (log1p N) (log N))), (- N (fma (* N N) 1/2 (log N))), (+ (/ -1/2 (* N N)) (fma 1/3 (/ (/ 1 N) (* N N)) (/ 1 N))), (+ (/ -1/2 (* N N)) (fma 1/3 (/ (/ 1 N) (* N N)) (/ 1 N))) 0.781 * * * * [progress]: [ 1 / 40 ] simplifiying candidate # 0.781 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.781 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 2 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))))) 0.782 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 3 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))))) 0.782 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 4 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.782 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (* (cbrt (log1p N)) (* (cbrt (log1p N)) (cbrt (log1p N)))) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 5 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.782 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 6 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))))) 0.782 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.782 * * * * [progress]: [ 7 / 40 ] simplifiying candidate # 0.782 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 8 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 9 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 10 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (cbrt (log N))) (* (cbrt (log N)) (cbrt (log N))) (* (cbrt (log N)) (* (cbrt (log N)) (cbrt (log N))))))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 11 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (sqrt (log N))) (sqrt (log N)) (* (sqrt (log N)) (sqrt (log N)))))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 12 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log1p N) (log N)) (fma (- (log N)) 1 (* (log N) 1)))) 0.783 * [simplify]: Simplified (2 2) to (λ (N) (+ (- (log1p N) (log N)) (* (log N) 0))) 0.783 * * * * [progress]: [ 13 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (log1p (expm1 (- (log1p N) (log N))))) 0.783 * * * * [progress]: [ 14 / 40 ] simplifiying candidate # 0.783 * [simplify]: Simplified (2 1) to (λ (N) (expm1 (log1p (- (log1p N) (log N))))) 0.784 * * * * [progress]: [ 15 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 3) to (λ (N) (fma (* (cbrt (log1p N)) (cbrt (log1p N))) (cbrt (log1p N)) (- (log N)))) 0.784 * * * * [progress]: [ 16 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 3) to (λ (N) (fma (sqrt (log1p N)) (sqrt (log1p N)) (- (log N)))) 0.784 * * * * [progress]: [ 17 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 3) to (λ (N) (fma 1 (log1p N) (- (log N)))) 0.784 * * * * [progress]: [ 18 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (log (/ (+ 1 N) N))) 0.784 * * * * [progress]: [ 19 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (log (/ (exp (log1p N)) N))) 0.784 * * * * [progress]: [ 20 / 40 ] simplifiying candidate # 0.784 * * * * [progress]: [ 21 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (exp (log (- (log1p N) (log N))))) 0.784 * * * * [progress]: [ 22 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (log (/ (exp (log1p N)) N))) 0.784 * * * * [progress]: [ 23 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (* (* (cbrt (- (log1p N) (log N))) (cbrt (- (log1p N) (log N)))) (cbrt (- (log1p N) (log N))))) 0.784 * [simplify]: Simplified (2 2) to (λ (N) (* (* (cbrt (- (log1p N) (log N))) (cbrt (- (log1p N) (log N)))) (cbrt (- (log1p N) (log N))))) 0.784 * * * * [progress]: [ 24 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (cbrt (* (* (- (log1p N) (log N)) (- (log1p N) (log N))) (- (log1p N) (log N))))) 0.784 * * * * [progress]: [ 25 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (- (log1p N) (log N))) (sqrt (- (log1p N) (log N))))) 0.784 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (- (log1p N) (log N))) (sqrt (- (log1p N) (log N))))) 0.784 * * * * [progress]: [ 26 / 40 ] simplifiying candidate # 0.784 * [simplify]: Simplified (2 1) to (λ (N) (/ (- (* (* (log1p N) (log1p N)) (log1p N)) (* (* (log N) (log N)) (log N))) (+ (* (log1p N) (log1p N)) (+ (* (log N) (log N)) (* (log1p N) (log N)))))) 0.785 * [simplify]: Simplified (2 2) to (λ (N) (/ (- (* (* (log1p N) (log1p N)) (log1p N)) (* (* (log N) (log N)) (log N))) (fma (log N) (+ (log N) (log1p N)) (* (log1p N) (log1p N))))) 0.785 * * * * [progress]: [ 27 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 2) to (λ (N) (+ (log1p N) (- (log N)))) 0.785 * * * * [progress]: [ 28 / 40 ] simplifiying candidate # 0.785 * * * * [progress]: [ 29 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 1) to (λ (N) (/ (- (* (log1p N) (log1p N)) (* (log N) (log N))) (+ (log1p N) (log N)))) 0.785 * [simplify]: Simplified (2 2) to (λ (N) (/ (- (* (log1p N) (log1p N)) (* (log N) (log N))) (+ (log N) (log1p N)))) 0.785 * * * * [progress]: [ 30 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 1) to (λ (N) (* (+ (sqrt (log N)) (sqrt (log1p N))) (- (sqrt (log1p N)) (sqrt (log N))))) 0.785 * [simplify]: Simplified (2 2) to (λ (N) (* (+ (sqrt (log1p N)) (sqrt (log N))) (- (sqrt (log1p N)) (sqrt (log N))))) 0.785 * * * * [progress]: [ 31 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (- (log1p N) (log N)))) 0.785 * * * * [progress]: [ 32 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (- (log1p N) (log N)))) 0.785 * * * * [progress]: [ 33 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 1) to (λ (N) (- (- (- (log1p N) (log (cbrt N))) (log (cbrt N))) (log (cbrt N)))) 0.785 * * * * [progress]: [ 34 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 1) to (λ (N) (- (- (log1p N) (log (sqrt N))) (log (sqrt N)))) 0.785 * * * * [progress]: [ 35 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 1) to (λ (N) (- (log1p N) (log N))) 0.785 * * * * [progress]: [ 36 / 40 ] simplifiying candidate # 0.785 * [simplify]: Simplified (2 2) to (λ (N) (+ (log1p N) (- (log N)))) 0.786 * * * * [progress]: [ 37 / 40 ] simplifiying candidate #real (real->posit16 (- (log1p N) (log N)))))> 0.786 * [simplify]: Simplified (2 1) to (λ (N) (posit16->real (real->posit16 (- (log1p N) (log N))))) 0.786 * * * * [progress]: [ 38 / 40 ] simplifiying candidate # 0.786 * [simplify]: Simplified (2) to (λ (N) (- N (fma (* N N) 1/2 (log N)))) 0.786 * * * * [progress]: [ 39 / 40 ] simplifiying candidate # 0.786 * [simplify]: Simplified (2) to (λ (N) (+ (/ -1/2 (* N N)) (fma 1/3 (/ (/ 1 N) (* N N)) (/ 1 N)))) 0.786 * * * * [progress]: [ 40 / 40 ] simplifiying candidate # 0.786 * [simplify]: Simplified (2) to (λ (N) (+ (/ -1/2 (* N N)) (fma 1/3 (/ (/ 1 N) (* N N)) (/ 1 N)))) 0.786 * * * [progress]: adding candidates to table 1.076 * * [progress]: iteration 2 / 4 1.076 * * * [progress]: picking best candidate 1.083 * * * * [pick]: Picked # 1.083 * * * [progress]: localizing error 1.100 * * * [progress]: generating rewritten candidates 1.100 * * * * [progress]: [ 1 / 2 ] rewriting at (2) 1.105 * * * * [progress]: [ 2 / 2 ] rewriting at (2 1) 1.119 * * * [progress]: generating series expansions 1.119 * * * * [progress]: [ 1 / 2 ] generating series at (2) 1.119 * [backup-simplify]: Simplify (log (/ (+ 1 N) N)) into (log (/ (+ N 1) N)) 1.119 * [approximate]: Taking taylor expansion of (log (/ (+ N 1) N)) in (N) around 0 1.119 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 1.119 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 1.119 * [taylor]: Taking taylor expansion of (+ N 1) in N 1.119 * [taylor]: Taking taylor expansion of N in N 1.119 * [backup-simplify]: Simplify 0 into 0 1.119 * [backup-simplify]: Simplify 1 into 1 1.119 * [taylor]: Taking taylor expansion of 1 in N 1.119 * [backup-simplify]: Simplify 1 into 1 1.119 * [taylor]: Taking taylor expansion of N in N 1.119 * [backup-simplify]: Simplify 0 into 0 1.119 * [backup-simplify]: Simplify 1 into 1 1.120 * [backup-simplify]: Simplify (+ 0 1) into 1 1.120 * [backup-simplify]: Simplify (/ 1 1) into 1 1.120 * [backup-simplify]: Simplify (log 1) into 0 1.120 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 1.120 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 1.120 * [taylor]: Taking taylor expansion of (+ N 1) in N 1.120 * [taylor]: Taking taylor expansion of N in N 1.120 * [backup-simplify]: Simplify 0 into 0 1.120 * [backup-simplify]: Simplify 1 into 1 1.120 * [taylor]: Taking taylor expansion of 1 in N 1.120 * [backup-simplify]: Simplify 1 into 1 1.120 * [taylor]: Taking taylor expansion of N in N 1.120 * [backup-simplify]: Simplify 0 into 0 1.120 * [backup-simplify]: Simplify 1 into 1 1.121 * [backup-simplify]: Simplify (+ 0 1) into 1 1.121 * [backup-simplify]: Simplify (/ 1 1) into 1 1.121 * [backup-simplify]: Simplify (log 1) into 0 1.122 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 1.122 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 1.122 * [backup-simplify]: Simplify (+ 1 0) into 1 1.122 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 1.123 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 1.123 * [backup-simplify]: Simplify 1 into 1 1.123 * [backup-simplify]: Simplify (+ 0 0) into 0 1.124 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 1.125 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 1.125 * [backup-simplify]: Simplify -1/2 into -1/2 1.125 * [backup-simplify]: Simplify (+ (* -1/2 (pow N 2)) (+ (* 1 N) (- (log N)))) into (- N (+ (log N) (* 1/2 (pow N 2)))) 1.126 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 N)) (/ 1 N))) into (log (* N (+ (/ 1 N) 1))) 1.126 * [approximate]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in (N) around 0 1.126 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 1.126 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 1.126 * [taylor]: Taking taylor expansion of N in N 1.126 * [backup-simplify]: Simplify 0 into 0 1.126 * [backup-simplify]: Simplify 1 into 1 1.126 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 1.126 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.126 * [taylor]: Taking taylor expansion of N in N 1.126 * [backup-simplify]: Simplify 0 into 0 1.126 * [backup-simplify]: Simplify 1 into 1 1.126 * [backup-simplify]: Simplify (/ 1 1) into 1 1.126 * [taylor]: Taking taylor expansion of 1 in N 1.126 * [backup-simplify]: Simplify 1 into 1 1.126 * [backup-simplify]: Simplify (+ 1 0) into 1 1.127 * [backup-simplify]: Simplify (* 0 1) into 0 1.127 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.127 * [backup-simplify]: Simplify (+ 0 1) into 1 1.131 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 1.132 * [backup-simplify]: Simplify (log 1) into 0 1.132 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 1.132 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 1.132 * [taylor]: Taking taylor expansion of N in N 1.132 * [backup-simplify]: Simplify 0 into 0 1.132 * [backup-simplify]: Simplify 1 into 1 1.132 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 1.132 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.132 * [taylor]: Taking taylor expansion of N in N 1.132 * [backup-simplify]: Simplify 0 into 0 1.132 * [backup-simplify]: Simplify 1 into 1 1.132 * [backup-simplify]: Simplify (/ 1 1) into 1 1.132 * [taylor]: Taking taylor expansion of 1 in N 1.132 * [backup-simplify]: Simplify 1 into 1 1.133 * [backup-simplify]: Simplify (+ 1 0) into 1 1.133 * [backup-simplify]: Simplify (* 0 1) into 0 1.134 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.134 * [backup-simplify]: Simplify (+ 0 1) into 1 1.135 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 1.135 * [backup-simplify]: Simplify (log 1) into 0 1.135 * [backup-simplify]: Simplify 0 into 0 1.136 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.137 * [backup-simplify]: Simplify (+ 0 0) into 0 1.138 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 1.139 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 1.139 * [backup-simplify]: Simplify 1 into 1 1.140 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.140 * [backup-simplify]: Simplify (+ 0 0) into 0 1.142 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 1.144 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 1.144 * [backup-simplify]: Simplify -1/2 into -1/2 1.146 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.146 * [backup-simplify]: Simplify (+ 0 0) into 0 1.147 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 1.152 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 1.153 * [backup-simplify]: Simplify 1/3 into 1/3 1.153 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 1.153 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N)))) into (log (* -1 (* N (- 1 (/ 1 N))))) 1.153 * [approximate]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in (N) around 0 1.153 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 1.153 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 1.153 * [taylor]: Taking taylor expansion of -1 in N 1.153 * [backup-simplify]: Simplify -1 into -1 1.153 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 1.153 * [taylor]: Taking taylor expansion of N in N 1.153 * [backup-simplify]: Simplify 0 into 0 1.153 * [backup-simplify]: Simplify 1 into 1 1.153 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 1.153 * [taylor]: Taking taylor expansion of 1 in N 1.154 * [backup-simplify]: Simplify 1 into 1 1.154 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.154 * [taylor]: Taking taylor expansion of N in N 1.154 * [backup-simplify]: Simplify 0 into 0 1.154 * [backup-simplify]: Simplify 1 into 1 1.154 * [backup-simplify]: Simplify (/ 1 1) into 1 1.154 * [backup-simplify]: Simplify (- 1) into -1 1.155 * [backup-simplify]: Simplify (+ 0 -1) into -1 1.155 * [backup-simplify]: Simplify (* 0 -1) into 0 1.156 * [backup-simplify]: Simplify (* -1 0) into 0 1.156 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.157 * [backup-simplify]: Simplify (- 0) into 0 1.157 * [backup-simplify]: Simplify (+ 1 0) into 1 1.158 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 1.158 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 1.159 * [backup-simplify]: Simplify (log 1) into 0 1.159 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 1.159 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 1.159 * [taylor]: Taking taylor expansion of -1 in N 1.159 * [backup-simplify]: Simplify -1 into -1 1.159 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 1.159 * [taylor]: Taking taylor expansion of N in N 1.159 * [backup-simplify]: Simplify 0 into 0 1.159 * [backup-simplify]: Simplify 1 into 1 1.159 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 1.159 * [taylor]: Taking taylor expansion of 1 in N 1.159 * [backup-simplify]: Simplify 1 into 1 1.159 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.159 * [taylor]: Taking taylor expansion of N in N 1.159 * [backup-simplify]: Simplify 0 into 0 1.159 * [backup-simplify]: Simplify 1 into 1 1.160 * [backup-simplify]: Simplify (/ 1 1) into 1 1.160 * [backup-simplify]: Simplify (- 1) into -1 1.160 * [backup-simplify]: Simplify (+ 0 -1) into -1 1.161 * [backup-simplify]: Simplify (* 0 -1) into 0 1.161 * [backup-simplify]: Simplify (* -1 0) into 0 1.162 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.162 * [backup-simplify]: Simplify (- 0) into 0 1.163 * [backup-simplify]: Simplify (+ 1 0) into 1 1.164 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 1.164 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 1.165 * [backup-simplify]: Simplify (log 1) into 0 1.165 * [backup-simplify]: Simplify 0 into 0 1.166 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.166 * [backup-simplify]: Simplify (- 0) into 0 1.166 * [backup-simplify]: Simplify (+ 0 0) into 0 1.167 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 1.168 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 1.170 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 1.170 * [backup-simplify]: Simplify -1 into -1 1.171 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.172 * [backup-simplify]: Simplify (- 0) into 0 1.172 * [backup-simplify]: Simplify (+ 0 0) into 0 1.173 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 1.175 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 1.178 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 -1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 1.178 * [backup-simplify]: Simplify -1/2 into -1/2 1.179 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.179 * [backup-simplify]: Simplify (- 0) into 0 1.180 * [backup-simplify]: Simplify (+ 0 0) into 0 1.181 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 1.182 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 1.188 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 -1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 -1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into -1/3 1.188 * [backup-simplify]: Simplify -1/3 into -1/3 1.188 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 1.188 * * * * [progress]: [ 2 / 2 ] generating series at (2 1) 1.189 * [backup-simplify]: Simplify (/ (+ 1 N) N) into (/ (+ N 1) N) 1.189 * [approximate]: Taking taylor expansion of (/ (+ N 1) N) in (N) around 0 1.189 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 1.189 * [taylor]: Taking taylor expansion of (+ N 1) in N 1.189 * [taylor]: Taking taylor expansion of N in N 1.189 * [backup-simplify]: Simplify 0 into 0 1.189 * [backup-simplify]: Simplify 1 into 1 1.189 * [taylor]: Taking taylor expansion of 1 in N 1.189 * [backup-simplify]: Simplify 1 into 1 1.189 * [taylor]: Taking taylor expansion of N in N 1.189 * [backup-simplify]: Simplify 0 into 0 1.189 * [backup-simplify]: Simplify 1 into 1 1.189 * [backup-simplify]: Simplify (+ 0 1) into 1 1.190 * [backup-simplify]: Simplify (/ 1 1) into 1 1.190 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 1.190 * [taylor]: Taking taylor expansion of (+ N 1) in N 1.190 * [taylor]: Taking taylor expansion of N in N 1.190 * [backup-simplify]: Simplify 0 into 0 1.190 * [backup-simplify]: Simplify 1 into 1 1.190 * [taylor]: Taking taylor expansion of 1 in N 1.190 * [backup-simplify]: Simplify 1 into 1 1.190 * [taylor]: Taking taylor expansion of N in N 1.190 * [backup-simplify]: Simplify 0 into 0 1.190 * [backup-simplify]: Simplify 1 into 1 1.191 * [backup-simplify]: Simplify (+ 0 1) into 1 1.191 * [backup-simplify]: Simplify (/ 1 1) into 1 1.191 * [backup-simplify]: Simplify 1 into 1 1.191 * [backup-simplify]: Simplify (+ 1 0) into 1 1.192 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 1.192 * [backup-simplify]: Simplify 1 into 1 1.193 * [backup-simplify]: Simplify (+ 0 0) into 0 1.194 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 1.194 * [backup-simplify]: Simplify 0 into 0 1.194 * [backup-simplify]: Simplify (+ 0 0) into 0 1.195 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.195 * [backup-simplify]: Simplify 0 into 0 1.196 * [backup-simplify]: Simplify (+ 0 0) into 0 1.196 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.196 * [backup-simplify]: Simplify 0 into 0 1.197 * [backup-simplify]: Simplify (+ 0 0) into 0 1.198 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.198 * [backup-simplify]: Simplify 0 into 0 1.198 * [backup-simplify]: Simplify (+ 0 0) into 0 1.199 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.199 * [backup-simplify]: Simplify 0 into 0 1.200 * [backup-simplify]: Simplify (+ 0 0) into 0 1.200 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.200 * [backup-simplify]: Simplify 0 into 0 1.201 * [backup-simplify]: Simplify (+ 1 (* 1 (/ 1 N))) into (+ (/ 1 N) 1) 1.201 * [backup-simplify]: Simplify (/ (+ 1 (/ 1 N)) (/ 1 N)) into (* N (+ (/ 1 N) 1)) 1.201 * [approximate]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in (N) around 0 1.201 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 1.201 * [taylor]: Taking taylor expansion of N in N 1.201 * [backup-simplify]: Simplify 0 into 0 1.201 * [backup-simplify]: Simplify 1 into 1 1.201 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 1.201 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.201 * [taylor]: Taking taylor expansion of N in N 1.201 * [backup-simplify]: Simplify 0 into 0 1.201 * [backup-simplify]: Simplify 1 into 1 1.201 * [backup-simplify]: Simplify (/ 1 1) into 1 1.201 * [taylor]: Taking taylor expansion of 1 in N 1.201 * [backup-simplify]: Simplify 1 into 1 1.202 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 1.202 * [taylor]: Taking taylor expansion of N in N 1.202 * [backup-simplify]: Simplify 0 into 0 1.202 * [backup-simplify]: Simplify 1 into 1 1.202 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 1.202 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.202 * [taylor]: Taking taylor expansion of N in N 1.202 * [backup-simplify]: Simplify 0 into 0 1.202 * [backup-simplify]: Simplify 1 into 1 1.202 * [backup-simplify]: Simplify (/ 1 1) into 1 1.202 * [taylor]: Taking taylor expansion of 1 in N 1.202 * [backup-simplify]: Simplify 1 into 1 1.203 * [backup-simplify]: Simplify (+ 1 0) into 1 1.203 * [backup-simplify]: Simplify (* 0 1) into 0 1.203 * [backup-simplify]: Simplify 0 into 0 1.204 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.204 * [backup-simplify]: Simplify (+ 0 1) into 1 1.205 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 1.205 * [backup-simplify]: Simplify 1 into 1 1.206 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.206 * [backup-simplify]: Simplify (+ 0 0) into 0 1.207 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 1.207 * [backup-simplify]: Simplify 1 into 1 1.208 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.208 * [backup-simplify]: Simplify (+ 0 0) into 0 1.209 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 1.209 * [backup-simplify]: Simplify 0 into 0 1.210 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.211 * [backup-simplify]: Simplify (+ 0 0) into 0 1.212 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 1.212 * [backup-simplify]: Simplify 0 into 0 1.213 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.213 * [backup-simplify]: Simplify (+ 0 0) into 0 1.215 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 1)))))) into 0 1.215 * [backup-simplify]: Simplify 0 into 0 1.216 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.216 * [backup-simplify]: Simplify (+ 0 0) into 0 1.218 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))))) into 0 1.218 * [backup-simplify]: Simplify 0 into 0 1.219 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.219 * [backup-simplify]: Simplify (+ 0 0) into 0 1.221 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 1)))))))) into 0 1.221 * [backup-simplify]: Simplify 0 into 0 1.222 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.223 * [backup-simplify]: Simplify (+ 0 0) into 0 1.225 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))))))) into 0 1.225 * [backup-simplify]: Simplify 0 into 0 1.225 * [backup-simplify]: Simplify (+ (* 1 (/ 1 N)) 1) into (+ (/ 1 N) 1) 1.225 * [backup-simplify]: Simplify (/ (+ 1 (/ 1 (- N))) (/ 1 (- N))) into (* -1 (* N (- 1 (/ 1 N)))) 1.225 * [approximate]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in (N) around 0 1.225 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 1.225 * [taylor]: Taking taylor expansion of -1 in N 1.225 * [backup-simplify]: Simplify -1 into -1 1.225 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 1.225 * [taylor]: Taking taylor expansion of N in N 1.225 * [backup-simplify]: Simplify 0 into 0 1.225 * [backup-simplify]: Simplify 1 into 1 1.225 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 1.225 * [taylor]: Taking taylor expansion of 1 in N 1.225 * [backup-simplify]: Simplify 1 into 1 1.225 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.225 * [taylor]: Taking taylor expansion of N in N 1.225 * [backup-simplify]: Simplify 0 into 0 1.225 * [backup-simplify]: Simplify 1 into 1 1.226 * [backup-simplify]: Simplify (/ 1 1) into 1 1.226 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 1.226 * [taylor]: Taking taylor expansion of -1 in N 1.226 * [backup-simplify]: Simplify -1 into -1 1.226 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 1.226 * [taylor]: Taking taylor expansion of N in N 1.226 * [backup-simplify]: Simplify 0 into 0 1.226 * [backup-simplify]: Simplify 1 into 1 1.226 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 1.226 * [taylor]: Taking taylor expansion of 1 in N 1.226 * [backup-simplify]: Simplify 1 into 1 1.226 * [taylor]: Taking taylor expansion of (/ 1 N) in N 1.226 * [taylor]: Taking taylor expansion of N in N 1.226 * [backup-simplify]: Simplify 0 into 0 1.226 * [backup-simplify]: Simplify 1 into 1 1.226 * [backup-simplify]: Simplify (/ 1 1) into 1 1.227 * [backup-simplify]: Simplify (- 1) into -1 1.227 * [backup-simplify]: Simplify (+ 0 -1) into -1 1.227 * [backup-simplify]: Simplify (* 0 -1) into 0 1.227 * [backup-simplify]: Simplify (* -1 0) into 0 1.227 * [backup-simplify]: Simplify 0 into 0 1.228 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 1.228 * [backup-simplify]: Simplify (- 0) into 0 1.228 * [backup-simplify]: Simplify (+ 1 0) into 1 1.229 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 1.229 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 1.229 * [backup-simplify]: Simplify 1 into 1 1.230 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.230 * [backup-simplify]: Simplify (- 0) into 0 1.230 * [backup-simplify]: Simplify (+ 0 0) into 0 1.231 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 1.232 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 1.232 * [backup-simplify]: Simplify -1 into -1 1.232 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.232 * [backup-simplify]: Simplify (- 0) into 0 1.233 * [backup-simplify]: Simplify (+ 0 0) into 0 1.233 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 1.234 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 1.234 * [backup-simplify]: Simplify 0 into 0 1.235 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.235 * [backup-simplify]: Simplify (- 0) into 0 1.235 * [backup-simplify]: Simplify (+ 0 0) into 0 1.236 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 1.237 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 1.237 * [backup-simplify]: Simplify 0 into 0 1.237 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.238 * [backup-simplify]: Simplify (- 0) into 0 1.238 * [backup-simplify]: Simplify (+ 0 0) into 0 1.239 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1)))))) into 0 1.240 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))))) into 0 1.240 * [backup-simplify]: Simplify 0 into 0 1.240 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.241 * [backup-simplify]: Simplify (- 0) into 0 1.241 * [backup-simplify]: Simplify (+ 0 0) into 0 1.242 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))))) into 0 1.243 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))))) into 0 1.243 * [backup-simplify]: Simplify 0 into 0 1.244 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.244 * [backup-simplify]: Simplify (- 0) into 0 1.244 * [backup-simplify]: Simplify (+ 0 0) into 0 1.245 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1)))))))) into 0 1.246 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))))))) into 0 1.246 * [backup-simplify]: Simplify 0 into 0 1.247 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 1.247 * [backup-simplify]: Simplify (- 0) into 0 1.247 * [backup-simplify]: Simplify (+ 0 0) into 0 1.248 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))))))) into 0 1.250 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))))))) into 0 1.250 * [backup-simplify]: Simplify 0 into 0 1.250 * [backup-simplify]: Simplify (+ (* -1 (/ 1 (- N))) 1) into (+ (/ 1 N) 1) 1.250 * * * [progress]: simplifying candidates 1.250 * * * * [progress]: [ 1 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 2 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 3 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 4 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 5 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 6 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 7 / 72 ] simplifiying candidate # 1.250 * * * * [progress]: [ 8 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 9 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 10 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 11 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 12 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 13 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 14 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 15 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 16 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 17 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 18 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 19 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 20 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 21 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 22 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 23 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 24 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 25 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 26 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 27 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 28 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 29 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 30 / 72 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N)))))> 1.251 * * * * [progress]: [ 31 / 72 ] simplifiying candidate # 1.251 * * * * [progress]: [ 32 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 33 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 34 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 35 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 36 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 37 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 38 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 39 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 40 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 41 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 42 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 43 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 44 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 45 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 46 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 47 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 48 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 49 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 50 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 51 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 52 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 53 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 54 / 72 ] simplifiying candidate # 1.252 * * * * [progress]: [ 55 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 56 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 57 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 58 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 59 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 60 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 61 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 62 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 63 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 64 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 65 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 66 / 72 ] simplifiying candidate #real (real->posit16 (/ (+ 1 N) N)))))> 1.253 * * * * [progress]: [ 67 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 68 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 69 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 70 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 71 / 72 ] simplifiying candidate # 1.253 * * * * [progress]: [ 72 / 72 ] simplifiying candidate # 1.255 * [simplify]: Simplifying (expm1 (log (/ (+ 1 N) N))), (log1p (log (/ (+ 1 N) N))), (log (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N)))), (log (cbrt (/ (+ 1 N) N))), (log (sqrt (/ (+ 1 N) N))), (log (sqrt (/ (+ 1 N) N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N)))), (log (/ (cbrt (+ 1 N)) (cbrt N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N))), (log (/ (cbrt (+ 1 N)) (sqrt N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1)), (log (/ (cbrt (+ 1 N)) N)), (log (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N)))), (log (/ (sqrt (+ 1 N)) (cbrt N))), (log (/ (sqrt (+ 1 N)) (sqrt N))), (log (/ (sqrt (+ 1 N)) (sqrt N))), (log (/ (sqrt (+ 1 N)) 1)), (log (/ (sqrt (+ 1 N)) N)), (log (/ 1 (* (cbrt N) (cbrt N)))), (log (/ (+ 1 N) (cbrt N))), (log (/ 1 (sqrt N))), (log (/ (+ 1 N) (sqrt N))), (log (/ 1 1)), (log (/ (+ 1 N) N)), (log (/ 1 (* (cbrt N) (cbrt N)))), (log (/ (+ 1 N) (cbrt N))), (log (/ 1 (sqrt N))), (log (/ (+ 1 N) (sqrt N))), (log (/ 1 1)), (log (/ (+ 1 N) N)), (log 1), (log (/ (+ 1 N) N)), (log (+ 1 N)), (log (/ 1 N)), (log (+ 1 N)), (log N), (log (/ (+ 1 N) N)), (log (log (/ (+ 1 N) N))), (exp (log (/ (+ 1 N) N))), (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N)))), (cbrt (log (/ (+ 1 N) N))), (* (* (log (/ (+ 1 N) N)) (log (/ (+ 1 N) N))) (log (/ (+ 1 N) N))), (sqrt (log (/ (+ 1 N) N))), (sqrt (log (/ (+ 1 N) N))), (real->posit16 (log (/ (+ 1 N) N))), (expm1 (/ (+ 1 N) N)), (log1p (/ (+ 1 N) N)), (- (log (+ 1 N)) (log N)), (log (/ (+ 1 N) N)), (exp (/ (+ 1 N) N)), (/ (* (* (+ 1 N) (+ 1 N)) (+ 1 N)) (* (* N N) N)), (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N))), (cbrt (/ (+ 1 N) N)), (* (* (/ (+ 1 N) N) (/ (+ 1 N) N)) (/ (+ 1 N) N)), (sqrt (/ (+ 1 N) N)), (sqrt (/ (+ 1 N) N)), (- (+ 1 N)), (- N), (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N))), (/ (cbrt (+ 1 N)) (cbrt N)), (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N)), (/ (cbrt (+ 1 N)) (sqrt N)), (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1), (/ (cbrt (+ 1 N)) N), (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N))), (/ (sqrt (+ 1 N)) (cbrt N)), (/ (sqrt (+ 1 N)) (sqrt N)), (/ (sqrt (+ 1 N)) (sqrt N)), (/ (sqrt (+ 1 N)) 1), (/ (sqrt (+ 1 N)) N), (/ 1 (* (cbrt N) (cbrt N))), (/ (+ 1 N) (cbrt N)), (/ 1 (sqrt N)), (/ (+ 1 N) (sqrt N)), (/ 1 1), (/ (+ 1 N) N), (/ 1 (* (cbrt N) (cbrt N))), (/ (+ 1 N) (cbrt N)), (/ 1 (sqrt N)), (/ (+ 1 N) (sqrt N)), (/ 1 1), (/ (+ 1 N) N), (/ 1 N), (/ N (+ 1 N)), (/ (+ 1 N) (* (cbrt N) (cbrt N))), (/ (+ 1 N) (sqrt N)), (/ (+ 1 N) 1), (/ N (cbrt (+ 1 N))), (/ N (sqrt (+ 1 N))), (/ N (+ 1 N)), (/ N (+ 1 N)), (* N (+ (* 1 1) (- (* N N) (* 1 N)))), (* N (- 1 N)), (real->posit16 (/ (+ 1 N) N)), (- N (+ (log N) (* 1/2 (pow N 2)))), (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))), (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))), (+ (/ 1 N) 1), (+ (/ 1 N) 1), (+ (/ 1 N) 1) 1.257 * * [simplify]: iteration 1: (106 enodes) 1.299 * * [simplify]: iteration 2: (414 enodes) 1.395 * * [simplify]: iteration 3: (751 enodes) 1.661 * * [simplify]: Extracting #0: cost 69 inf + 0 1.662 * * [simplify]: Extracting #1: cost 259 inf + 2 1.665 * * [simplify]: Extracting #2: cost 373 inf + 3729 1.676 * * [simplify]: Extracting #3: cost 172 inf + 42574 1.702 * * [simplify]: Extracting #4: cost 23 inf + 74915 1.716 * * [simplify]: Extracting #5: cost 0 inf + 81201 1.730 * * [simplify]: Extracting #6: cost 0 inf + 81131 1.752 * [simplify]: Simplified to (expm1 (log (/ (+ N 1) N))), (log1p (log (/ (+ N 1) N))), (log (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N)))), (log (cbrt (/ (+ N 1) N))), (log (sqrt (/ (+ N 1) N))), (log (sqrt (/ (+ N 1) N))), (log (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N)))), (log (/ (cbrt (+ N 1)) (cbrt N))), (log (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1))))), (log (/ (cbrt (+ N 1)) (sqrt N))), (+ (log (cbrt (+ N 1))) (log (cbrt (+ N 1)))), (log (/ (cbrt (+ N 1)) N)), (log (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N)))), (log (/ (sqrt (+ N 1)) (cbrt N))), (log (/ (sqrt (+ N 1)) (sqrt N))), (log (/ (sqrt (+ N 1)) (sqrt N))), (log (sqrt (+ N 1))), (log (/ (sqrt (+ N 1)) N)), (+ (- (log (cbrt N))) (- (log (cbrt N)))), (log (/ (+ N 1) (cbrt N))), (- (log (sqrt N))), (log (/ (+ N 1) (sqrt N))), 0, (log (/ (+ N 1) N)), (+ (- (log (cbrt N))) (- (log (cbrt N)))), (log (/ (+ N 1) (cbrt N))), (- (log (sqrt N))), (log (/ (+ N 1) (sqrt N))), 0, (log (/ (+ N 1) N)), 0, (log (/ (+ N 1) N)), (log1p N), (- (log N)), (log1p N), (log N), (log (/ (+ N 1) N)), (log (log (/ (+ N 1) N))), (/ (+ N 1) N), (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))), (cbrt (log (/ (+ N 1) N))), (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (real->posit16 (log (/ (+ N 1) N))), (expm1 (/ (+ N 1) N)), (log1p (/ (+ N 1) N)), (log (/ (+ N 1) N)), (log (/ (+ N 1) N)), (exp (/ (+ N 1) N)), (* (/ (+ N 1) N) (* (/ (+ N 1) N) (/ (+ N 1) N))), (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N))), (cbrt (/ (+ N 1) N)), (* (/ (+ N 1) N) (* (/ (+ N 1) N) (/ (+ N 1) N))), (sqrt (/ (+ N 1) N)), (sqrt (/ (+ N 1) N)), (- -1 N), (- N), (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N))), (/ (cbrt (+ N 1)) (cbrt N)), (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1)))), (/ (cbrt (+ N 1)) (sqrt N)), (* (cbrt (+ N 1)) (cbrt (+ N 1))), (/ (cbrt (+ N 1)) N), (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N))), (/ (sqrt (+ N 1)) (cbrt N)), (/ (sqrt (+ N 1)) (sqrt N)), (/ (sqrt (+ N 1)) (sqrt N)), (sqrt (+ N 1)), (/ (sqrt (+ N 1)) N), (/ (/ 1 (cbrt N)) (cbrt N)), (/ (+ N 1) (cbrt N)), (/ 1 (sqrt N)), (/ (+ N 1) (sqrt N)), 1, (/ (+ N 1) N), (/ (/ 1 (cbrt N)) (cbrt N)), (/ (+ N 1) (cbrt N)), (/ 1 (sqrt N)), (/ (+ N 1) (sqrt N)), 1, (/ (+ N 1) N), (/ 1 N), (/ N (+ N 1)), (/ (+ N 1) (* (cbrt N) (cbrt N))), (/ (+ N 1) (sqrt N)), (+ N 1), (/ N (cbrt (+ N 1))), (/ N (sqrt (+ N 1))), (/ N (+ N 1)), (/ N (+ N 1)), (fma (- (* N N) N) N N), (* N (- 1 N)), (real->posit16 (/ (+ N 1) N)), (- N (fma 1/2 (* N N) (log N))), (fma (/ (/ 1 N) (* N N)) 1/3 (+ (/ -1/2 (* N N)) (/ 1 N))), (fma (/ (/ 1 N) (* N N)) 1/3 (+ (/ -1/2 (* N N)) (/ 1 N))), (+ (/ 1 N) 1), (+ (/ 1 N) 1), (+ (/ 1 N) 1) 1.753 * * * * [progress]: [ 1 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (log1p (expm1 (log (/ (+ N 1) N))))) 1.753 * * * * [progress]: [ 2 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (expm1 (log1p (log (/ (+ N 1) N))))) 1.753 * * * * [progress]: [ 3 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N)))) (log (cbrt (/ (+ 1 N) N))))) 1.753 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N)))) (log (cbrt (/ (+ N 1) N))))) 1.753 * * * * [progress]: [ 4 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (sqrt (/ (+ N 1) N))) (log (sqrt (/ (+ 1 N) N))))) 1.753 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (sqrt (/ (+ 1 N) N))) (log (sqrt (/ (+ N 1) N))))) 1.753 * * * * [progress]: [ 5 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N)))) (log (/ (cbrt (+ 1 N)) (cbrt N))))) 1.753 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N)))) (log (/ (cbrt (+ N 1)) (cbrt N))))) 1.753 * * * * [progress]: [ 6 / 72 ] simplifiying candidate # 1.753 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1))))) (log (/ (cbrt (+ 1 N)) (sqrt N))))) 1.753 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N))) (log (/ (cbrt (+ N 1)) (sqrt N))))) 1.753 * * * * [progress]: [ 7 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (+ (log (cbrt (+ N 1))) (log (cbrt (+ N 1)))) (log (/ (cbrt (+ 1 N)) N)))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1)) (log (/ (cbrt (+ N 1)) N)))) 1.754 * * * * [progress]: [ 8 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ 1 N)) (cbrt N))))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ N 1)) (cbrt N))))) 1.754 * * * * [progress]: [ 9 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (/ (sqrt (+ N 1)) (sqrt N))) (log (/ (sqrt (+ 1 N)) (sqrt N))))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (sqrt (+ 1 N)) (sqrt N))) (log (/ (sqrt (+ N 1)) (sqrt N))))) 1.754 * * * * [progress]: [ 10 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (log (sqrt (+ N 1))) (log (/ (sqrt (+ 1 N)) N)))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ (sqrt (+ 1 N)) 1)) (log (/ (sqrt (+ N 1)) N)))) 1.754 * * * * [progress]: [ 11 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (+ (- (log (cbrt N))) (- (log (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))) 1.754 * * * * [progress]: [ 12 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))) 1.754 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))) 1.754 * * * * [progress]: [ 13 / 72 ] simplifiying candidate # 1.754 * [simplify]: Simplified (2 1) to (λ (N) (+ 0 (log (/ (+ 1 N) N)))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ 0 (log (/ (+ N 1) N)))) 1.755 * * * * [progress]: [ 14 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (+ (+ (- (log (cbrt N))) (- (log (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))) 1.755 * * * * [progress]: [ 15 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))) 1.755 * * * * [progress]: [ 16 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (+ 0 (log (/ (+ 1 N) N)))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ 0 (log (/ (+ N 1) N)))) 1.755 * * * * [progress]: [ 17 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (+ 0 (log (/ (+ 1 N) N)))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ 0 (log (/ (+ N 1) N)))) 1.755 * * * * [progress]: [ 18 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (+ (log1p N) (log (/ 1 N)))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (+ (log1p N) (- (log N)))) 1.755 * * * * [progress]: [ 19 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 1) to (λ (N) (- (log1p N) (log N))) 1.755 * [simplify]: Simplified (2 2) to (λ (N) (- (log1p N) (log N))) 1.755 * * * * [progress]: [ 20 / 72 ] simplifiying candidate # 1.755 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 1.755 * * * * [progress]: [ 21 / 72 ] simplifiying candidate # 1.755 * * * * [progress]: [ 22 / 72 ] simplifiying candidate # 1.755 * * * * [progress]: [ 23 / 72 ] simplifiying candidate # 1.756 * * * * [progress]: [ 24 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1) to (λ (N) (exp (log (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 25 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1) to (λ (N) (log (/ (+ N 1) N))) 1.756 * * * * [progress]: [ 26 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1) to (λ (N) (* (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))) (cbrt (log (/ (+ 1 N) N))))) 1.756 * [simplify]: Simplified (2 2) to (λ (N) (* (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N)))) (cbrt (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 27 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1) to (λ (N) (cbrt (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 28 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) 1.756 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 29 / 72 ] simplifiying candidate # 1.756 * * * * [progress]: [ 30 / 72 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N)))))> 1.756 * [simplify]: Simplified (2 1) to (λ (N) (posit16->real (real->posit16 (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 31 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1 1) to (λ (N) (log (log1p (expm1 (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 32 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1 1) to (λ (N) (log (expm1 (log1p (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 33 / 72 ] simplifiying candidate # 1.756 * * * * [progress]: [ 34 / 72 ] simplifiying candidate # 1.756 * [simplify]: Simplified (2 1 1) to (λ (N) (log (exp (log (/ (+ N 1) N))))) 1.756 * * * * [progress]: [ 35 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (exp (log (/ (+ N 1) N))))) 1.757 * * * * [progress]: [ 36 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (log (exp (/ (+ N 1) N))))) 1.757 * * * * [progress]: [ 37 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (cbrt (* (/ (+ N 1) N) (* (/ (+ N 1) N) (/ (+ N 1) N)))))) 1.757 * * * * [progress]: [ 38 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N))) (cbrt (/ (+ 1 N) N))))) 1.757 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N))) (cbrt (/ (+ N 1) N))))) 1.757 * * * * [progress]: [ 39 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (cbrt (* (/ (+ N 1) N) (* (/ (+ N 1) N) (/ (+ N 1) N)))))) 1.757 * * * * [progress]: [ 40 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (sqrt (/ (+ N 1) N)) (sqrt (/ (+ 1 N) N))))) 1.757 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (sqrt (/ (+ 1 N) N)) (sqrt (/ (+ N 1) N))))) 1.757 * * * * [progress]: [ 41 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (/ (- -1 N) (- N)))) 1.757 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ (- -1 N) (- N)))) 1.757 * * * * [progress]: [ 42 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N))) (/ (cbrt (+ 1 N)) (cbrt N))))) 1.757 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N))) (/ (cbrt (+ N 1)) (cbrt N))))) 1.757 * * * * [progress]: [ 43 / 72 ] simplifiying candidate # 1.757 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1)))) (/ (cbrt (+ 1 N)) (sqrt N))))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N)) (/ (cbrt (+ N 1)) (sqrt N))))) 1.758 * * * * [progress]: [ 44 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (* (cbrt (+ N 1)) (cbrt (+ N 1))) (/ (cbrt (+ 1 N)) N)))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1) (/ (cbrt (+ N 1)) N)))) 1.758 * * * * [progress]: [ 45 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N))) (/ (sqrt (+ 1 N)) (cbrt N))))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (+ N 1)) (cbrt N))))) 1.758 * * * * [progress]: [ 46 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ (sqrt (+ N 1)) (sqrt N)) (/ (sqrt (+ 1 N)) (sqrt N))))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (sqrt (+ 1 N)) (sqrt N)) (/ (sqrt (+ N 1)) (sqrt N))))) 1.758 * * * * [progress]: [ 47 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (sqrt (+ N 1)) (/ (sqrt (+ 1 N)) N)))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ (sqrt (+ 1 N)) 1) (/ (sqrt (+ N 1)) N)))) 1.758 * * * * [progress]: [ 48 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ (/ 1 (cbrt N)) (cbrt N)) (/ (+ 1 N) (cbrt N))))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ 1 (* (cbrt N) (cbrt N))) (/ (+ N 1) (cbrt N))))) 1.758 * * * * [progress]: [ 49 / 72 ] simplifiying candidate # 1.758 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ 1 (sqrt N)) (/ (+ 1 N) (sqrt N))))) 1.758 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ 1 (sqrt N)) (/ (+ N 1) (sqrt N))))) 1.759 * * * * [progress]: [ 50 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* 1 (/ (+ 1 N) N)))) 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* 1 (/ (+ N 1) N)))) 1.759 * * * * [progress]: [ 51 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ (/ 1 (cbrt N)) (cbrt N)) (/ (+ 1 N) (cbrt N))))) 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ 1 (* (cbrt N) (cbrt N))) (/ (+ N 1) (cbrt N))))) 1.759 * * * * [progress]: [ 52 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* (/ 1 (sqrt N)) (/ (+ 1 N) (sqrt N))))) 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (/ 1 (sqrt N)) (/ (+ N 1) (sqrt N))))) 1.759 * * * * [progress]: [ 53 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (* 1 (/ (+ 1 N) N)))) 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* 1 (/ (+ N 1) N)))) 1.759 * * * * [progress]: [ 54 / 72 ] simplifiying candidate # 1.759 * * * * [progress]: [ 55 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (* (+ 1 N) (/ 1 N)))) 1.759 * * * * [progress]: [ 56 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ 1 (/ N (+ N 1))))) 1.759 * * * * [progress]: [ 57 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (/ (/ (+ N 1) (* (cbrt N) (cbrt N))) (cbrt N)))) 1.759 * * * * [progress]: [ 58 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (/ (/ (+ N 1) (sqrt N)) (sqrt N)))) 1.759 * * * * [progress]: [ 59 / 72 ] simplifiying candidate # 1.759 * [simplify]: Simplified (2 1 1) to (λ (N) (log (/ (+ N 1) N))) 1.759 * * * * [progress]: [ 60 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (/ N (cbrt (+ N 1)))))) 1.760 * * * * [progress]: [ 61 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ (sqrt (+ 1 N)) (/ N (sqrt (+ N 1)))))) 1.760 * * * * [progress]: [ 62 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ 1 (/ N (+ N 1))))) 1.760 * * * * [progress]: [ 63 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ 1 (/ N (+ N 1))))) 1.760 * * * * [progress]: [ 64 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ (+ (pow 1 3) (pow N 3)) (fma (- (* N N) N) N N)))) 1.760 * * * * [progress]: [ 65 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1 2) to (λ (N) (log (/ (- (* 1 1) (* N N)) (* N (- 1 N))))) 1.760 * * * * [progress]: [ 66 / 72 ] simplifiying candidate #real (real->posit16 (/ (+ 1 N) N)))))> 1.760 * [simplify]: Simplified (2 1 1) to (λ (N) (log (posit16->real (real->posit16 (/ (+ N 1) N))))) 1.760 * * * * [progress]: [ 67 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2) to (λ (N) (- N (fma 1/2 (* N N) (log N)))) 1.760 * * * * [progress]: [ 68 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2) to (λ (N) (fma (/ (/ 1 N) (* N N)) 1/3 (+ (/ -1/2 (* N N)) (/ 1 N)))) 1.760 * * * * [progress]: [ 69 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2) to (λ (N) (fma (/ (/ 1 N) (* N N)) 1/3 (+ (/ -1/2 (* N N)) (/ 1 N)))) 1.760 * * * * [progress]: [ 70 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1) to (λ (N) (log (+ (/ 1 N) 1))) 1.760 * * * * [progress]: [ 71 / 72 ] simplifiying candidate # 1.760 * [simplify]: Simplified (2 1) to (λ (N) (log (+ (/ 1 N) 1))) 1.761 * * * * [progress]: [ 72 / 72 ] simplifiying candidate # 1.761 * [simplify]: Simplified (2 1) to (λ (N) (log (+ (/ 1 N) 1))) 1.761 * * * [progress]: adding candidates to table 2.241 * * [progress]: iteration 3 / 4 2.241 * * * [progress]: picking best candidate 2.250 * * * * [pick]: Picked # 2.250 * * * [progress]: localizing error 2.286 * * * [progress]: generating rewritten candidates 2.286 * * * * [progress]: [ 1 / 4 ] rewriting at (2 2 1) 2.293 * * * * [progress]: [ 2 / 4 ] rewriting at (2 1 1) 2.301 * * * * [progress]: [ 3 / 4 ] rewriting at (2) 2.328 * * * * [progress]: [ 4 / 4 ] rewriting at (2 2) 2.346 * * * [progress]: generating series expansions 2.346 * * * * [progress]: [ 1 / 4 ] generating series at (2 2 1) 2.346 * [backup-simplify]: Simplify (log (/ (+ 1 N) N)) into (log (/ (+ N 1) N)) 2.346 * [approximate]: Taking taylor expansion of (log (/ (+ N 1) N)) in (N) around 0 2.346 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.346 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.346 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.347 * [taylor]: Taking taylor expansion of N in N 2.347 * [backup-simplify]: Simplify 0 into 0 2.347 * [backup-simplify]: Simplify 1 into 1 2.347 * [taylor]: Taking taylor expansion of 1 in N 2.347 * [backup-simplify]: Simplify 1 into 1 2.347 * [taylor]: Taking taylor expansion of N in N 2.347 * [backup-simplify]: Simplify 0 into 0 2.347 * [backup-simplify]: Simplify 1 into 1 2.348 * [backup-simplify]: Simplify (+ 0 1) into 1 2.348 * [backup-simplify]: Simplify (/ 1 1) into 1 2.348 * [backup-simplify]: Simplify (log 1) into 0 2.348 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.349 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.349 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.349 * [taylor]: Taking taylor expansion of N in N 2.349 * [backup-simplify]: Simplify 0 into 0 2.349 * [backup-simplify]: Simplify 1 into 1 2.349 * [taylor]: Taking taylor expansion of 1 in N 2.349 * [backup-simplify]: Simplify 1 into 1 2.349 * [taylor]: Taking taylor expansion of N in N 2.349 * [backup-simplify]: Simplify 0 into 0 2.349 * [backup-simplify]: Simplify 1 into 1 2.349 * [backup-simplify]: Simplify (+ 0 1) into 1 2.350 * [backup-simplify]: Simplify (/ 1 1) into 1 2.350 * [backup-simplify]: Simplify (log 1) into 0 2.351 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.351 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 2.351 * [backup-simplify]: Simplify (+ 1 0) into 1 2.352 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 2.353 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.353 * [backup-simplify]: Simplify 1 into 1 2.354 * [backup-simplify]: Simplify (+ 0 0) into 0 2.355 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 2.358 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.358 * [backup-simplify]: Simplify -1/2 into -1/2 2.358 * [backup-simplify]: Simplify (+ (* -1/2 (pow N 2)) (+ (* 1 N) (- (log N)))) into (- N (+ (log N) (* 1/2 (pow N 2)))) 2.358 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 N)) (/ 1 N))) into (log (* N (+ (/ 1 N) 1))) 2.358 * [approximate]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in (N) around 0 2.358 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.358 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.358 * [taylor]: Taking taylor expansion of N in N 2.358 * [backup-simplify]: Simplify 0 into 0 2.359 * [backup-simplify]: Simplify 1 into 1 2.359 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.359 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.359 * [taylor]: Taking taylor expansion of N in N 2.359 * [backup-simplify]: Simplify 0 into 0 2.359 * [backup-simplify]: Simplify 1 into 1 2.359 * [backup-simplify]: Simplify (/ 1 1) into 1 2.359 * [taylor]: Taking taylor expansion of 1 in N 2.359 * [backup-simplify]: Simplify 1 into 1 2.360 * [backup-simplify]: Simplify (+ 1 0) into 1 2.360 * [backup-simplify]: Simplify (* 0 1) into 0 2.361 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.361 * [backup-simplify]: Simplify (+ 0 1) into 1 2.362 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.363 * [backup-simplify]: Simplify (log 1) into 0 2.363 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.363 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.363 * [taylor]: Taking taylor expansion of N in N 2.363 * [backup-simplify]: Simplify 0 into 0 2.363 * [backup-simplify]: Simplify 1 into 1 2.363 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.363 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.363 * [taylor]: Taking taylor expansion of N in N 2.363 * [backup-simplify]: Simplify 0 into 0 2.363 * [backup-simplify]: Simplify 1 into 1 2.363 * [backup-simplify]: Simplify (/ 1 1) into 1 2.363 * [taylor]: Taking taylor expansion of 1 in N 2.363 * [backup-simplify]: Simplify 1 into 1 2.364 * [backup-simplify]: Simplify (+ 1 0) into 1 2.364 * [backup-simplify]: Simplify (* 0 1) into 0 2.365 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.365 * [backup-simplify]: Simplify (+ 0 1) into 1 2.366 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.367 * [backup-simplify]: Simplify (log 1) into 0 2.367 * [backup-simplify]: Simplify 0 into 0 2.368 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.368 * [backup-simplify]: Simplify (+ 0 0) into 0 2.369 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 2.370 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.370 * [backup-simplify]: Simplify 1 into 1 2.371 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.372 * [backup-simplify]: Simplify (+ 0 0) into 0 2.373 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 2.375 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.375 * [backup-simplify]: Simplify -1/2 into -1/2 2.375 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.375 * [backup-simplify]: Simplify (+ 0 0) into 0 2.376 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 2.379 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 2.379 * [backup-simplify]: Simplify 1/3 into 1/3 2.379 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.379 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N)))) into (log (* -1 (* N (- 1 (/ 1 N))))) 2.379 * [approximate]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in (N) around 0 2.379 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.379 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.379 * [taylor]: Taking taylor expansion of -1 in N 2.379 * [backup-simplify]: Simplify -1 into -1 2.379 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.379 * [taylor]: Taking taylor expansion of N in N 2.379 * [backup-simplify]: Simplify 0 into 0 2.379 * [backup-simplify]: Simplify 1 into 1 2.379 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.379 * [taylor]: Taking taylor expansion of 1 in N 2.379 * [backup-simplify]: Simplify 1 into 1 2.379 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.379 * [taylor]: Taking taylor expansion of N in N 2.379 * [backup-simplify]: Simplify 0 into 0 2.380 * [backup-simplify]: Simplify 1 into 1 2.380 * [backup-simplify]: Simplify (/ 1 1) into 1 2.380 * [backup-simplify]: Simplify (- 1) into -1 2.380 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.381 * [backup-simplify]: Simplify (* 0 -1) into 0 2.381 * [backup-simplify]: Simplify (* -1 0) into 0 2.381 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.382 * [backup-simplify]: Simplify (- 0) into 0 2.382 * [backup-simplify]: Simplify (+ 1 0) into 1 2.382 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.383 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.383 * [backup-simplify]: Simplify (log 1) into 0 2.383 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.383 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.383 * [taylor]: Taking taylor expansion of -1 in N 2.383 * [backup-simplify]: Simplify -1 into -1 2.383 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.383 * [taylor]: Taking taylor expansion of N in N 2.383 * [backup-simplify]: Simplify 0 into 0 2.383 * [backup-simplify]: Simplify 1 into 1 2.383 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.383 * [taylor]: Taking taylor expansion of 1 in N 2.383 * [backup-simplify]: Simplify 1 into 1 2.383 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.383 * [taylor]: Taking taylor expansion of N in N 2.383 * [backup-simplify]: Simplify 0 into 0 2.383 * [backup-simplify]: Simplify 1 into 1 2.383 * [backup-simplify]: Simplify (/ 1 1) into 1 2.384 * [backup-simplify]: Simplify (- 1) into -1 2.384 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.384 * [backup-simplify]: Simplify (* 0 -1) into 0 2.384 * [backup-simplify]: Simplify (* -1 0) into 0 2.385 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.385 * [backup-simplify]: Simplify (- 0) into 0 2.385 * [backup-simplify]: Simplify (+ 1 0) into 1 2.386 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.386 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.387 * [backup-simplify]: Simplify (log 1) into 0 2.387 * [backup-simplify]: Simplify 0 into 0 2.387 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.388 * [backup-simplify]: Simplify (- 0) into 0 2.388 * [backup-simplify]: Simplify (+ 0 0) into 0 2.388 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 2.389 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 2.390 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 2.390 * [backup-simplify]: Simplify -1 into -1 2.390 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.391 * [backup-simplify]: Simplify (- 0) into 0 2.391 * [backup-simplify]: Simplify (+ 0 0) into 0 2.392 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 2.392 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 2.396 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 -1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.396 * [backup-simplify]: Simplify -1/2 into -1/2 2.397 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.398 * [backup-simplify]: Simplify (- 0) into 0 2.398 * [backup-simplify]: Simplify (+ 0 0) into 0 2.399 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 2.400 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 2.402 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 -1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 -1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into -1/3 2.402 * [backup-simplify]: Simplify -1/3 into -1/3 2.403 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.403 * * * * [progress]: [ 2 / 4 ] generating series at (2 1 1) 2.403 * [backup-simplify]: Simplify (log (/ (+ 1 N) N)) into (log (/ (+ N 1) N)) 2.403 * [approximate]: Taking taylor expansion of (log (/ (+ N 1) N)) in (N) around 0 2.403 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.403 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.403 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.403 * [taylor]: Taking taylor expansion of N in N 2.403 * [backup-simplify]: Simplify 0 into 0 2.403 * [backup-simplify]: Simplify 1 into 1 2.403 * [taylor]: Taking taylor expansion of 1 in N 2.403 * [backup-simplify]: Simplify 1 into 1 2.403 * [taylor]: Taking taylor expansion of N in N 2.403 * [backup-simplify]: Simplify 0 into 0 2.403 * [backup-simplify]: Simplify 1 into 1 2.403 * [backup-simplify]: Simplify (+ 0 1) into 1 2.404 * [backup-simplify]: Simplify (/ 1 1) into 1 2.404 * [backup-simplify]: Simplify (log 1) into 0 2.404 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.404 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.404 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.404 * [taylor]: Taking taylor expansion of N in N 2.404 * [backup-simplify]: Simplify 0 into 0 2.404 * [backup-simplify]: Simplify 1 into 1 2.404 * [taylor]: Taking taylor expansion of 1 in N 2.404 * [backup-simplify]: Simplify 1 into 1 2.404 * [taylor]: Taking taylor expansion of N in N 2.404 * [backup-simplify]: Simplify 0 into 0 2.404 * [backup-simplify]: Simplify 1 into 1 2.404 * [backup-simplify]: Simplify (+ 0 1) into 1 2.405 * [backup-simplify]: Simplify (/ 1 1) into 1 2.405 * [backup-simplify]: Simplify (log 1) into 0 2.405 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.405 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 2.406 * [backup-simplify]: Simplify (+ 1 0) into 1 2.406 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 2.407 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.407 * [backup-simplify]: Simplify 1 into 1 2.407 * [backup-simplify]: Simplify (+ 0 0) into 0 2.408 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 2.409 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.410 * [backup-simplify]: Simplify -1/2 into -1/2 2.410 * [backup-simplify]: Simplify (+ (* -1/2 (pow N 2)) (+ (* 1 N) (- (log N)))) into (- N (+ (log N) (* 1/2 (pow N 2)))) 2.410 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 N)) (/ 1 N))) into (log (* N (+ (/ 1 N) 1))) 2.410 * [approximate]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in (N) around 0 2.410 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.410 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.410 * [taylor]: Taking taylor expansion of N in N 2.410 * [backup-simplify]: Simplify 0 into 0 2.410 * [backup-simplify]: Simplify 1 into 1 2.410 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.410 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.410 * [taylor]: Taking taylor expansion of N in N 2.410 * [backup-simplify]: Simplify 0 into 0 2.410 * [backup-simplify]: Simplify 1 into 1 2.410 * [backup-simplify]: Simplify (/ 1 1) into 1 2.410 * [taylor]: Taking taylor expansion of 1 in N 2.410 * [backup-simplify]: Simplify 1 into 1 2.411 * [backup-simplify]: Simplify (+ 1 0) into 1 2.411 * [backup-simplify]: Simplify (* 0 1) into 0 2.412 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.412 * [backup-simplify]: Simplify (+ 0 1) into 1 2.412 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.413 * [backup-simplify]: Simplify (log 1) into 0 2.413 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.413 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.413 * [taylor]: Taking taylor expansion of N in N 2.413 * [backup-simplify]: Simplify 0 into 0 2.413 * [backup-simplify]: Simplify 1 into 1 2.413 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.413 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.413 * [taylor]: Taking taylor expansion of N in N 2.413 * [backup-simplify]: Simplify 0 into 0 2.413 * [backup-simplify]: Simplify 1 into 1 2.413 * [backup-simplify]: Simplify (/ 1 1) into 1 2.413 * [taylor]: Taking taylor expansion of 1 in N 2.413 * [backup-simplify]: Simplify 1 into 1 2.414 * [backup-simplify]: Simplify (+ 1 0) into 1 2.414 * [backup-simplify]: Simplify (* 0 1) into 0 2.415 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.415 * [backup-simplify]: Simplify (+ 0 1) into 1 2.416 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.416 * [backup-simplify]: Simplify (log 1) into 0 2.416 * [backup-simplify]: Simplify 0 into 0 2.417 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.418 * [backup-simplify]: Simplify (+ 0 0) into 0 2.419 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 2.420 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.420 * [backup-simplify]: Simplify 1 into 1 2.421 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.421 * [backup-simplify]: Simplify (+ 0 0) into 0 2.422 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 2.425 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.425 * [backup-simplify]: Simplify -1/2 into -1/2 2.425 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.426 * [backup-simplify]: Simplify (+ 0 0) into 0 2.427 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 2.432 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 2.432 * [backup-simplify]: Simplify 1/3 into 1/3 2.432 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.433 * [backup-simplify]: Simplify (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N)))) into (log (* -1 (* N (- 1 (/ 1 N))))) 2.433 * [approximate]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in (N) around 0 2.433 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.433 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.433 * [taylor]: Taking taylor expansion of -1 in N 2.433 * [backup-simplify]: Simplify -1 into -1 2.433 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.433 * [taylor]: Taking taylor expansion of N in N 2.433 * [backup-simplify]: Simplify 0 into 0 2.433 * [backup-simplify]: Simplify 1 into 1 2.433 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.433 * [taylor]: Taking taylor expansion of 1 in N 2.433 * [backup-simplify]: Simplify 1 into 1 2.433 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.433 * [taylor]: Taking taylor expansion of N in N 2.433 * [backup-simplify]: Simplify 0 into 0 2.433 * [backup-simplify]: Simplify 1 into 1 2.433 * [backup-simplify]: Simplify (/ 1 1) into 1 2.434 * [backup-simplify]: Simplify (- 1) into -1 2.434 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.435 * [backup-simplify]: Simplify (* 0 -1) into 0 2.435 * [backup-simplify]: Simplify (* -1 0) into 0 2.436 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.436 * [backup-simplify]: Simplify (- 0) into 0 2.437 * [backup-simplify]: Simplify (+ 1 0) into 1 2.438 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.438 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.439 * [backup-simplify]: Simplify (log 1) into 0 2.439 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.439 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.439 * [taylor]: Taking taylor expansion of -1 in N 2.439 * [backup-simplify]: Simplify -1 into -1 2.439 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.439 * [taylor]: Taking taylor expansion of N in N 2.439 * [backup-simplify]: Simplify 0 into 0 2.439 * [backup-simplify]: Simplify 1 into 1 2.439 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.439 * [taylor]: Taking taylor expansion of 1 in N 2.439 * [backup-simplify]: Simplify 1 into 1 2.439 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.439 * [taylor]: Taking taylor expansion of N in N 2.439 * [backup-simplify]: Simplify 0 into 0 2.439 * [backup-simplify]: Simplify 1 into 1 2.439 * [backup-simplify]: Simplify (/ 1 1) into 1 2.440 * [backup-simplify]: Simplify (- 1) into -1 2.440 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.440 * [backup-simplify]: Simplify (* 0 -1) into 0 2.441 * [backup-simplify]: Simplify (* -1 0) into 0 2.441 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.442 * [backup-simplify]: Simplify (- 0) into 0 2.442 * [backup-simplify]: Simplify (+ 1 0) into 1 2.443 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.443 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.444 * [backup-simplify]: Simplify (log 1) into 0 2.444 * [backup-simplify]: Simplify 0 into 0 2.445 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.445 * [backup-simplify]: Simplify (- 0) into 0 2.445 * [backup-simplify]: Simplify (+ 0 0) into 0 2.446 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 2.447 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 2.449 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 2.449 * [backup-simplify]: Simplify -1 into -1 2.450 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.450 * [backup-simplify]: Simplify (- 0) into 0 2.451 * [backup-simplify]: Simplify (+ 0 0) into 0 2.452 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 2.453 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 2.455 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 -1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.455 * [backup-simplify]: Simplify -1/2 into -1/2 2.456 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.456 * [backup-simplify]: Simplify (- 0) into 0 2.456 * [backup-simplify]: Simplify (+ 0 0) into 0 2.457 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 2.458 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 2.462 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 -1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 -1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into -1/3 2.462 * [backup-simplify]: Simplify -1/3 into -1/3 2.462 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.462 * * * * [progress]: [ 3 / 4 ] generating series at (2) 2.462 * [backup-simplify]: Simplify (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))) into (log (/ (+ N 1) N)) 2.462 * [approximate]: Taking taylor expansion of (log (/ (+ N 1) N)) in (N) around 0 2.462 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.462 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.462 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.462 * [taylor]: Taking taylor expansion of N in N 2.462 * [backup-simplify]: Simplify 0 into 0 2.462 * [backup-simplify]: Simplify 1 into 1 2.462 * [taylor]: Taking taylor expansion of 1 in N 2.462 * [backup-simplify]: Simplify 1 into 1 2.462 * [taylor]: Taking taylor expansion of N in N 2.462 * [backup-simplify]: Simplify 0 into 0 2.462 * [backup-simplify]: Simplify 1 into 1 2.463 * [backup-simplify]: Simplify (+ 0 1) into 1 2.463 * [backup-simplify]: Simplify (/ 1 1) into 1 2.464 * [backup-simplify]: Simplify (log 1) into 0 2.464 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.464 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.464 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.464 * [taylor]: Taking taylor expansion of N in N 2.464 * [backup-simplify]: Simplify 0 into 0 2.464 * [backup-simplify]: Simplify 1 into 1 2.464 * [taylor]: Taking taylor expansion of 1 in N 2.464 * [backup-simplify]: Simplify 1 into 1 2.464 * [taylor]: Taking taylor expansion of N in N 2.464 * [backup-simplify]: Simplify 0 into 0 2.464 * [backup-simplify]: Simplify 1 into 1 2.464 * [backup-simplify]: Simplify (+ 0 1) into 1 2.464 * [backup-simplify]: Simplify (/ 1 1) into 1 2.465 * [backup-simplify]: Simplify (log 1) into 0 2.465 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.465 * [backup-simplify]: Simplify (- (log N)) into (- (log N)) 2.466 * [backup-simplify]: Simplify (+ 1 0) into 1 2.466 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 2.467 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.467 * [backup-simplify]: Simplify 1 into 1 2.468 * [backup-simplify]: Simplify (+ 0 0) into 0 2.468 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 2.470 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.470 * [backup-simplify]: Simplify -1/2 into -1/2 2.470 * [backup-simplify]: Simplify (+ (* -1/2 (pow N 2)) (+ (* 1 N) (- (log N)))) into (- N (+ (log N) (* 1/2 (pow N 2)))) 2.471 * [backup-simplify]: Simplify (* (sqrt (log (/ (+ 1 (/ 1 N)) (/ 1 N)))) (sqrt (log (/ (+ 1 (/ 1 N)) (/ 1 N))))) into (log (* N (+ (/ 1 N) 1))) 2.471 * [approximate]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in (N) around 0 2.471 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.471 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.471 * [taylor]: Taking taylor expansion of N in N 2.471 * [backup-simplify]: Simplify 0 into 0 2.471 * [backup-simplify]: Simplify 1 into 1 2.471 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.471 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.471 * [taylor]: Taking taylor expansion of N in N 2.471 * [backup-simplify]: Simplify 0 into 0 2.471 * [backup-simplify]: Simplify 1 into 1 2.471 * [backup-simplify]: Simplify (/ 1 1) into 1 2.471 * [taylor]: Taking taylor expansion of 1 in N 2.471 * [backup-simplify]: Simplify 1 into 1 2.472 * [backup-simplify]: Simplify (+ 1 0) into 1 2.472 * [backup-simplify]: Simplify (* 0 1) into 0 2.472 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.473 * [backup-simplify]: Simplify (+ 0 1) into 1 2.473 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.473 * [backup-simplify]: Simplify (log 1) into 0 2.473 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.473 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.473 * [taylor]: Taking taylor expansion of N in N 2.473 * [backup-simplify]: Simplify 0 into 0 2.473 * [backup-simplify]: Simplify 1 into 1 2.473 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.473 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.474 * [taylor]: Taking taylor expansion of N in N 2.474 * [backup-simplify]: Simplify 0 into 0 2.474 * [backup-simplify]: Simplify 1 into 1 2.474 * [backup-simplify]: Simplify (/ 1 1) into 1 2.474 * [taylor]: Taking taylor expansion of 1 in N 2.474 * [backup-simplify]: Simplify 1 into 1 2.474 * [backup-simplify]: Simplify (+ 1 0) into 1 2.474 * [backup-simplify]: Simplify (* 0 1) into 0 2.475 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.475 * [backup-simplify]: Simplify (+ 0 1) into 1 2.476 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.476 * [backup-simplify]: Simplify (log 1) into 0 2.476 * [backup-simplify]: Simplify 0 into 0 2.476 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.477 * [backup-simplify]: Simplify (+ 0 0) into 0 2.477 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 2.478 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.478 * [backup-simplify]: Simplify 1 into 1 2.479 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.479 * [backup-simplify]: Simplify (+ 0 0) into 0 2.479 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 2.481 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.481 * [backup-simplify]: Simplify -1/2 into -1/2 2.482 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.482 * [backup-simplify]: Simplify (+ 0 0) into 0 2.483 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 2.486 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 2.486 * [backup-simplify]: Simplify 1/3 into 1/3 2.486 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.486 * [backup-simplify]: Simplify (* (sqrt (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N))))) (sqrt (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N)))))) into (log (* -1 (* N (- 1 (/ 1 N))))) 2.486 * [approximate]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in (N) around 0 2.486 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.486 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.486 * [taylor]: Taking taylor expansion of -1 in N 2.486 * [backup-simplify]: Simplify -1 into -1 2.486 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.486 * [taylor]: Taking taylor expansion of N in N 2.486 * [backup-simplify]: Simplify 0 into 0 2.486 * [backup-simplify]: Simplify 1 into 1 2.486 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.486 * [taylor]: Taking taylor expansion of 1 in N 2.486 * [backup-simplify]: Simplify 1 into 1 2.486 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.487 * [taylor]: Taking taylor expansion of N in N 2.487 * [backup-simplify]: Simplify 0 into 0 2.487 * [backup-simplify]: Simplify 1 into 1 2.487 * [backup-simplify]: Simplify (/ 1 1) into 1 2.487 * [backup-simplify]: Simplify (- 1) into -1 2.487 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.488 * [backup-simplify]: Simplify (* 0 -1) into 0 2.488 * [backup-simplify]: Simplify (* -1 0) into 0 2.489 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.489 * [backup-simplify]: Simplify (- 0) into 0 2.489 * [backup-simplify]: Simplify (+ 1 0) into 1 2.489 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.490 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.490 * [backup-simplify]: Simplify (log 1) into 0 2.490 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.490 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.490 * [taylor]: Taking taylor expansion of -1 in N 2.490 * [backup-simplify]: Simplify -1 into -1 2.490 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.490 * [taylor]: Taking taylor expansion of N in N 2.490 * [backup-simplify]: Simplify 0 into 0 2.490 * [backup-simplify]: Simplify 1 into 1 2.490 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.490 * [taylor]: Taking taylor expansion of 1 in N 2.490 * [backup-simplify]: Simplify 1 into 1 2.490 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.490 * [taylor]: Taking taylor expansion of N in N 2.490 * [backup-simplify]: Simplify 0 into 0 2.490 * [backup-simplify]: Simplify 1 into 1 2.491 * [backup-simplify]: Simplify (/ 1 1) into 1 2.491 * [backup-simplify]: Simplify (- 1) into -1 2.491 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.491 * [backup-simplify]: Simplify (* 0 -1) into 0 2.492 * [backup-simplify]: Simplify (* -1 0) into 0 2.492 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.492 * [backup-simplify]: Simplify (- 0) into 0 2.493 * [backup-simplify]: Simplify (+ 1 0) into 1 2.493 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.493 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.494 * [backup-simplify]: Simplify (log 1) into 0 2.494 * [backup-simplify]: Simplify 0 into 0 2.494 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.495 * [backup-simplify]: Simplify (- 0) into 0 2.495 * [backup-simplify]: Simplify (+ 0 0) into 0 2.496 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 2.497 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 2.498 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 2.498 * [backup-simplify]: Simplify -1 into -1 2.499 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.499 * [backup-simplify]: Simplify (- 0) into 0 2.499 * [backup-simplify]: Simplify (+ 0 0) into 0 2.500 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 2.501 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 2.503 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 -1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.503 * [backup-simplify]: Simplify -1/2 into -1/2 2.503 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.504 * [backup-simplify]: Simplify (- 0) into 0 2.504 * [backup-simplify]: Simplify (+ 0 0) into 0 2.505 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 2.507 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 2.510 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 -1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 -1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into -1/3 2.510 * [backup-simplify]: Simplify -1/3 into -1/3 2.510 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 2.510 * * * * [progress]: [ 4 / 4 ] generating series at (2 2) 2.510 * [backup-simplify]: Simplify (sqrt (log (/ (+ 1 N) N))) into (sqrt (log (/ (+ N 1) N))) 2.510 * [approximate]: Taking taylor expansion of (sqrt (log (/ (+ N 1) N))) in (N) around 0 2.510 * [taylor]: Taking taylor expansion of (sqrt (log (/ (+ N 1) N))) in N 2.510 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.511 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.511 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.511 * [taylor]: Taking taylor expansion of N in N 2.511 * [backup-simplify]: Simplify 0 into 0 2.511 * [backup-simplify]: Simplify 1 into 1 2.511 * [taylor]: Taking taylor expansion of 1 in N 2.511 * [backup-simplify]: Simplify 1 into 1 2.511 * [taylor]: Taking taylor expansion of N in N 2.511 * [backup-simplify]: Simplify 0 into 0 2.511 * [backup-simplify]: Simplify 1 into 1 2.511 * [backup-simplify]: Simplify (+ 0 1) into 1 2.511 * [backup-simplify]: Simplify (/ 1 1) into 1 2.511 * [backup-simplify]: Simplify (log 1) into 0 2.512 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.512 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.512 * [backup-simplify]: Simplify (sqrt (- (log N))) into (sqrt (- (log N))) 2.513 * [backup-simplify]: Simplify (+ 1 0) into 1 2.513 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 2.514 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.514 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.514 * [backup-simplify]: Simplify (/ 1 (* 2 (sqrt (- (log N))))) into (/ 1/2 (sqrt (- (log N)))) 2.514 * [taylor]: Taking taylor expansion of (sqrt (log (/ (+ N 1) N))) in N 2.514 * [taylor]: Taking taylor expansion of (log (/ (+ N 1) N)) in N 2.514 * [taylor]: Taking taylor expansion of (/ (+ N 1) N) in N 2.514 * [taylor]: Taking taylor expansion of (+ N 1) in N 2.514 * [taylor]: Taking taylor expansion of N in N 2.514 * [backup-simplify]: Simplify 0 into 0 2.514 * [backup-simplify]: Simplify 1 into 1 2.514 * [taylor]: Taking taylor expansion of 1 in N 2.514 * [backup-simplify]: Simplify 1 into 1 2.514 * [taylor]: Taking taylor expansion of N in N 2.514 * [backup-simplify]: Simplify 0 into 0 2.514 * [backup-simplify]: Simplify 1 into 1 2.515 * [backup-simplify]: Simplify (+ 0 1) into 1 2.515 * [backup-simplify]: Simplify (/ 1 1) into 1 2.515 * [backup-simplify]: Simplify (log 1) into 0 2.515 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.516 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.516 * [backup-simplify]: Simplify (sqrt (- (log N))) into (sqrt (- (log N))) 2.516 * [backup-simplify]: Simplify (+ 1 0) into 1 2.517 * [backup-simplify]: Simplify (- (/ 1 1) (+ (* 1 (/ 0 1)))) into 1 2.517 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.518 * [backup-simplify]: Simplify (+ (* (- 1) (log N)) 0) into (- (log N)) 2.518 * [backup-simplify]: Simplify (/ 1 (* 2 (sqrt (- (log N))))) into (/ 1/2 (sqrt (- (log N)))) 2.518 * [backup-simplify]: Simplify (sqrt (- (log N))) into (sqrt (- (log N))) 2.518 * [backup-simplify]: Simplify (/ 1/2 (sqrt (- (log N)))) into (/ 1/2 (sqrt (- (log N)))) 2.518 * [backup-simplify]: Simplify (+ 0 0) into 0 2.519 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1 (/ 0 1)) (* 1 (/ 0 1)))) into 0 2.520 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.521 * [backup-simplify]: Simplify (/ (- -1/2 (pow (/ 1/2 (sqrt (- (log N)))) 2) (+)) (* 2 (sqrt (- (log N))))) into (* -1/2 (/ (+ 1/2 (* 1/4 (/ 1 (pow (sqrt (- (log N))) 2)))) (sqrt (- (log N))))) 2.521 * [backup-simplify]: Simplify (* -1/2 (/ (+ 1/2 (* 1/4 (/ 1 (pow (sqrt (- (log N))) 2)))) (sqrt (- (log N))))) into (* -1/2 (/ (+ 1/2 (* 1/4 (/ 1 (pow (sqrt (- (log N))) 2)))) (sqrt (- (log N))))) 2.522 * [backup-simplify]: Simplify (+ (* (* -1/2 (/ (+ 1/2 (* 1/4 (/ 1 (pow (sqrt (- (log N))) 2)))) (sqrt (- (log N))))) (pow N 2)) (+ (* (/ 1/2 (sqrt (- (log N)))) N) (sqrt (- (log N))))) into (- (+ (* 1/2 (/ N (sqrt (- (log N))))) (sqrt (- (log N)))) (+ (* 1/8 (/ (pow N 2) (pow (sqrt (- (log N))) 3))) (* 1/4 (/ (pow N 2) (sqrt (- (log N))))))) 2.522 * [backup-simplify]: Simplify (sqrt (log (/ (+ 1 (/ 1 N)) (/ 1 N)))) into (sqrt (log (* N (+ (/ 1 N) 1)))) 2.522 * [approximate]: Taking taylor expansion of (sqrt (log (* N (+ (/ 1 N) 1)))) in (N) around 0 2.522 * [taylor]: Taking taylor expansion of (sqrt (log (* N (+ (/ 1 N) 1)))) in N 2.522 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.522 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.522 * [taylor]: Taking taylor expansion of N in N 2.522 * [backup-simplify]: Simplify 0 into 0 2.522 * [backup-simplify]: Simplify 1 into 1 2.522 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.522 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.522 * [taylor]: Taking taylor expansion of N in N 2.522 * [backup-simplify]: Simplify 0 into 0 2.522 * [backup-simplify]: Simplify 1 into 1 2.522 * [backup-simplify]: Simplify (/ 1 1) into 1 2.522 * [taylor]: Taking taylor expansion of 1 in N 2.522 * [backup-simplify]: Simplify 1 into 1 2.523 * [backup-simplify]: Simplify (+ 1 0) into 1 2.523 * [backup-simplify]: Simplify (* 0 1) into 0 2.523 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.524 * [backup-simplify]: Simplify (+ 0 1) into 1 2.524 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.524 * [backup-simplify]: Simplify (log 1) into 0 2.525 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.525 * [backup-simplify]: Simplify (+ 0 0) into 0 2.526 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 2.526 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.527 * [backup-simplify]: Simplify (sqrt 0) into 0 2.528 * [backup-simplify]: Simplify (/ 1 (* 2 (sqrt 0))) into +nan.0 2.528 * [taylor]: Taking taylor expansion of (sqrt (log (* N (+ (/ 1 N) 1)))) in N 2.528 * [taylor]: Taking taylor expansion of (log (* N (+ (/ 1 N) 1))) in N 2.528 * [taylor]: Taking taylor expansion of (* N (+ (/ 1 N) 1)) in N 2.528 * [taylor]: Taking taylor expansion of N in N 2.528 * [backup-simplify]: Simplify 0 into 0 2.528 * [backup-simplify]: Simplify 1 into 1 2.528 * [taylor]: Taking taylor expansion of (+ (/ 1 N) 1) in N 2.528 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.528 * [taylor]: Taking taylor expansion of N in N 2.528 * [backup-simplify]: Simplify 0 into 0 2.528 * [backup-simplify]: Simplify 1 into 1 2.528 * [backup-simplify]: Simplify (/ 1 1) into 1 2.528 * [taylor]: Taking taylor expansion of 1 in N 2.528 * [backup-simplify]: Simplify 1 into 1 2.529 * [backup-simplify]: Simplify (+ 1 0) into 1 2.529 * [backup-simplify]: Simplify (* 0 1) into 0 2.529 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.530 * [backup-simplify]: Simplify (+ 0 1) into 1 2.530 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 1)) into 1 2.531 * [backup-simplify]: Simplify (log 1) into 0 2.532 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.532 * [backup-simplify]: Simplify (+ 0 0) into 0 2.533 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 1))) into 1 2.534 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 1) 1)) (pow 1 1)))) 1) into 1 2.534 * [backup-simplify]: Simplify (sqrt 0) into 0 2.536 * [backup-simplify]: Simplify (/ 1 (* 2 (sqrt 0))) into +nan.0 2.536 * [backup-simplify]: Simplify 0 into 0 2.536 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.537 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.537 * [backup-simplify]: Simplify (+ 0 0) into 0 2.538 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 1)))) into 0 2.541 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.544 * [backup-simplify]: Simplify (/ (- -1/2 (pow +nan.0 2) (+)) (* 2 0)) into +nan.0 2.545 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.546 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.546 * [backup-simplify]: Simplify (+ 0 0) into 0 2.548 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 1))))) into 0 2.553 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into 1/3 2.558 * [backup-simplify]: Simplify (/ (- 1/3 (+ (* 2 (* +nan.0 +nan.0)))) (* 2 0)) into +nan.0 2.558 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.560 * [backup-simplify]: Simplify (+ (* +nan.0 (pow (/ 1 N) 3)) (+ (* +nan.0 (pow (/ 1 N) 2)) (* +nan.0 (/ 1 N)))) into (- (+ (* +nan.0 (/ 1 (pow N 2))) (- (+ (* +nan.0 (/ 1 (pow N 3))) (- (* +nan.0 (/ 1 N))))))) 2.560 * [backup-simplify]: Simplify (sqrt (log (/ (+ 1 (/ 1 (- N))) (/ 1 (- N))))) into (sqrt (log (* -1 (* N (- 1 (/ 1 N)))))) 2.560 * [approximate]: Taking taylor expansion of (sqrt (log (* -1 (* N (- 1 (/ 1 N)))))) in (N) around 0 2.560 * [taylor]: Taking taylor expansion of (sqrt (log (* -1 (* N (- 1 (/ 1 N)))))) in N 2.560 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.560 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.560 * [taylor]: Taking taylor expansion of -1 in N 2.560 * [backup-simplify]: Simplify -1 into -1 2.560 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.560 * [taylor]: Taking taylor expansion of N in N 2.560 * [backup-simplify]: Simplify 0 into 0 2.560 * [backup-simplify]: Simplify 1 into 1 2.560 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.560 * [taylor]: Taking taylor expansion of 1 in N 2.561 * [backup-simplify]: Simplify 1 into 1 2.561 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.561 * [taylor]: Taking taylor expansion of N in N 2.561 * [backup-simplify]: Simplify 0 into 0 2.561 * [backup-simplify]: Simplify 1 into 1 2.561 * [backup-simplify]: Simplify (/ 1 1) into 1 2.562 * [backup-simplify]: Simplify (- 1) into -1 2.562 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.563 * [backup-simplify]: Simplify (* 0 -1) into 0 2.564 * [backup-simplify]: Simplify (* -1 0) into 0 2.565 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.565 * [backup-simplify]: Simplify (- 0) into 0 2.566 * [backup-simplify]: Simplify (+ 1 0) into 1 2.567 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.567 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.568 * [backup-simplify]: Simplify (log 1) into 0 2.569 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.569 * [backup-simplify]: Simplify (- 0) into 0 2.570 * [backup-simplify]: Simplify (+ 0 0) into 0 2.571 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 2.572 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 2.573 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 2.574 * [backup-simplify]: Simplify (sqrt 0) into 0 2.575 * [backup-simplify]: Simplify (/ -1 (* 2 (sqrt 0))) into +nan.0 2.575 * [taylor]: Taking taylor expansion of (sqrt (log (* -1 (* N (- 1 (/ 1 N)))))) in N 2.575 * [taylor]: Taking taylor expansion of (log (* -1 (* N (- 1 (/ 1 N))))) in N 2.575 * [taylor]: Taking taylor expansion of (* -1 (* N (- 1 (/ 1 N)))) in N 2.575 * [taylor]: Taking taylor expansion of -1 in N 2.575 * [backup-simplify]: Simplify -1 into -1 2.575 * [taylor]: Taking taylor expansion of (* N (- 1 (/ 1 N))) in N 2.575 * [taylor]: Taking taylor expansion of N in N 2.575 * [backup-simplify]: Simplify 0 into 0 2.575 * [backup-simplify]: Simplify 1 into 1 2.575 * [taylor]: Taking taylor expansion of (- 1 (/ 1 N)) in N 2.575 * [taylor]: Taking taylor expansion of 1 in N 2.575 * [backup-simplify]: Simplify 1 into 1 2.575 * [taylor]: Taking taylor expansion of (/ 1 N) in N 2.576 * [taylor]: Taking taylor expansion of N in N 2.576 * [backup-simplify]: Simplify 0 into 0 2.576 * [backup-simplify]: Simplify 1 into 1 2.576 * [backup-simplify]: Simplify (/ 1 1) into 1 2.576 * [backup-simplify]: Simplify (- 1) into -1 2.577 * [backup-simplify]: Simplify (+ 0 -1) into -1 2.577 * [backup-simplify]: Simplify (* 0 -1) into 0 2.578 * [backup-simplify]: Simplify (* -1 0) into 0 2.579 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 2.579 * [backup-simplify]: Simplify (- 0) into 0 2.580 * [backup-simplify]: Simplify (+ 1 0) into 1 2.580 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 -1)) into -1 2.581 * [backup-simplify]: Simplify (+ (* -1 -1) (* 0 0)) into 1 2.582 * [backup-simplify]: Simplify (log 1) into 0 2.583 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.583 * [backup-simplify]: Simplify (- 0) into 0 2.583 * [backup-simplify]: Simplify (+ 0 0) into 0 2.584 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 1) (* 0 -1))) into 1 2.586 * [backup-simplify]: Simplify (+ (* -1 1) (+ (* 0 -1) (* 0 0))) into -1 2.587 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 -1) 1)) (pow 1 1)))) 1) into -1 2.587 * [backup-simplify]: Simplify (sqrt 0) into 0 2.589 * [backup-simplify]: Simplify (/ -1 (* 2 (sqrt 0))) into +nan.0 2.589 * [backup-simplify]: Simplify 0 into 0 2.589 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.590 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.590 * [backup-simplify]: Simplify (- 0) into 0 2.591 * [backup-simplify]: Simplify (+ 0 0) into 0 2.592 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 1) (* 0 -1)))) into 0 2.593 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0)))) into 0 2.596 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 -1) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow 1 1)))) 2) into -1/2 2.600 * [backup-simplify]: Simplify (/ (- -1/2 (pow +nan.0 2) (+)) (* 2 0)) into +nan.0 2.600 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.601 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 2.601 * [backup-simplify]: Simplify (- 0) into 0 2.602 * [backup-simplify]: Simplify (+ 0 0) into 0 2.603 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (+ (* 0 0) (+ (* 0 1) (* 0 -1))))) into 0 2.605 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (+ (* 0 -1) (* 0 0))))) into 0 2.612 * [backup-simplify]: Simplify (/ (+ (* 2 (/ (* (pow (* 1 -1) 3)) (pow 1 3))) (* -3 (/ (* (pow (* 1 -1) 1) (pow (* 2 0) 1)) (pow 1 2))) (* 1 (/ (* 1 1 (pow (* 6 0) 1)) (pow 1 1)))) 6) into -1/3 2.617 * [backup-simplify]: Simplify (/ (- -1/3 (+ (* 2 (* +nan.0 +nan.0)))) (* 2 0)) into +nan.0 2.617 * [backup-simplify]: Simplify +nan.0 into +nan.0 2.618 * [backup-simplify]: Simplify (+ (* +nan.0 (pow (/ 1 (- N)) 3)) (+ (* +nan.0 (pow (/ 1 (- N)) 2)) (* +nan.0 (/ 1 (- N))))) into (- (+ (* +nan.0 (/ 1 (pow N 2))) (- (+ (* +nan.0 (/ 1 (pow N 3))) (- (* +nan.0 (/ 1 N))))))) 2.618 * * * [progress]: simplifying candidates 2.618 * * * * [progress]: [ 1 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 2 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 3 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 4 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 5 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 6 / 146 ] simplifiying candidate # 2.618 * * * * [progress]: [ 7 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 8 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 9 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 10 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 11 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 12 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 13 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 14 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 15 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 16 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 17 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 18 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 19 / 146 ] simplifiying candidate # 2.619 * * * * [progress]: [ 20 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 21 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 22 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 23 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 24 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 25 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 26 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 27 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 28 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 29 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 30 / 146 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N)))))))> 2.620 * * * * [progress]: [ 31 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 32 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 33 / 146 ] simplifiying candidate # 2.620 * * * * [progress]: [ 34 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 35 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 36 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 37 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 38 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 39 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 40 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 41 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 42 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 43 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 44 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 45 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 46 / 146 ] simplifiying candidate # 2.621 * * * * [progress]: [ 47 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 48 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 49 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 50 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 51 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 52 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 53 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 54 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 55 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 56 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 57 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 58 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 59 / 146 ] simplifiying candidate # 2.622 * * * * [progress]: [ 60 / 146 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N)))))> 2.622 * * * * [progress]: [ 61 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 62 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 63 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 64 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 65 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 66 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 67 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 68 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 69 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 70 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 71 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 72 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 73 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 74 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 75 / 146 ] simplifiying candidate # 2.623 * * * * [progress]: [ 76 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 77 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 78 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 79 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 80 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 81 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 82 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 83 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 84 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 85 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 86 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 87 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 88 / 146 ] simplifiying candidate # 2.624 * * * * [progress]: [ 89 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 90 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 91 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 92 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 93 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 94 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 95 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 96 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 97 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 98 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 99 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 100 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 101 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 102 / 146 ] simplifiying candidate # 2.625 * * * * [progress]: [ 103 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 104 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 105 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 106 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 107 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 108 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 109 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 110 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 111 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 112 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 113 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 114 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 115 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 116 / 146 ] simplifiying candidate #real (real->posit16 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))))> 2.626 * * * * [progress]: [ 117 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 118 / 146 ] simplifiying candidate # 2.626 * * * * [progress]: [ 119 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 120 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 121 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 122 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 123 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 124 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 125 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 126 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 127 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 128 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 129 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 130 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 131 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 132 / 146 ] simplifiying candidate # 2.627 * * * * [progress]: [ 133 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 134 / 146 ] simplifiying candidate #real (real->posit16 (sqrt (log (/ (+ 1 N) N)))))))> 2.628 * * * * [progress]: [ 135 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 136 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 137 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 138 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 139 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 140 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 141 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 142 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 143 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 144 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 145 / 146 ] simplifiying candidate # 2.628 * * * * [progress]: [ 146 / 146 ] simplifiying candidate # 2.630 * [simplify]: Simplifying (expm1 (log (/ (+ 1 N) N))), (log1p (log (/ (+ 1 N) N))), (log (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N)))), (log (cbrt (/ (+ 1 N) N))), (log (sqrt (/ (+ 1 N) N))), (log (sqrt (/ (+ 1 N) N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N)))), (log (/ (cbrt (+ 1 N)) (cbrt N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N))), (log (/ (cbrt (+ 1 N)) (sqrt N))), (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1)), (log (/ (cbrt (+ 1 N)) N)), (log (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N)))), (log (/ (sqrt (+ 1 N)) (cbrt N))), (log (/ (sqrt (+ 1 N)) (sqrt N))), (log (/ (sqrt 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(- (* +nan.0 (/ 1 N))))))) 2.634 * * [simplify]: iteration 1: (150 enodes) 2.724 * * [simplify]: iteration 2: (541 enodes) 2.885 * * [simplify]: iteration 3: (964 enodes) 3.193 * * [simplify]: Extracting #0: cost 56 inf + 0 3.194 * * [simplify]: Extracting #1: cost 268 inf + 4 3.197 * * [simplify]: Extracting #2: cost 478 inf + 755 3.214 * * [simplify]: Extracting #3: cost 377 inf + 31849 3.242 * * [simplify]: Extracting #4: cost 106 inf + 100828 3.289 * * [simplify]: Extracting #5: cost 20 inf + 128193 3.338 * * [simplify]: Extracting #6: cost 0 inf + 136322 3.372 * [simplify]: Simplified to (expm1 (log (/ (+ N 1) N))), (log1p (log (/ (+ N 1) N))), (log (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N)))), (log (cbrt (/ (+ N 1) N))), (log (sqrt (/ (+ N 1) N))), (log (sqrt (/ (+ N 1) N))), (log (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N)))), (log (/ (cbrt (+ N 1)) (cbrt N))), (log (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1))))), (log (/ (cbrt (+ N 1)) (sqrt N))), (log (* (cbrt 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1) N))) (cbrt (log (/ (+ N 1) N)))), (cbrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), 1, (log (/ (+ N 1) N)), 1, (log (/ (+ N 1) N)), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), 1, (log (/ (+ N 1) N)), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), (sqrt (log (/ (+ N 1) N))), 1, 2, 1, (* (* (sqrt (log (/ (+ N 1) N))) (cbrt (sqrt (log (/ (+ N 1) N))))) (cbrt (sqrt (log (/ (+ N 1) N))))), (sqrt (log (/ (+ N 1) N))), (* (sqrt (log (/ (+ N 1) N))) (fabs (cbrt (log (/ (+ N 1) N))))), (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))), (sqrt (log (/ (+ N 1) N))), (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))), (sqrt (log (/ (+ N 1) N))), (* (sqrt (log (/ (+ N 1) N))) (cbrt (sqrt (log (/ (+ N 1) N))))), (log (/ (+ N 1) N)), (* (sqrt (log (/ (+ N 1) N))) (sqrt (cbrt (log (/ (+ N 1) N))))), (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))), (log (/ (+ N 1) N)), (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))), (log (/ (+ N 1) N)), (real->posit16 (log (/ (+ N 1) N))), (expm1 (sqrt (log (/ (+ N 1) N)))), (log1p (sqrt (log (/ (+ N 1) N)))), (log (sqrt (log (/ (+ N 1) N)))), (exp (sqrt (log (/ (+ N 1) N)))), (* (cbrt (sqrt (log (/ (+ N 1) N)))) (cbrt (sqrt (log (/ (+ N 1) N))))), (cbrt (sqrt (log (/ (+ N 1) N)))), (* (sqrt (log (/ (+ N 1) N))) (log (/ (+ N 1) N))), 1, (sqrt (log (/ (+ N 1) N))), (fabs (cbrt (log (/ (+ N 1) N)))), (sqrt (cbrt (log (/ (+ N 1) N)))), (sqrt (sqrt (log (/ (+ N 1) N)))), (sqrt (sqrt (log (/ (+ N 1) N)))), 1, (sqrt (log (/ (+ N 1) N))), 1/2, (sqrt (sqrt (log (/ (+ N 1) N)))), (sqrt (sqrt (log (/ (+ N 1) N)))), (real->posit16 (sqrt (log (/ (+ N 1) N)))), (- N (fma (* N N) 1/2 (log N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (- N (fma (* N N) 1/2 (log N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (- N (fma (* N N) 1/2 (log N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))), (- (fma 1/2 (/ N (sqrt (- (log N)))) (sqrt (- (log N)))) (* (/ (* N N) (sqrt (- (log N)))) (+ (/ 1/8 (- (log N))) 1/4))), (- (- (/ (/ +nan.0 N) N)) (+ (/ (- (/ (/ +nan.0 N) N)) N) (/ +nan.0 N))), (- (- (/ (/ +nan.0 N) N)) (+ (/ (- (/ (/ +nan.0 N) N)) N) (/ +nan.0 N))) 3.372 * * * * [progress]: [ 1 / 146 ] simplifiying candidate # 3.372 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log1p (expm1 (log (/ (+ N 1) N))))))) 3.372 * * * * [progress]: [ 2 / 146 ] simplifiying candidate # 3.372 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (expm1 (log1p (log (/ (+ N 1) N))))))) 3.372 * * * * [progress]: [ 3 / 146 ] simplifiying candidate # 3.373 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N)))) (log (cbrt (/ (+ 1 N) N))))))) 3.373 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N)))) (log (cbrt (/ (+ N 1) N))))))) 3.373 * * * * [progress]: [ 4 / 146 ] simplifiying candidate # 3.373 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (sqrt (/ (+ N 1) N))) (log (sqrt (/ (+ 1 N) N))))))) 3.373 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (sqrt (/ (+ 1 N) N))) (log (sqrt (/ (+ N 1) N))))))) 3.373 * * * * [progress]: [ 5 / 146 ] simplifiying candidate # 3.373 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N)))) (log (/ (cbrt (+ 1 N)) (cbrt N))))))) 3.373 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N)))) (log (/ (cbrt (+ N 1)) (cbrt N))))))) 3.373 * * * * [progress]: [ 6 / 146 ] simplifiying candidate # 3.373 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1))))) (log (/ (cbrt (+ 1 N)) (sqrt N))))))) 3.373 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N))) (log (/ (cbrt (+ N 1)) (sqrt N))))))) 3.373 * * * * [progress]: [ 7 / 146 ] simplifiying candidate # 3.373 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (* (cbrt (+ N 1)) (cbrt (+ N 1)))) (log (/ (cbrt (+ 1 N)) N)))))) 3.374 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1)) (log (/ (cbrt (+ N 1)) N)))))) 3.374 * * * * [progress]: [ 8 / 146 ] simplifiying candidate # 3.374 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ 1 N)) (cbrt N))))))) 3.374 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ N 1)) (cbrt N))))))) 3.374 * * * * [progress]: [ 9 / 146 ] simplifiying candidate # 3.374 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (sqrt (+ N 1)) (sqrt N))) (log (/ (sqrt (+ 1 N)) (sqrt N))))))) 3.374 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (sqrt (+ 1 N)) (sqrt N))) (log (/ (sqrt (+ N 1)) (sqrt N))))))) 3.374 * * * * [progress]: [ 10 / 146 ] simplifiying candidate # 3.374 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (sqrt (+ N 1))) (log (/ (sqrt (+ 1 N)) N)))))) 3.374 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ (sqrt (+ 1 N)) 1)) (log (/ (sqrt (+ N 1)) N)))))) 3.374 * * * * [progress]: [ 11 / 146 ] simplifiying candidate # 3.374 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (- (log (* (cbrt N) (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))))) 3.374 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))))) 3.375 * * * * [progress]: [ 12 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))))) 3.375 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))))) 3.375 * * * * [progress]: [ 13 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ 1 N) N)))))) 3.375 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ N 1) N)))))) 3.375 * * * * [progress]: [ 14 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (- (log (* (cbrt N) (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))))) 3.375 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))))) 3.375 * * * * [progress]: [ 15 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))))) 3.375 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))))) 3.375 * * * * [progress]: [ 16 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ 1 N) N)))))) 3.375 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ N 1) N)))))) 3.375 * * * * [progress]: [ 17 / 146 ] simplifiying candidate # 3.375 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ 1 N) N)))))) 3.376 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ 0 (log (/ (+ N 1) N)))))) 3.376 * * * * [progress]: [ 18 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log1p N) (log (/ 1 N)))))) 3.376 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (+ (log (+ 1 N)) (- (log N)))))) 3.376 * * * * [progress]: [ 19 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (- (log1p N) (log N))))) 3.376 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (- (log (+ 1 N)) (log N))))) 3.376 * * * * [progress]: [ 20 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (* 1 (log (/ (+ N 1) N)))))) 3.376 * * * * [progress]: [ 21 / 146 ] simplifiying candidate # 3.376 * * * * [progress]: [ 22 / 146 ] simplifiying candidate # 3.376 * * * * [progress]: [ 23 / 146 ] simplifiying candidate # 3.376 * * * * [progress]: [ 24 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (exp (log (log (/ (+ N 1) N))))))) 3.376 * * * * [progress]: [ 25 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ N 1) N))))) 3.376 * * * * [progress]: [ 26 / 146 ] simplifiying candidate # 3.376 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (* (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))) (cbrt (log (/ (+ 1 N) N))))))) 3.376 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (* (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N)))) (cbrt (log (/ (+ N 1) N))))))) 3.377 * * * * [progress]: [ 27 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (cbrt (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))))))) 3.377 * * * * [progress]: [ 28 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))))) 3.377 * [simplify]: Simplified (2 2 1 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ N 1) N))))))) 3.377 * * * * [progress]: [ 29 / 146 ] simplifiying candidate # 3.377 * * * * [progress]: [ 30 / 146 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N)))))))> 3.377 * [simplify]: Simplified (2 2 1 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (posit16->real (real->posit16 (log (/ (+ N 1) N))))))) 3.377 * * * * [progress]: [ 31 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (log1p (expm1 (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.377 * * * * [progress]: [ 32 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (expm1 (log1p (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.377 * * * * [progress]: [ 33 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (* (cbrt (/ (+ N 1) N)) (cbrt (/ (+ N 1) N)))) (log (cbrt (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.377 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (* (cbrt (/ (+ 1 N) N)) (cbrt (/ (+ 1 N) N)))) (log (cbrt (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.377 * * * * [progress]: [ 34 / 146 ] simplifiying candidate # 3.377 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (sqrt (/ (+ N 1) N))) (log (sqrt (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (sqrt (/ (+ 1 N) N))) (log (sqrt (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * * * * [progress]: [ 35 / 146 ] simplifiying candidate # 3.378 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (* (/ (cbrt (+ N 1)) (cbrt N)) (/ (cbrt (+ N 1)) (cbrt N)))) (log (/ (cbrt (+ 1 N)) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (* (cbrt N) (cbrt N)))) (log (/ (cbrt (+ N 1)) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * * * * [progress]: [ 36 / 146 ] simplifiying candidate # 3.378 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (/ (cbrt (+ N 1)) (/ (sqrt N) (cbrt (+ N 1))))) (log (/ (cbrt (+ 1 N)) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) (sqrt N))) (log (/ (cbrt (+ N 1)) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * * * * [progress]: [ 37 / 146 ] simplifiying candidate # 3.378 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (* (cbrt (+ N 1)) (cbrt (+ N 1)))) (log (/ (cbrt (+ 1 N)) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (* (cbrt (+ 1 N)) (cbrt (+ 1 N))) 1)) (log (/ (cbrt (+ N 1)) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * * * * [progress]: [ 38 / 146 ] simplifiying candidate # 3.378 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (/ (sqrt (+ N 1)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ 1 N)) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.378 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (sqrt (+ 1 N)) (* (cbrt N) (cbrt N)))) (log (/ (sqrt (+ N 1)) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * * * * [progress]: [ 39 / 146 ] simplifiying candidate # 3.379 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (/ (sqrt (+ N 1)) (sqrt N))) (log (/ (sqrt (+ 1 N)) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (sqrt (+ 1 N)) (sqrt N))) (log (/ (sqrt (+ N 1)) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * * * * [progress]: [ 40 / 146 ] simplifiying candidate # 3.379 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log (sqrt (+ N 1))) (log (/ (sqrt (+ 1 N)) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ (sqrt (+ 1 N)) 1)) (log (/ (sqrt (+ N 1)) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * * * * [progress]: [ 41 / 146 ] simplifiying candidate # 3.379 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (- (log (* (cbrt N) (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * * * * [progress]: [ 42 / 146 ] simplifiying candidate # 3.379 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.379 * * * * [progress]: [ 43 / 146 ] simplifiying candidate # 3.379 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ 0 (log (/ (+ 1 N) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ 0 (log (/ (+ N 1) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 44 / 146 ] simplifiying candidate # 3.380 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (- (log (* (cbrt N) (cbrt N)))) (log (/ (+ 1 N) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ 1 (* (cbrt N) (cbrt N)))) (log (/ (+ N 1) (cbrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 45 / 146 ] simplifiying candidate # 3.380 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (- (log (sqrt N))) (log (/ (+ 1 N) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (/ 1 (sqrt N))) (log (/ (+ N 1) (sqrt N))))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 46 / 146 ] simplifiying candidate # 3.380 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ 0 (log (/ (+ 1 N) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ 0 (log (/ (+ N 1) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 47 / 146 ] simplifiying candidate # 3.380 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ 0 (log (/ (+ 1 N) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ 0 (log (/ (+ N 1) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 48 / 146 ] simplifiying candidate # 3.380 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (+ (log1p N) (log (/ 1 N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (+ (log (+ 1 N)) (- (log N)))) (sqrt (log (/ (+ 1 N) N))))) 3.380 * * * * [progress]: [ 49 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (- (log1p N) (log N))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (- (log (+ 1 N)) (log N))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 50 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (* 1 (log (/ (+ N 1) N)))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 51 / 146 ] simplifiying candidate # 3.381 * * * * [progress]: [ 52 / 146 ] simplifiying candidate # 3.381 * * * * [progress]: [ 53 / 146 ] simplifiying candidate # 3.381 * * * * [progress]: [ 54 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (exp (log (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 55 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 56 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (* (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))) (cbrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (* (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N)))) (cbrt (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 57 / 146 ] simplifiying candidate # 3.381 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (cbrt (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.381 * * * * [progress]: [ 58 / 146 ] simplifiying candidate # 3.382 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.382 * [simplify]: Simplified (2 1 1 2) to (λ (N) (* (sqrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.382 * * * * [progress]: [ 59 / 146 ] simplifiying candidate # 3.382 * * * * [progress]: [ 60 / 146 ] simplifiying candidate #real (real->posit16 (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ 1 N) N)))))> 3.382 * [simplify]: Simplified (2 1 1 1) to (λ (N) (* (sqrt (posit16->real (real->posit16 (log (/ (+ N 1) N))))) (sqrt (log (/ (+ 1 N) N))))) 3.382 * * * * [progress]: [ 61 / 146 ] simplifiying candidate # 3.382 * [simplify]: Simplified (2 1) to (λ (N) (log1p (expm1 (log (/ (+ N 1) N))))) 3.382 * * * * [progress]: [ 62 / 146 ] simplifiying candidate # 3.382 * [simplify]: Simplified (2 1) to (λ (N) (expm1 (log1p (log (/ (+ N 1) N))))) 3.382 * * * * [progress]: [ 63 / 146 ] simplifiying candidate # 3.382 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.382 * * * * [progress]: [ 64 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.383 * * * * [progress]: [ 65 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 2) to (λ (N) (pow (sqrt (log (/ (+ 1 N) N))) 2)) 3.383 * * * * [progress]: [ 66 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.383 * * * * [progress]: [ 67 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.383 * * * * [progress]: [ 68 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 1) to (λ (N) (pow (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) 1/2)) 3.383 * * * * [progress]: [ 69 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 1) to (λ (N) (pow (log (/ (+ N 1) N)) 1)) 3.383 * * * * [progress]: [ 70 / 146 ] simplifiying candidate # 3.383 * [simplify]: Simplified (2 1) to (λ (N) (pow (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (/ 1 2))) 3.383 * * * * [progress]: [ 71 / 146 ] simplifiying candidate # 3.384 * * * * [progress]: [ 72 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 2) to (λ (N) (pow (sqrt (log (/ (+ 1 N) N))) 2)) 3.384 * * * * [progress]: [ 73 / 146 ] simplifiying candidate # 3.384 * * * * [progress]: [ 74 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 1) to (λ (N) (exp (log (log (/ (+ N 1) N))))) 3.384 * * * * [progress]: [ 75 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 1) to (λ (N) (exp (log (log (/ (+ N 1) N))))) 3.384 * * * * [progress]: [ 76 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 1) to (λ (N) (log (/ (+ N 1) N))) 3.384 * * * * [progress]: [ 77 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 1) to (λ (N) (cbrt (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))))) 3.384 * * * * [progress]: [ 78 / 146 ] simplifiying candidate # 3.384 * [simplify]: Simplified (2 1) to (λ (N) (* (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))) (cbrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N))))))) 3.385 * [simplify]: Simplified (2 2) to (λ (N) (* (* (cbrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N))))) (cbrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) (cbrt (log (/ (+ N 1) N))))) 3.385 * * * * [progress]: [ 79 / 146 ] simplifiying candidate # 3.385 * [simplify]: Simplified (2 1) to (λ (N) (cbrt (* (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))) (log (/ (+ N 1) N))))) 3.385 * * * * [progress]: [ 80 / 146 ] simplifiying candidate # 3.385 * [simplify]: Simplified (2 1) to (λ (N) (sqrt (* (log (/ (+ N 1) N)) (log (/ (+ N 1) N))))) 3.385 * * * * [progress]: [ 81 / 146 ] simplifiying candidate # 3.385 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N))))))) 3.385 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.385 * * * * [progress]: [ 82 / 146 ] simplifiying candidate # 3.385 * * * * [progress]: [ 83 / 146 ] simplifiying candidate # 3.386 * * * * [progress]: [ 84 / 146 ] simplifiying candidate # 3.386 * [simplify]: Simplified (2 1) to (λ (N) (* (* (sqrt (log (/ (+ N 1) N))) (cbrt (sqrt (log (/ (+ N 1) N))))) (* (cbrt (sqrt (log (/ (+ 1 N) N)))) (cbrt (sqrt (log (/ (+ 1 N) N))))))) 3.386 * [simplify]: Simplified (2 2) to (λ (N) (* (* (* (cbrt (sqrt (log (/ (+ 1 N) N)))) (cbrt (sqrt (log (/ (+ 1 N) N))))) (* (cbrt (sqrt (log (/ (+ 1 N) N)))) (cbrt (sqrt (log (/ (+ 1 N) N)))))) (* (cbrt (sqrt (log (/ (+ N 1) N)))) (cbrt (sqrt (log (/ (+ N 1) N))))))) 3.386 * * * * [progress]: [ 85 / 146 ] simplifiying candidate # 3.386 * [simplify]: Simplified (2 1) to (λ (N) (* 1 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) 3.386 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.386 * * * * [progress]: [ 86 / 146 ] simplifiying candidate # 3.386 * [simplify]: Simplified (2 1) to (λ (N) (* 1 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) 3.386 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.386 * * * * [progress]: [ 87 / 146 ] simplifiying candidate # 3.386 * [simplify]: Simplified (2 1) to (λ (N) (* (* (cbrt (log (/ (+ N 1) N))) (cbrt (log (/ (+ N 1) N)))) (* (sqrt (cbrt (log (/ (+ 1 N) N)))) (sqrt (cbrt (log (/ (+ 1 N) N))))))) 3.387 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N))))) (sqrt (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N)))))) (cbrt (log (/ (+ N 1) N))))) 3.387 * * * * [progress]: [ 88 / 146 ] simplifiying candidate # 3.387 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.387 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.387 * * * * [progress]: [ 89 / 146 ] simplifiying candidate # 3.387 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.387 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.387 * * * * [progress]: [ 90 / 146 ] simplifiying candidate # 3.388 * [simplify]: Simplified (2 1) to (λ (N) (* 1 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) 3.388 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.388 * * * * [progress]: [ 91 / 146 ] simplifiying candidate # 3.388 * [simplify]: Simplified (2 1) to (λ (N) (* 1 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) 3.388 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.388 * * * * [progress]: [ 92 / 146 ] simplifiying candidate # 3.388 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.388 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.388 * * * * [progress]: [ 93 / 146 ] simplifiying candidate # 3.388 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.388 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.389 * * * * [progress]: [ 94 / 146 ] simplifiying candidate # 3.389 * [simplify]: Simplified (2 1) to (λ (N) (* 1 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))) 3.389 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.389 * * * * [progress]: [ 95 / 146 ] simplifiying candidate # 3.389 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.389 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.389 * * * * [progress]: [ 96 / 146 ] simplifiying candidate # 3.389 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.389 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.390 * * * * [progress]: [ 97 / 146 ] simplifiying candidate # 3.390 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.390 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.390 * * * * [progress]: [ 98 / 146 ] simplifiying candidate # 3.390 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.390 * [simplify]: Simplified (2 2) to (λ (N) (* (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))) (sqrt (log (/ (+ N 1) N))))) 3.390 * * * * [progress]: [ 99 / 146 ] simplifiying candidate # 3.390 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.390 * * * * [progress]: [ 100 / 146 ] simplifiying candidate # 3.390 * [simplify]: Simplified (2 2) to (λ (N) (pow (sqrt (log (/ (+ 1 N) N))) 2)) 3.390 * * * * [progress]: [ 101 / 146 ] simplifiying candidate # 3.391 * [simplify]: Simplified (2 2) to (λ (N) (pow (log (/ (+ 1 N) N)) 1)) 3.391 * * * * [progress]: [ 102 / 146 ] simplifiying candidate # 3.391 * [simplify]: Simplified (2 1) to (λ (N) (* (* (* (sqrt (log (/ (+ N 1) N))) (cbrt (sqrt (log (/ (+ N 1) N))))) (cbrt (sqrt (log (/ (+ N 1) N))))) (cbrt (sqrt (log (/ (+ 1 N) N)))))) 3.391 * * * * [progress]: [ 103 / 146 ] simplifiying candidate # 3.391 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) 3.391 * * * * [progress]: [ 104 / 146 ] simplifiying candidate # 3.391 * [simplify]: Simplified (2 1) to (λ (N) (* (* (sqrt (log (/ (+ N 1) N))) (fabs (cbrt (log (/ (+ N 1) N))))) (sqrt (cbrt (log (/ (+ 1 N) N)))))) 3.391 * * * * [progress]: [ 105 / 146 ] simplifiying candidate # 3.391 * [simplify]: Simplified (2 1) to (λ (N) (* (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))) (sqrt (sqrt (log (/ (+ 1 N) N)))))) 3.391 * * * * [progress]: [ 106 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) 3.392 * * * * [progress]: [ 107 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 1) to (λ (N) (* (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))) (sqrt (sqrt (log (/ (+ 1 N) N)))))) 3.392 * * * * [progress]: [ 108 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (log (/ (+ N 1) N))) (sqrt (log (/ (+ 1 N) N))))) 3.392 * * * * [progress]: [ 109 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 2) to (λ (N) (* (* (cbrt (sqrt (log (/ (+ 1 N) N)))) (cbrt (sqrt (log (/ (+ 1 N) N))))) (* (sqrt (log (/ (+ N 1) N))) (cbrt (sqrt (log (/ (+ N 1) N))))))) 3.392 * * * * [progress]: [ 110 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt 1) (log (/ (+ N 1) N)))) 3.392 * * * * [progress]: [ 111 / 146 ] simplifiying candidate # 3.392 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N))))) (* (sqrt (log (/ (+ N 1) N))) (sqrt (cbrt (log (/ (+ N 1) N))))))) 3.393 * * * * [progress]: [ 112 / 146 ] simplifiying candidate # 3.393 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))))) 3.393 * * * * [progress]: [ 113 / 146 ] simplifiying candidate # 3.393 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt 1) (log (/ (+ N 1) N)))) 3.393 * * * * [progress]: [ 114 / 146 ] simplifiying candidate # 3.393 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (* (sqrt (log (/ (+ N 1) N))) (sqrt (sqrt (log (/ (+ N 1) N))))))) 3.393 * * * * [progress]: [ 115 / 146 ] simplifiying candidate # 3.393 * [simplify]: Simplified (2 2) to (λ (N) (* 1 (log (/ (+ N 1) N)))) 3.393 * * * * [progress]: [ 116 / 146 ] simplifiying candidate #real (real->posit16 (* (sqrt (log (/ (+ 1 N) N))) (sqrt (log (/ (+ 1 N) N)))))))> 3.393 * [simplify]: Simplified (2 1) to (λ (N) (posit16->real (real->posit16 (log (/ (+ N 1) N))))) 3.393 * * * * [progress]: [ 117 / 146 ] simplifiying candidate # 3.393 * * * * [progress]: [ 118 / 146 ] simplifiying candidate # 3.394 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (log1p (expm1 (sqrt (log (/ (+ N 1) N))))))) 3.394 * * * * [progress]: [ 119 / 146 ] simplifiying candidate # 3.394 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (expm1 (log1p (sqrt (log (/ (+ N 1) N))))))) 3.394 * * * * [progress]: [ 120 / 146 ] simplifiying candidate # 3.394 * * * * [progress]: [ 121 / 146 ] simplifiying candidate # 3.394 * * * * [progress]: [ 122 / 146 ] simplifiying candidate # 3.394 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (exp (log (sqrt (log (/ (+ N 1) N))))))) 3.394 * * * * [progress]: [ 123 / 146 ] simplifiying candidate # 3.394 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (log (exp (sqrt (log (/ (+ N 1) N))))))) 3.394 * * * * [progress]: [ 124 / 146 ] simplifiying candidate # 3.394 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (* (cbrt (sqrt (log (/ (+ N 1) N)))) (cbrt (sqrt (log (/ (+ N 1) N))))) (cbrt (sqrt (log (/ (+ 1 N) N))))))) 3.395 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (* (cbrt (sqrt (log (/ (+ 1 N) N)))) (cbrt (sqrt (log (/ (+ 1 N) N))))) (cbrt (sqrt (log (/ (+ N 1) N))))))) 3.395 * * * * [progress]: [ 125 / 146 ] simplifiying candidate # 3.395 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (cbrt (* (sqrt (log (/ (+ N 1) N))) (log (/ (+ N 1) N)))))) 3.395 * * * * [progress]: [ 126 / 146 ] simplifiying candidate # 3.395 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* 1 (sqrt (log (/ (+ 1 N) N)))))) 3.395 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* 1 (sqrt (log (/ (+ N 1) N)))))) 3.395 * * * * [progress]: [ 127 / 146 ] simplifiying candidate # 3.395 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (fabs (cbrt (log (/ (+ N 1) N)))) (sqrt (cbrt (log (/ (+ 1 N) N))))))) 3.395 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (sqrt (* (cbrt (log (/ (+ 1 N) N))) (cbrt (log (/ (+ 1 N) N))))) (sqrt (cbrt (log (/ (+ N 1) N))))))) 3.396 * * * * [progress]: [ 128 / 146 ] simplifiying candidate # 3.396 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (sqrt (sqrt (log (/ (+ N 1) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.396 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ N 1) N))))))) 3.396 * * * * [progress]: [ 129 / 146 ] simplifiying candidate # 3.396 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* 1 (sqrt (log (/ (+ 1 N) N)))))) 3.396 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* 1 (sqrt (log (/ (+ N 1) N)))))) 3.396 * * * * [progress]: [ 130 / 146 ] simplifiying candidate # 3.396 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (pow (log (/ (+ 1 N) N)) 1/2))) 3.396 * * * * [progress]: [ 131 / 146 ] simplifiying candidate # 3.396 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (sqrt (sqrt (log (/ (+ N 1) N)))) (sqrt (sqrt (log (/ (+ 1 N) N))))))) 3.397 * [simplify]: Simplified (2 2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (* (sqrt (sqrt (log (/ (+ 1 N) N)))) (sqrt (sqrt (log (/ (+ N 1) N))))))) 3.397 * * * * [progress]: [ 132 / 146 ] simplifiying candidate # 3.397 * * * * [progress]: [ 133 / 146 ] simplifiying candidate # 3.397 * * * * [progress]: [ 134 / 146 ] simplifiying candidate #real (real->posit16 (sqrt (log (/ (+ 1 N) N)))))))> 3.397 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (posit16->real (real->posit16 (sqrt (log (/ (+ N 1) N))))))) 3.397 * * * * [progress]: [ 135 / 146 ] simplifiying candidate # 3.397 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (- N (fma (* N N) 1/2 (log N)))))) 3.397 * * * * [progress]: [ 136 / 146 ] simplifiying candidate # 3.397 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 3.398 * * * * [progress]: [ 137 / 146 ] simplifiying candidate # 3.398 * [simplify]: Simplified (2 2 1) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 3.398 * * * * [progress]: [ 138 / 146 ] simplifiying candidate # 3.398 * [simplify]: Simplified (2 1 1) to (λ (N) (* (sqrt (- N (fma (* N N) 1/2 (log N)))) (sqrt (log (/ (+ 1 N) N))))) 3.398 * * * * [progress]: [ 139 / 146 ] simplifiying candidate # 3.398 * [simplify]: Simplified (2 1 1) to (λ (N) (* (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (sqrt (log (/ (+ 1 N) N))))) 3.398 * * * * [progress]: [ 140 / 146 ] simplifiying candidate # 3.398 * [simplify]: Simplified (2 1 1) to (λ (N) (* (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (sqrt (log (/ (+ 1 N) N))))) 3.398 * * * * [progress]: [ 141 / 146 ] simplifiying candidate # 3.399 * [simplify]: Simplified (2) to (λ (N) (- N (fma (* N N) 1/2 (log N)))) 3.399 * * * * [progress]: [ 142 / 146 ] simplifiying candidate # 3.399 * [simplify]: Simplified (2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 3.399 * * * * [progress]: [ 143 / 146 ] simplifiying candidate # 3.399 * [simplify]: Simplified (2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 3.399 * * * * [progress]: [ 144 / 146 ] simplifiying candidate # 3.399 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (- (fma 1/2 (/ N (sqrt (- (log N)))) (sqrt (- (log N)))) (* (/ (* N N) (sqrt (- (log N)))) (+ (/ 1/8 (- (log N))) 1/4))))) 3.399 * * * * [progress]: [ 145 / 146 ] simplifiying candidate # 3.399 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (- (- (/ (/ +nan.0 N) N)) (+ (/ (- (/ (/ +nan.0 N) N)) N) (/ +nan.0 N))))) 3.400 * * * * [progress]: [ 146 / 146 ] simplifiying candidate # 3.400 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (log (/ (+ 1 N) N))) (- (- (/ (/ +nan.0 N) N)) (+ (/ (- (/ (/ +nan.0 N) N)) N) (/ +nan.0 N))))) 3.400 * * * [progress]: adding candidates to table 4.563 * * [progress]: iteration 4 / 4 4.563 * * * [progress]: picking best candidate 4.565 * * * * [pick]: Picked # 4.565 * * * [progress]: localizing error 4.590 * * * [progress]: generating rewritten candidates 4.590 * * * * [progress]: [ 1 / 4 ] rewriting at (2) 4.590 * * * * [progress]: [ 2 / 4 ] rewriting at (2 3 1 1) 4.598 * * * * [progress]: [ 3 / 4 ] rewriting at (2 1) 4.605 * * * * [progress]: [ 4 / 4 ] rewriting at (2 3 1) 4.626 * * * [progress]: generating series expansions 4.626 * * * * [progress]: [ 1 / 4 ] generating series at (2) 4.626 * [backup-simplify]: Simplify (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))) into (fma (/ 1 (pow N 2)) -1/2 (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) 4.627 * [approximate]: Taking taylor expansion of (fma (/ 1 (pow N 2)) -1/2 (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) in (N) around 0 4.627 * [taylor]: Taking taylor expansion of (fma (/ 1 (pow N 2)) -1/2 (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) in N 4.627 * [taylor]: Rewrote expression to (+ (* (/ 1 (pow N 2)) -1/2) (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) 4.627 * [taylor]: Taking taylor expansion of (* (/ 1 (pow N 2)) -1/2) in N 4.627 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.627 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.627 * [taylor]: Taking taylor expansion of N in N 4.627 * [backup-simplify]: Simplify 0 into 0 4.627 * [backup-simplify]: Simplify 1 into 1 4.628 * [backup-simplify]: Simplify (* 1 1) into 1 4.628 * [backup-simplify]: Simplify (/ 1 1) into 1 4.628 * [taylor]: Taking taylor expansion of -1/2 in N 4.628 * [backup-simplify]: Simplify -1/2 into -1/2 4.628 * [taylor]: Taking taylor expansion of (fma (/ 1 (pow N 3)) 1/3 (/ 1 N)) in N 4.628 * [taylor]: Rewrote expression to (+ (* (/ 1 (pow N 3)) 1/3) (/ 1 N)) 4.628 * [taylor]: Taking taylor expansion of (* (/ 1 (pow N 3)) 1/3) in N 4.628 * [taylor]: Taking taylor expansion of (/ 1 (pow N 3)) in N 4.628 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.628 * [taylor]: Taking taylor expansion of N in N 4.628 * [backup-simplify]: Simplify 0 into 0 4.628 * [backup-simplify]: Simplify 1 into 1 4.628 * [backup-simplify]: Simplify (* 1 1) into 1 4.629 * [backup-simplify]: Simplify (* 1 1) into 1 4.629 * [backup-simplify]: Simplify (/ 1 1) into 1 4.629 * [taylor]: Taking taylor expansion of 1/3 in N 4.629 * [backup-simplify]: Simplify 1/3 into 1/3 4.629 * [taylor]: Taking taylor expansion of (/ 1 N) in N 4.629 * [taylor]: Taking taylor expansion of N in N 4.629 * [backup-simplify]: Simplify 0 into 0 4.629 * [backup-simplify]: Simplify 1 into 1 4.629 * [backup-simplify]: Simplify (/ 1 1) into 1 4.629 * [taylor]: Taking taylor expansion of (fma (/ 1 (pow N 2)) -1/2 (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) in N 4.629 * [taylor]: Rewrote expression to (+ (* (/ 1 (pow N 2)) -1/2) (fma (/ 1 (pow N 3)) 1/3 (/ 1 N))) 4.629 * [taylor]: Taking taylor expansion of (* (/ 1 (pow N 2)) -1/2) in N 4.629 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.629 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.629 * [taylor]: Taking taylor expansion of N in N 4.629 * [backup-simplify]: Simplify 0 into 0 4.629 * [backup-simplify]: Simplify 1 into 1 4.630 * [backup-simplify]: Simplify (* 1 1) into 1 4.630 * [backup-simplify]: Simplify (/ 1 1) into 1 4.630 * [taylor]: Taking taylor expansion of -1/2 in N 4.630 * [backup-simplify]: Simplify -1/2 into -1/2 4.630 * [taylor]: Taking taylor expansion of (fma (/ 1 (pow N 3)) 1/3 (/ 1 N)) in N 4.630 * [taylor]: Rewrote expression to (+ (* (/ 1 (pow N 3)) 1/3) (/ 1 N)) 4.630 * [taylor]: Taking taylor expansion of (* (/ 1 (pow N 3)) 1/3) in N 4.630 * [taylor]: Taking taylor expansion of (/ 1 (pow N 3)) in N 4.630 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.630 * [taylor]: Taking taylor expansion of N in N 4.630 * [backup-simplify]: Simplify 0 into 0 4.630 * [backup-simplify]: Simplify 1 into 1 4.630 * [backup-simplify]: Simplify (* 1 1) into 1 4.631 * [backup-simplify]: Simplify (* 1 1) into 1 4.631 * [backup-simplify]: Simplify (/ 1 1) into 1 4.631 * [taylor]: Taking taylor expansion of 1/3 in N 4.631 * [backup-simplify]: Simplify 1/3 into 1/3 4.631 * [taylor]: Taking taylor expansion of (/ 1 N) in N 4.631 * [taylor]: Taking taylor expansion of N in N 4.631 * [backup-simplify]: Simplify 0 into 0 4.631 * [backup-simplify]: Simplify 1 into 1 4.631 * [backup-simplify]: Simplify (/ 1 1) into 1 4.632 * [backup-simplify]: Simplify (* 1 1/3) into 1/3 4.632 * [backup-simplify]: Simplify (+ 1/3 0) into 1/3 4.632 * [backup-simplify]: Simplify (+ 0 1/3) into 1/3 4.632 * [backup-simplify]: Simplify 1/3 into 1/3 4.632 * [backup-simplify]: Simplify (* 1 -1/2) into -1/2 4.633 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.633 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.634 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.634 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1/3)) into 0 4.634 * [backup-simplify]: Simplify (+ 0 0) into 0 4.635 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 4.635 * [backup-simplify]: Simplify -1/2 into -1/2 4.635 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.636 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.636 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 -1/2)) into 0 4.637 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.637 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.638 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.639 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1/3))) into 0 4.640 * [backup-simplify]: Simplify (+ 0 1) into 1 4.640 * [backup-simplify]: Simplify (+ 0 1) into 1 4.640 * [backup-simplify]: Simplify 1 into 1 4.641 * [backup-simplify]: Simplify (+ (* 1 (/ 1 N)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1/3 (pow (/ 1 N) 3)))) into (- (+ (/ 1 N) (* 1/3 (/ 1 (pow N 3)))) (* 1/2 (/ 1 (pow N 2)))) 4.642 * [backup-simplify]: Simplify (fma (/ (/ 1 (/ 1 N)) (/ 1 N)) -1/2 (fma (/ (/ (/ 1 (/ 1 N)) (/ 1 N)) (/ 1 N)) 1/3 (/ 1 (/ 1 N)))) into (fma (pow N 2) -1/2 (fma (pow N 3) 1/3 N)) 4.642 * [approximate]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (pow N 3) 1/3 N)) in (N) around 0 4.642 * [taylor]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (pow N 3) 1/3 N)) in N 4.642 * [taylor]: Rewrote expression to (+ (* (pow N 2) -1/2) (fma (pow N 3) 1/3 N)) 4.642 * [taylor]: Taking taylor expansion of (* (pow N 2) -1/2) in N 4.642 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.642 * [taylor]: Taking taylor expansion of N in N 4.642 * [backup-simplify]: Simplify 0 into 0 4.642 * [backup-simplify]: Simplify 1 into 1 4.642 * [taylor]: Taking taylor expansion of -1/2 in N 4.642 * [backup-simplify]: Simplify -1/2 into -1/2 4.642 * [taylor]: Taking taylor expansion of (fma (pow N 3) 1/3 N) in N 4.642 * [taylor]: Rewrote expression to (+ (* (pow N 3) 1/3) N) 4.642 * [taylor]: Taking taylor expansion of (* (pow N 3) 1/3) in N 4.642 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.642 * [taylor]: Taking taylor expansion of N in N 4.642 * [backup-simplify]: Simplify 0 into 0 4.642 * [backup-simplify]: Simplify 1 into 1 4.642 * [taylor]: Taking taylor expansion of 1/3 in N 4.642 * [backup-simplify]: Simplify 1/3 into 1/3 4.642 * [taylor]: Taking taylor expansion of N in N 4.643 * [backup-simplify]: Simplify 0 into 0 4.643 * [backup-simplify]: Simplify 1 into 1 4.643 * [taylor]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (pow N 3) 1/3 N)) in N 4.643 * [taylor]: Rewrote expression to (+ (* (pow N 2) -1/2) (fma (pow N 3) 1/3 N)) 4.643 * [taylor]: Taking taylor expansion of (* (pow N 2) -1/2) in N 4.643 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.643 * [taylor]: Taking taylor expansion of N in N 4.643 * [backup-simplify]: Simplify 0 into 0 4.643 * [backup-simplify]: Simplify 1 into 1 4.643 * [taylor]: Taking taylor expansion of -1/2 in N 4.643 * [backup-simplify]: Simplify -1/2 into -1/2 4.643 * [taylor]: Taking taylor expansion of (fma (pow N 3) 1/3 N) in N 4.643 * [taylor]: Rewrote expression to (+ (* (pow N 3) 1/3) N) 4.643 * [taylor]: Taking taylor expansion of (* (pow N 3) 1/3) in N 4.643 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.643 * [taylor]: Taking taylor expansion of N in N 4.643 * [backup-simplify]: Simplify 0 into 0 4.643 * [backup-simplify]: Simplify 1 into 1 4.643 * [taylor]: Taking taylor expansion of 1/3 in N 4.643 * [backup-simplify]: Simplify 1/3 into 1/3 4.643 * [taylor]: Taking taylor expansion of N in N 4.644 * [backup-simplify]: Simplify 0 into 0 4.644 * [backup-simplify]: Simplify 1 into 1 4.644 * [backup-simplify]: Simplify (+ 0 0) into 0 4.645 * [backup-simplify]: Simplify (+ 0 0) into 0 4.645 * [backup-simplify]: Simplify 0 into 0 4.645 * [backup-simplify]: Simplify (+ 0 1) into 1 4.646 * [backup-simplify]: Simplify (+ 0 1) into 1 4.646 * [backup-simplify]: Simplify 1 into 1 4.646 * [backup-simplify]: Simplify (* 1 1) into 1 4.647 * [backup-simplify]: Simplify (* 1 -1/2) into -1/2 4.647 * [backup-simplify]: Simplify (+ 0 0) into 0 4.648 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 4.648 * [backup-simplify]: Simplify -1/2 into -1/2 4.648 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.650 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 -1/2)) into 0 4.650 * [backup-simplify]: Simplify (* 1 1) into 1 4.651 * [backup-simplify]: Simplify (* 1 1) into 1 4.651 * [backup-simplify]: Simplify (* 1 1/3) into 1/3 4.652 * [backup-simplify]: Simplify (+ 1/3 0) into 1/3 4.652 * [backup-simplify]: Simplify (+ 0 1/3) into 1/3 4.652 * [backup-simplify]: Simplify 1/3 into 1/3 4.652 * [backup-simplify]: Simplify (+ (* 1/3 (pow (/ 1 N) 3)) (+ (* -1/2 (pow (/ 1 N) 2)) (* 1 (/ 1 N)))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 4.653 * [backup-simplify]: Simplify (fma (/ (/ 1 (/ 1 (- N))) (/ 1 (- N))) -1/2 (fma (/ (/ (/ 1 (/ 1 (- N))) (/ 1 (- N))) (/ 1 (- N))) 1/3 (/ 1 (/ 1 (- N))))) into (fma (pow N 2) -1/2 (fma (* -1 (pow N 3)) 1/3 (* -1 N))) 4.653 * [approximate]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (* -1 (pow N 3)) 1/3 (* -1 N))) in (N) around 0 4.653 * [taylor]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (* -1 (pow N 3)) 1/3 (* -1 N))) in N 4.653 * [taylor]: Rewrote expression to (+ (* (pow N 2) -1/2) (fma (* -1 (pow N 3)) 1/3 (* -1 N))) 4.653 * [taylor]: Taking taylor expansion of (* (pow N 2) -1/2) in N 4.653 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.653 * [taylor]: Taking taylor expansion of N in N 4.653 * [backup-simplify]: Simplify 0 into 0 4.653 * [backup-simplify]: Simplify 1 into 1 4.653 * [taylor]: Taking taylor expansion of -1/2 in N 4.653 * [backup-simplify]: Simplify -1/2 into -1/2 4.653 * [taylor]: Taking taylor expansion of (fma (* -1 (pow N 3)) 1/3 (* -1 N)) in N 4.653 * [taylor]: Rewrote expression to (+ (* (* -1 (pow N 3)) 1/3) (* -1 N)) 4.653 * [taylor]: Taking taylor expansion of (* (* -1 (pow N 3)) 1/3) in N 4.653 * [taylor]: Taking taylor expansion of (* -1 (pow N 3)) in N 4.653 * [taylor]: Taking taylor expansion of -1 in N 4.653 * [backup-simplify]: Simplify -1 into -1 4.653 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.654 * [taylor]: Taking taylor expansion of N in N 4.654 * [backup-simplify]: Simplify 0 into 0 4.654 * [backup-simplify]: Simplify 1 into 1 4.654 * [taylor]: Taking taylor expansion of 1/3 in N 4.654 * [backup-simplify]: Simplify 1/3 into 1/3 4.654 * [taylor]: Taking taylor expansion of (* -1 N) in N 4.654 * [taylor]: Taking taylor expansion of -1 in N 4.654 * [backup-simplify]: Simplify -1 into -1 4.654 * [taylor]: Taking taylor expansion of N in N 4.654 * [backup-simplify]: Simplify 0 into 0 4.654 * [backup-simplify]: Simplify 1 into 1 4.654 * [taylor]: Taking taylor expansion of (fma (pow N 2) -1/2 (fma (* -1 (pow N 3)) 1/3 (* -1 N))) in N 4.654 * [taylor]: Rewrote expression to (+ (* (pow N 2) -1/2) (fma (* -1 (pow N 3)) 1/3 (* -1 N))) 4.654 * [taylor]: Taking taylor expansion of (* (pow N 2) -1/2) in N 4.654 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.654 * [taylor]: Taking taylor expansion of N in N 4.654 * [backup-simplify]: Simplify 0 into 0 4.654 * [backup-simplify]: Simplify 1 into 1 4.654 * [taylor]: Taking taylor expansion of -1/2 in N 4.654 * [backup-simplify]: Simplify -1/2 into -1/2 4.654 * [taylor]: Taking taylor expansion of (fma (* -1 (pow N 3)) 1/3 (* -1 N)) in N 4.654 * [taylor]: Rewrote expression to (+ (* (* -1 (pow N 3)) 1/3) (* -1 N)) 4.654 * [taylor]: Taking taylor expansion of (* (* -1 (pow N 3)) 1/3) in N 4.654 * [taylor]: Taking taylor expansion of (* -1 (pow N 3)) in N 4.654 * [taylor]: Taking taylor expansion of -1 in N 4.654 * [backup-simplify]: Simplify -1 into -1 4.654 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.654 * [taylor]: Taking taylor expansion of N in N 4.654 * [backup-simplify]: Simplify 0 into 0 4.654 * [backup-simplify]: Simplify 1 into 1 4.654 * [taylor]: Taking taylor expansion of 1/3 in N 4.654 * [backup-simplify]: Simplify 1/3 into 1/3 4.654 * [taylor]: Taking taylor expansion of (* -1 N) in N 4.654 * [taylor]: Taking taylor expansion of -1 in N 4.654 * [backup-simplify]: Simplify -1 into -1 4.654 * [taylor]: Taking taylor expansion of N in N 4.654 * [backup-simplify]: Simplify 0 into 0 4.654 * [backup-simplify]: Simplify 1 into 1 4.655 * [backup-simplify]: Simplify (* -1 0) into 0 4.655 * [backup-simplify]: Simplify (+ 0 0) into 0 4.656 * [backup-simplify]: Simplify (+ 0 0) into 0 4.656 * [backup-simplify]: Simplify 0 into 0 4.657 * [backup-simplify]: Simplify (+ (* -1 1) (* 0 0)) into -1 4.657 * [backup-simplify]: Simplify (+ 0 -1) into -1 4.657 * [backup-simplify]: Simplify (+ 0 -1) into -1 4.657 * [backup-simplify]: Simplify -1 into -1 4.658 * [backup-simplify]: Simplify (* 1 1) into 1 4.658 * [backup-simplify]: Simplify (* 1 -1/2) into -1/2 4.659 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 1) (* 0 0))) into 0 4.660 * [backup-simplify]: Simplify (+ 0 0) into 0 4.660 * [backup-simplify]: Simplify (+ -1/2 0) into -1/2 4.660 * [backup-simplify]: Simplify -1/2 into -1/2 4.661 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.661 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 -1/2)) into 0 4.662 * [backup-simplify]: Simplify (* 1 1) into 1 4.662 * [backup-simplify]: Simplify (* 1 1) into 1 4.663 * [backup-simplify]: Simplify (* -1 1) into -1 4.663 * [backup-simplify]: Simplify (* -1 1/3) into -1/3 4.664 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 1) (* 0 0)))) into 0 4.670 * [backup-simplify]: Simplify (+ -1/3 0) into -1/3 4.671 * [backup-simplify]: Simplify (+ 0 -1/3) into -1/3 4.671 * [backup-simplify]: Simplify -1/3 into -1/3 4.671 * [backup-simplify]: Simplify (+ (* -1/3 (pow (/ 1 (- N)) 3)) (+ (* -1/2 (pow (/ 1 (- N)) 2)) (* -1 (/ 1 (- N))))) into (- (+ (* 1/3 (/ 1 (pow N 3))) (/ 1 N)) (* 1/2 (/ 1 (pow N 2)))) 4.671 * * * * [progress]: [ 2 / 4 ] generating series at (2 3 1 1) 4.671 * [backup-simplify]: Simplify (/ (/ 1 N) N) into (/ 1 (pow N 2)) 4.671 * [approximate]: Taking taylor expansion of (/ 1 (pow N 2)) in (N) around 0 4.671 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.671 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.671 * [taylor]: Taking taylor expansion of N in N 4.671 * [backup-simplify]: Simplify 0 into 0 4.671 * [backup-simplify]: Simplify 1 into 1 4.672 * [backup-simplify]: Simplify (* 1 1) into 1 4.672 * [backup-simplify]: Simplify (/ 1 1) into 1 4.672 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.672 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.672 * [taylor]: Taking taylor expansion of N in N 4.672 * [backup-simplify]: Simplify 0 into 0 4.672 * [backup-simplify]: Simplify 1 into 1 4.672 * [backup-simplify]: Simplify (* 1 1) into 1 4.672 * [backup-simplify]: Simplify (/ 1 1) into 1 4.672 * [backup-simplify]: Simplify 1 into 1 4.673 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.673 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.673 * [backup-simplify]: Simplify 0 into 0 4.674 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.674 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.674 * [backup-simplify]: Simplify 0 into 0 4.675 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.676 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.676 * [backup-simplify]: Simplify 0 into 0 4.676 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.677 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.677 * [backup-simplify]: Simplify 0 into 0 4.677 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.678 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.678 * [backup-simplify]: Simplify 0 into 0 4.679 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.680 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.680 * [backup-simplify]: Simplify 0 into 0 4.680 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 2)) into (/ 1 (pow N 2)) 4.680 * [backup-simplify]: Simplify (/ (/ 1 (/ 1 N)) (/ 1 N)) into (pow N 2) 4.680 * [approximate]: Taking taylor expansion of (pow N 2) in (N) around 0 4.680 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.680 * [taylor]: Taking taylor expansion of N in N 4.680 * [backup-simplify]: Simplify 0 into 0 4.680 * [backup-simplify]: Simplify 1 into 1 4.680 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.680 * [taylor]: Taking taylor expansion of N in N 4.680 * [backup-simplify]: Simplify 0 into 0 4.680 * [backup-simplify]: Simplify 1 into 1 4.680 * [backup-simplify]: Simplify (* 1 1) into 1 4.680 * [backup-simplify]: Simplify 1 into 1 4.681 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.681 * [backup-simplify]: Simplify 0 into 0 4.681 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.681 * [backup-simplify]: Simplify 0 into 0 4.682 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.682 * [backup-simplify]: Simplify 0 into 0 4.682 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.682 * [backup-simplify]: Simplify 0 into 0 4.683 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.683 * [backup-simplify]: Simplify 0 into 0 4.684 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.684 * [backup-simplify]: Simplify 0 into 0 4.684 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 2)) into (/ 1 (pow N 2)) 4.684 * [backup-simplify]: Simplify (/ (/ 1 (/ 1 (- N))) (/ 1 (- N))) into (pow N 2) 4.684 * [approximate]: Taking taylor expansion of (pow N 2) in (N) around 0 4.684 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.684 * [taylor]: Taking taylor expansion of N in N 4.684 * [backup-simplify]: Simplify 0 into 0 4.684 * [backup-simplify]: Simplify 1 into 1 4.684 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.684 * [taylor]: Taking taylor expansion of N in N 4.684 * [backup-simplify]: Simplify 0 into 0 4.684 * [backup-simplify]: Simplify 1 into 1 4.685 * [backup-simplify]: Simplify (* 1 1) into 1 4.685 * [backup-simplify]: Simplify 1 into 1 4.685 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.685 * [backup-simplify]: Simplify 0 into 0 4.686 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.686 * [backup-simplify]: Simplify 0 into 0 4.686 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.686 * [backup-simplify]: Simplify 0 into 0 4.687 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.687 * [backup-simplify]: Simplify 0 into 0 4.688 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.688 * [backup-simplify]: Simplify 0 into 0 4.689 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.689 * [backup-simplify]: Simplify 0 into 0 4.689 * [backup-simplify]: Simplify (* 1 (pow (/ 1 (- N)) 2)) into (/ 1 (pow N 2)) 4.689 * * * * [progress]: [ 3 / 4 ] generating series at (2 1) 4.689 * [backup-simplify]: Simplify (/ (/ 1 N) N) into (/ 1 (pow N 2)) 4.689 * [approximate]: Taking taylor expansion of (/ 1 (pow N 2)) in (N) around 0 4.689 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.689 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.689 * [taylor]: Taking taylor expansion of N in N 4.689 * [backup-simplify]: Simplify 0 into 0 4.689 * [backup-simplify]: Simplify 1 into 1 4.689 * [backup-simplify]: Simplify (* 1 1) into 1 4.690 * [backup-simplify]: Simplify (/ 1 1) into 1 4.690 * [taylor]: Taking taylor expansion of (/ 1 (pow N 2)) in N 4.690 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.690 * [taylor]: Taking taylor expansion of N in N 4.690 * [backup-simplify]: Simplify 0 into 0 4.690 * [backup-simplify]: Simplify 1 into 1 4.690 * [backup-simplify]: Simplify (* 1 1) into 1 4.690 * [backup-simplify]: Simplify (/ 1 1) into 1 4.690 * [backup-simplify]: Simplify 1 into 1 4.691 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.691 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.691 * [backup-simplify]: Simplify 0 into 0 4.692 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.692 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.692 * [backup-simplify]: Simplify 0 into 0 4.693 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.693 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.693 * [backup-simplify]: Simplify 0 into 0 4.694 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.694 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.694 * [backup-simplify]: Simplify 0 into 0 4.695 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.696 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.696 * [backup-simplify]: Simplify 0 into 0 4.697 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.697 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.697 * [backup-simplify]: Simplify 0 into 0 4.697 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 2)) into (/ 1 (pow N 2)) 4.697 * [backup-simplify]: Simplify (/ (/ 1 (/ 1 N)) (/ 1 N)) into (pow N 2) 4.697 * [approximate]: Taking taylor expansion of (pow N 2) in (N) around 0 4.698 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.698 * [taylor]: Taking taylor expansion of N in N 4.698 * [backup-simplify]: Simplify 0 into 0 4.698 * [backup-simplify]: Simplify 1 into 1 4.698 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.698 * [taylor]: Taking taylor expansion of N in N 4.698 * [backup-simplify]: Simplify 0 into 0 4.698 * [backup-simplify]: Simplify 1 into 1 4.698 * [backup-simplify]: Simplify (* 1 1) into 1 4.698 * [backup-simplify]: Simplify 1 into 1 4.699 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.699 * [backup-simplify]: Simplify 0 into 0 4.700 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.700 * [backup-simplify]: Simplify 0 into 0 4.701 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.701 * [backup-simplify]: Simplify 0 into 0 4.703 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.703 * [backup-simplify]: Simplify 0 into 0 4.704 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.704 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.706 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 2)) into (/ 1 (pow N 2)) 4.706 * [backup-simplify]: Simplify (/ (/ 1 (/ 1 (- N))) (/ 1 (- N))) into (pow N 2) 4.706 * [approximate]: Taking taylor expansion of (pow N 2) in (N) around 0 4.706 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.706 * [taylor]: Taking taylor expansion of N in N 4.706 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify 1 into 1 4.706 * [taylor]: Taking taylor expansion of (pow N 2) in N 4.706 * [taylor]: Taking taylor expansion of N in N 4.706 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify 1 into 1 4.707 * [backup-simplify]: Simplify (* 1 1) into 1 4.707 * [backup-simplify]: Simplify 1 into 1 4.708 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.708 * [backup-simplify]: Simplify 0 into 0 4.708 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.709 * [backup-simplify]: Simplify 0 into 0 4.710 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.710 * [backup-simplify]: Simplify 0 into 0 4.711 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.711 * [backup-simplify]: Simplify 0 into 0 4.712 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.712 * [backup-simplify]: Simplify 0 into 0 4.714 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.714 * [backup-simplify]: Simplify 0 into 0 4.714 * [backup-simplify]: Simplify (* 1 (pow (/ 1 (- N)) 2)) into (/ 1 (pow N 2)) 4.714 * * * * [progress]: [ 4 / 4 ] generating series at (2 3 1) 4.714 * [backup-simplify]: Simplify (/ (/ (/ 1 N) N) N) into (/ 1 (pow N 3)) 4.714 * [approximate]: Taking taylor expansion of (/ 1 (pow N 3)) in (N) around 0 4.714 * [taylor]: Taking taylor expansion of (/ 1 (pow N 3)) in N 4.714 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.714 * [taylor]: Taking taylor expansion of N in N 4.714 * [backup-simplify]: Simplify 0 into 0 4.715 * [backup-simplify]: Simplify 1 into 1 4.715 * [backup-simplify]: Simplify (* 1 1) into 1 4.715 * [backup-simplify]: Simplify (* 1 1) into 1 4.716 * [backup-simplify]: Simplify (/ 1 1) into 1 4.716 * [taylor]: Taking taylor expansion of (/ 1 (pow N 3)) in N 4.716 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.716 * [taylor]: Taking taylor expansion of N in N 4.716 * [backup-simplify]: Simplify 0 into 0 4.716 * [backup-simplify]: Simplify 1 into 1 4.716 * [backup-simplify]: Simplify (* 1 1) into 1 4.717 * [backup-simplify]: Simplify (* 1 1) into 1 4.717 * [backup-simplify]: Simplify (/ 1 1) into 1 4.717 * [backup-simplify]: Simplify 1 into 1 4.718 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.718 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.719 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.719 * [backup-simplify]: Simplify 0 into 0 4.720 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.721 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.722 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.722 * [backup-simplify]: Simplify 0 into 0 4.723 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.724 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.725 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.725 * [backup-simplify]: Simplify 0 into 0 4.726 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.727 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.727 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.727 * [backup-simplify]: Simplify 0 into 0 4.728 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.729 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.729 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.729 * [backup-simplify]: Simplify 0 into 0 4.730 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.731 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.731 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.731 * [backup-simplify]: Simplify 0 into 0 4.732 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 3)) into (/ 1 (pow N 3)) 4.732 * [backup-simplify]: Simplify (/ (/ (/ 1 (/ 1 N)) (/ 1 N)) (/ 1 N)) into (pow N 3) 4.732 * [approximate]: Taking taylor expansion of (pow N 3) in (N) around 0 4.732 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.732 * [taylor]: Taking taylor expansion of N in N 4.732 * [backup-simplify]: Simplify 0 into 0 4.732 * [backup-simplify]: Simplify 1 into 1 4.732 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.732 * [taylor]: Taking taylor expansion of N in N 4.732 * [backup-simplify]: Simplify 0 into 0 4.732 * [backup-simplify]: Simplify 1 into 1 4.732 * [backup-simplify]: Simplify (* 1 1) into 1 4.732 * [backup-simplify]: Simplify (* 1 1) into 1 4.732 * [backup-simplify]: Simplify 1 into 1 4.733 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.733 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.733 * [backup-simplify]: Simplify 0 into 0 4.734 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.734 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.734 * [backup-simplify]: Simplify 0 into 0 4.735 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.735 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.735 * [backup-simplify]: Simplify 0 into 0 4.736 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.737 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.737 * [backup-simplify]: Simplify 0 into 0 4.738 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.738 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.738 * [backup-simplify]: Simplify 0 into 0 4.739 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.740 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.740 * [backup-simplify]: Simplify 0 into 0 4.740 * [backup-simplify]: Simplify (* 1 (pow (/ 1 N) 3)) into (/ 1 (pow N 3)) 4.740 * [backup-simplify]: Simplify (/ (/ (/ 1 (/ 1 (- N))) (/ 1 (- N))) (/ 1 (- N))) into (* -1 (pow N 3)) 4.740 * [approximate]: Taking taylor expansion of (* -1 (pow N 3)) in (N) around 0 4.740 * [taylor]: Taking taylor expansion of (* -1 (pow N 3)) in N 4.740 * [taylor]: Taking taylor expansion of -1 in N 4.740 * [backup-simplify]: Simplify -1 into -1 4.740 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.740 * [taylor]: Taking taylor expansion of N in N 4.740 * [backup-simplify]: Simplify 0 into 0 4.740 * [backup-simplify]: Simplify 1 into 1 4.740 * [taylor]: Taking taylor expansion of (* -1 (pow N 3)) in N 4.740 * [taylor]: Taking taylor expansion of -1 in N 4.740 * [backup-simplify]: Simplify -1 into -1 4.740 * [taylor]: Taking taylor expansion of (pow N 3) in N 4.740 * [taylor]: Taking taylor expansion of N in N 4.740 * [backup-simplify]: Simplify 0 into 0 4.741 * [backup-simplify]: Simplify 1 into 1 4.741 * [backup-simplify]: Simplify (* 1 1) into 1 4.741 * [backup-simplify]: Simplify (* 1 1) into 1 4.741 * [backup-simplify]: Simplify (* -1 1) into -1 4.741 * [backup-simplify]: Simplify -1 into -1 4.742 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.742 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.743 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 1)) into 0 4.743 * [backup-simplify]: Simplify 0 into 0 4.743 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.744 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.744 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 1))) into 0 4.744 * [backup-simplify]: Simplify 0 into 0 4.745 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.745 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.746 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))) into 0 4.746 * [backup-simplify]: Simplify 0 into 0 4.747 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.748 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.748 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))) into 0 4.748 * [backup-simplify]: Simplify 0 into 0 4.749 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.750 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.751 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1)))))) into 0 4.751 * [backup-simplify]: Simplify 0 into 0 4.752 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.753 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.753 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (+ (* 0 0) (* 0 1))))))) into 0 4.754 * [backup-simplify]: Simplify 0 into 0 4.754 * [backup-simplify]: Simplify (* -1 (pow (/ 1 (- N)) 3)) into (/ 1 (pow N 3)) 4.754 * * * [progress]: simplifying candidates 4.754 * * * * [progress]: [ 1 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 2 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 3 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 4 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 5 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 6 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 7 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 8 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 9 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 10 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 11 / 376 ] simplifiying candidate #real (real->posit16 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))))> 4.754 * * * * [progress]: [ 12 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 13 / 376 ] simplifiying candidate # 4.754 * * * * [progress]: [ 14 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 15 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 16 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 17 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 18 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 19 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 20 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 21 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 22 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 23 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 24 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 25 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 26 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 27 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 28 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 29 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 30 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 31 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 32 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 33 / 376 ] simplifiying candidate # 4.755 * * * * [progress]: [ 34 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 35 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 36 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 37 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 38 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 39 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 40 / 376 ] simplifiying candidate # 4.756 * * * * [progress]: [ 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simplifiying candidate # 4.780 * * * * [progress]: [ 363 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 364 / 376 ] simplifiying candidate #real (real->posit16 (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N))))> 4.780 * * * * [progress]: [ 365 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 366 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 367 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 368 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 369 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 370 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 371 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 372 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 373 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 374 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 375 / 376 ] simplifiying candidate # 4.780 * * * * [progress]: [ 376 / 376 ] simplifiying candidate # 4.789 * [simplify]: Simplifying (expm1 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (log1p (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (* (/ (/ 1 N) N) -1/2), (log (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (exp (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (* (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))), (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (* (* (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (real->posit16 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (expm1 (/ (/ 1 N) N)), (log1p (/ 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(/ 1 1), (/ (/ 1 N) N), (/ 1 N), (/ N (/ 1 N)), (/ (/ 1 N) (* (cbrt N) (cbrt N))), (/ (/ 1 N) (sqrt N)), (/ (/ 1 N) 1), (/ N (cbrt (/ 1 N))), (/ N (sqrt (/ 1 N))), (/ N (/ (cbrt 1) (cbrt N))), (/ N (/ (cbrt 1) (sqrt N))), (/ N (/ (cbrt 1) N)), (/ N (/ (sqrt 1) (cbrt N))), (/ N (/ (sqrt 1) (sqrt N))), (/ N (/ (sqrt 1) N)), (/ N (/ 1 (cbrt N))), (/ N (/ 1 (sqrt N))), (/ N (/ 1 N)), (/ N (/ 1 N)), (/ N (/ 1 N)), (* N N), (real->posit16 (/ (/ 1 N) N)), (expm1 (/ (/ 1 N) N)), (log1p (/ (/ 1 N) N)), (- -1 1), (- (- 1) 1), (- (- (log N)) (log N)), (- (- 0 (log N)) (log N)), (- (- (log 1) (log N)) (log N)), (- (log (/ 1 N)) (log N)), (log (/ (/ 1 N) N)), (exp (/ (/ 1 N) N)), (/ (/ (* (* 1 1) 1) (* (* N N) N)) (* (* N N) N)), (/ (* (* (/ 1 N) (/ 1 N)) (/ 1 N)) (* (* N N) N)), (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))), (cbrt (/ (/ 1 N) N)), (* (* (/ (/ 1 N) N) (/ (/ 1 N) N)) (/ (/ 1 N) N)), (sqrt (/ (/ 1 N) N)), (sqrt (/ (/ 1 N) N)), (- (/ 1 N)), (- N), (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) 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3)), (/ 1 (pow N 3)) 4.804 * * [simplify]: iteration 1: (431 enodes) 5.132 * * [simplify]: Extracting #0: cost 164 inf + 0 5.134 * * [simplify]: Extracting #1: cost 419 inf + 44 5.137 * * [simplify]: Extracting #2: cost 413 inf + 2924 5.148 * * [simplify]: Extracting #3: cost 204 inf + 41350 5.172 * * [simplify]: Extracting #4: cost 31 inf + 79460 5.187 * * [simplify]: Extracting #5: cost 2 inf + 86483 5.215 * * [simplify]: Extracting #6: cost 0 inf + 86912 5.242 * * [simplify]: Extracting #7: cost 0 inf + 86872 5.274 * [simplify]: Simplified to (expm1 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (log1p (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (* -1/2 (/ (/ 1 N) N)), (log (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (exp (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))), (* (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 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(sqrt N))) (cbrt N)), (* (* (/ N 1) (sqrt N)) (sqrt N)), (/ N (/ (/ 1 (sqrt N)) N)), (* (/ N (/ 1 N)) (cbrt N)), (* (/ N (/ 1 N)) (sqrt N)), (/ N (/ (/ 1 N) N)), (* (/ N (/ 1 N)) (cbrt N)), (* (/ N (/ 1 N)) (sqrt N)), (/ N (/ (/ 1 N) N)), (* (/ N (/ 1 N)) (cbrt N)), (* (/ N (/ 1 N)) (sqrt N)), (/ N (/ (/ 1 N) N)), (/ N (/ (/ 1 N) N)), (/ N (/ 1 N)), (* N N), (real->posit16 (/ (/ (/ 1 N) N) N)), (- (+ (/ 1/3 (* N (* N N))) (/ 1 N)) (/ 1/2 (* N N))), (+ (/ 1/3 (* N (* N N))) (- (/ 1 N) (/ 1/2 (* N N)))), (+ (/ 1/3 (* N (* N N))) (- (/ 1 N) (/ 1/2 (* N N)))), (/ (/ 1 N) N), (/ (/ 1 N) N), (/ (/ 1 N) N), (/ (/ 1 N) N), (/ (/ 1 N) N), (/ (/ 1 N) N), (* (/ (/ 1 N) N) (/ 1 N)), (* (/ (/ 1 N) N) (/ 1 N)), (* (/ (/ 1 N) N) (/ 1 N)) 5.276 * * * * [progress]: [ 1 / 376 ] simplifiying candidate # 5.276 * [simplify]: Simplified (2 1) to (λ (N) (log1p (expm1 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.276 * * * * [progress]: [ 2 / 376 ] simplifiying candidate # 5.276 * [simplify]: Simplified (2 1) to (λ (N) (expm1 (log1p (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.276 * * * * [progress]: [ 3 / 376 ] simplifiying candidate # 5.276 * [simplify]: Simplified (2 1) to (λ (N) (+ (* -1/2 (/ (/ 1 N) N)) (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.277 * * * * [progress]: [ 4 / 376 ] simplifiying candidate # 5.277 * * * * [progress]: [ 5 / 376 ] simplifiying candidate # 5.277 * [simplify]: Simplified (2 1) to (λ (N) (exp (log (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.277 * * * * [progress]: [ 6 / 376 ] simplifiying candidate # 5.277 * [simplify]: Simplified (2 1) to (λ (N) (log (exp (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.277 * * * * [progress]: [ 7 / 376 ] simplifiying candidate # 5.277 * [simplify]: Simplified (2 1) to (λ (N) (* (* (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.277 * [simplify]: Simplified (2 2) to (λ (N) (* (* (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))) (cbrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.277 * * * * [progress]: [ 8 / 376 ] simplifiying candidate # 5.277 * [simplify]: Simplified (2 1) to (λ (N) (cbrt (* (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))) (* (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))))) 5.278 * * * * [progress]: [ 9 / 376 ] simplifiying candidate # 5.278 * [simplify]: Simplified (2 1) to (λ (N) (* (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.278 * [simplify]: Simplified (2 2) to (λ (N) (* (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) (sqrt (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.278 * * * * [progress]: [ 10 / 376 ] simplifiying candidate # 5.278 * * * * [progress]: [ 11 / 376 ] simplifiying candidate #real (real->posit16 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))))> 5.278 * [simplify]: Simplified (2 1) to (λ (N) (posit16->real (real->posit16 (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))))) 5.278 * * * * [progress]: [ 12 / 376 ] simplifiying candidate # 5.278 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (log1p (expm1 (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.278 * * * * [progress]: [ 13 / 376 ] simplifiying candidate # 5.278 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (expm1 (log1p (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.278 * * * * [progress]: [ 14 / 376 ] simplifiying candidate # 5.279 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (pow N -2) N) 1/3 (/ 1 N)))) 5.279 * * * * [progress]: [ 15 / 376 ] simplifiying candidate # 5.279 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (pow N -2) N) 1/3 (/ 1 N)))) 5.279 * * * * [progress]: [ 16 / 376 ] simplifiying candidate # 5.279 * * * * [progress]: [ 17 / 376 ] simplifiying candidate # 5.279 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (exp (- (- (log N)) (log N))) N) 1/3 (/ 1 N)))) 5.279 * * * * [progress]: [ 18 / 376 ] simplifiying candidate # 5.279 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (exp (- (- (log N)) (log N))) N) 1/3 (/ 1 N)))) 5.279 * * * * [progress]: [ 19 / 376 ] simplifiying candidate # 5.279 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (exp (- (- (log N)) (log N))) N) 1/3 (/ 1 N)))) 5.280 * * * * [progress]: [ 20 / 376 ] simplifiying candidate # 5.280 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (exp (- (- (log N)) (log N))) N) 1/3 (/ 1 N)))) 5.280 * * * * [progress]: [ 21 / 376 ] simplifiying candidate # 5.280 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (exp (- (- (log N)) (log N))) N) 1/3 (/ 1 N)))) 5.280 * * * * [progress]: [ 22 / 376 ] simplifiying candidate # 5.280 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (log (exp (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.280 * * * * [progress]: [ 23 / 376 ] simplifiying candidate # 5.280 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (cbrt (/ 1 (* (* N (* N N)) (* N (* N N))))) N) 1/3 (/ 1 N)))) 5.280 * * * * [progress]: [ 24 / 376 ] simplifiying candidate # 5.280 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (cbrt (/ (* (/ 1 N) (/ 1 N)) (/ (* N (* N N)) (/ 1 N)))) N) 1/3 (/ 1 N)))) 5.281 * * * * [progress]: [ 25 / 376 ] simplifiying candidate # 5.281 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (cbrt (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.281 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (cbrt (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.281 * * * * [progress]: [ 26 / 376 ] simplifiying candidate # 5.281 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (cbrt (* (/ (/ 1 N) N) (* (/ (/ 1 N) N) (/ (/ 1 N) N)))) N) 1/3 (/ 1 N)))) 5.281 * * * * [progress]: [ 27 / 376 ] simplifiying candidate # 5.281 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (sqrt (/ (/ 1 N) N)) (sqrt (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.281 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (sqrt (/ (/ 1 N) N)) (sqrt (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.281 * * * * [progress]: [ 28 / 376 ] simplifiying candidate # 5.281 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ -1 N) (- N)) N) 1/3 (/ 1 N)))) 5.282 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (- (/ 1 N)) (- N)) N) 1/3 (/ 1 N)))) 5.282 * * * * [progress]: [ 29 / 376 ] simplifiying candidate # 5.282 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (cbrt (/ 1 N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.282 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (cbrt (/ 1 N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.282 * * * * [progress]: [ 30 / 376 ] simplifiying candidate # 5.282 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (cbrt (/ 1 N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.282 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (cbrt (/ 1 N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.282 * * * * [progress]: [ 31 / 376 ] simplifiying candidate # 5.282 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (cbrt (/ 1 N)) N)) N) 1/3 (/ 1 N)))) 5.282 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (cbrt (/ 1 N)) N)) N) 1/3 (/ 1 N)))) 5.282 * * * * [progress]: [ 32 / 376 ] simplifiying candidate # 5.282 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.282 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.283 * * * * [progress]: [ 33 / 376 ] simplifiying candidate # 5.283 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (sqrt (/ 1 N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.283 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (sqrt (/ 1 N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.283 * * * * [progress]: [ 34 / 376 ] simplifiying candidate # 5.283 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (sqrt (/ 1 N)) (/ (sqrt (/ 1 N)) N)) N) 1/3 (/ 1 N)))) 5.283 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (sqrt (/ 1 N)) (/ (sqrt (/ 1 N)) N)) N) 1/3 (/ 1 N)))) 5.283 * * * * [progress]: [ 35 / 376 ] simplifiying candidate # 5.283 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (cbrt 1) (cbrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.283 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) N) 1/3 (/ 1 N)))) 5.283 * * * * [progress]: [ 36 / 376 ] simplifiying candidate # 5.283 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (cbrt 1) (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.283 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.283 * * * * [progress]: [ 37 / 376 ] simplifiying candidate # 5.284 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (cbrt 1) (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.284 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.284 * * * * [progress]: [ 38 / 376 ] simplifiying candidate # 5.284 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (cbrt 1) (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.284 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.284 * * * * [progress]: [ 39 / 376 ] simplifiying candidate # 5.284 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (cbrt 1) (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.284 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.284 * * * * [progress]: [ 40 / 376 ] simplifiying candidate # 5.284 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ (cbrt 1) (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.284 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.284 * * * * [progress]: [ 41 / 376 ] simplifiying candidate # 5.284 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (cbrt 1) N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.285 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.285 * * * * [progress]: [ 42 / 376 ] simplifiying candidate # 5.285 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ (cbrt 1) N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.285 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.285 * * * * [progress]: [ 43 / 376 ] simplifiying candidate # 5.285 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ (cbrt 1) N) N)) N) 1/3 (/ 1 N)))) 5.285 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.285 * * * * [progress]: [ 44 / 376 ] simplifiying candidate # 5.285 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (sqrt 1) (cbrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.285 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) N) 1/3 (/ 1 N)))) 5.285 * * * * [progress]: [ 45 / 376 ] simplifiying candidate # 5.285 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (sqrt 1) (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.285 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ 1 (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.286 * * * * [progress]: [ 46 / 376 ] simplifiying candidate # 5.286 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (sqrt 1) (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.286 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.286 * * * * [progress]: [ 47 / 376 ] simplifiying candidate # 5.286 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (sqrt 1) (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.286 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.286 * * * * [progress]: [ 48 / 376 ] simplifiying candidate # 5.286 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (sqrt 1) (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.286 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.286 * * * * [progress]: [ 49 / 376 ] simplifiying candidate # 5.286 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ (sqrt 1) (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.286 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (sqrt 1) (sqrt N)) 1) (/ (/ 1 (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.287 * * * * [progress]: [ 50 / 376 ] simplifiying candidate # 5.287 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (sqrt 1) N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.287 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.287 * * * * [progress]: [ 51 / 376 ] simplifiying candidate # 5.287 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ (sqrt 1) N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.287 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.287 * * * * [progress]: [ 52 / 376 ] simplifiying candidate # 5.287 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ (sqrt 1) N) N)) N) 1/3 (/ 1 N)))) 5.287 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.287 * * * * [progress]: [ 53 / 376 ] simplifiying candidate # 5.287 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.287 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) N) 1/3 (/ 1 N)))) 5.287 * * * * [progress]: [ 54 / 376 ] simplifiying candidate # 5.287 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.288 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.288 * * * * [progress]: [ 55 / 376 ] simplifiying candidate # 5.288 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.288 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) N) 1/3 (/ 1 N)))) 5.288 * * * * [progress]: [ 56 / 376 ] simplifiying candidate # 5.288 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.288 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) N) 1/3 (/ 1 N)))) 5.288 * * * * [progress]: [ 57 / 376 ] simplifiying candidate # 5.288 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.288 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) N) 1/3 (/ 1 N)))) 5.288 * * * * [progress]: [ 58 / 376 ] simplifiying candidate # 5.288 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.288 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) N) 1/3 (/ 1 N)))) 5.289 * * * * [progress]: [ 59 / 376 ] simplifiying candidate # 5.289 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.289 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.289 * * * * [progress]: [ 60 / 376 ] simplifiying candidate # 5.289 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.289 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.289 * * * * [progress]: [ 61 / 376 ] simplifiying candidate # 5.289 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.289 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.289 * * * * [progress]: [ 62 / 376 ] simplifiying candidate # 5.289 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.289 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.289 * * * * [progress]: [ 63 / 376 ] simplifiying candidate # 5.289 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.290 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.290 * * * * [progress]: [ 64 / 376 ] simplifiying candidate # 5.290 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.290 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.290 * * * * [progress]: [ 65 / 376 ] simplifiying candidate # 5.290 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.290 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) N) 1/3 (/ 1 N)))) 5.290 * * * * [progress]: [ 66 / 376 ] simplifiying candidate # 5.290 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.290 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) N) 1/3 (/ 1 N)))) 5.290 * * * * [progress]: [ 67 / 376 ] simplifiying candidate # 5.290 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.290 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* 1 (/ (/ 1 N) N)) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 68 / 376 ] simplifiying candidate # 5.291 * * * * [progress]: [ 69 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (/ 1 N) (/ 1 N)) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 70 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 71 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (/ 1 N) (* (cbrt N) (cbrt N))) (cbrt N)) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 72 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (/ 1 N) (sqrt N)) (sqrt N)) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 73 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 74 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ N (cbrt (/ 1 N)))) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 75 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (sqrt (/ 1 N)) (/ N (sqrt (/ 1 N)))) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 76 / 376 ] simplifiying candidate # 5.291 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) N) 1/3 (/ 1 N)))) 5.291 * * * * [progress]: [ 77 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (sqrt N)) (* (/ N 1) (sqrt N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 78 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) 1) (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 79 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 80 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (sqrt N)) (/ N (/ 1 (sqrt N)))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 81 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) 1) (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 82 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 83 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (sqrt N)) (/ N (/ 1 (sqrt N)))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 84 / 376 ] simplifiying candidate # 5.292 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 1) (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.292 * * * * [progress]: [ 85 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 86 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (/ N (/ 1 N))) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 87 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 3 1 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (* N N)) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 88 / 376 ] simplifiying candidate #real (real->posit16 (/ (/ 1 N) N))) N) 1/3 (/ 1 N))))> 5.293 * [simplify]: Simplified (2 3 1 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (posit16->real (real->posit16 (/ (/ 1 N) N))) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 89 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (log1p (expm1 (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 90 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (expm1 (log1p (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 91 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (pow N -2) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 92 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (pow N -2) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 93 / 376 ] simplifiying candidate # 5.293 * * * * [progress]: [ 94 / 376 ] simplifiying candidate # 5.293 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (exp (- (- (log N)) (log N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.293 * * * * [progress]: [ 95 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (exp (- (- (log N)) (log N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 96 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (exp (- (- (log N)) (log N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 97 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (exp (- (- (log N)) (log N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 98 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (exp (- (- (log N)) (log N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 99 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (log (exp (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 100 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (cbrt (/ 1 (* (* N (* N N)) (* N (* N N))))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 101 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (cbrt (/ (* (/ 1 N) (/ 1 N)) (/ (* N (* N N)) (/ 1 N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 102 / 376 ] simplifiying candidate # 5.294 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (cbrt (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (cbrt (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.294 * * * * [progress]: [ 103 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (cbrt (* (/ (/ 1 N) N) (* (/ (/ 1 N) N) (/ (/ 1 N) N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * * * * [progress]: [ 104 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (sqrt (/ (/ 1 N) N)) (sqrt (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (sqrt (/ (/ 1 N) N)) (sqrt (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * * * * [progress]: [ 105 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (/ (/ -1 N) (- N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (- (/ 1 N)) (- N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * * * * [progress]: [ 106 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (cbrt (/ 1 N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (cbrt (/ 1 N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * * * * [progress]: [ 107 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (cbrt (/ 1 N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (cbrt (/ 1 N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * * * * [progress]: [ 108 / 376 ] simplifiying candidate # 5.295 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (cbrt (/ 1 N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.295 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (cbrt (/ 1 N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * * * * [progress]: [ 109 / 376 ] simplifiying candidate # 5.296 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * * * * [progress]: [ 110 / 376 ] simplifiying candidate # 5.296 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (sqrt (/ 1 N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (sqrt (/ 1 N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * * * * [progress]: [ 111 / 376 ] simplifiying candidate # 5.296 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (sqrt (/ 1 N)) (/ (sqrt (/ 1 N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (sqrt (/ 1 N)) (/ (sqrt (/ 1 N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * * * * [progress]: [ 112 / 376 ] simplifiying candidate # 5.296 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (cbrt 1) (cbrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.296 * * * * [progress]: [ 113 / 376 ] simplifiying candidate # 5.296 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (cbrt 1) (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * * * * [progress]: [ 114 / 376 ] simplifiying candidate # 5.297 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (cbrt 1) (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * * * * [progress]: [ 115 / 376 ] simplifiying candidate # 5.297 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (cbrt 1) (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * * * * [progress]: [ 116 / 376 ] simplifiying candidate # 5.297 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (cbrt 1) (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * * * * [progress]: [ 117 / 376 ] simplifiying candidate # 5.297 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ (cbrt 1) (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.297 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * * * * [progress]: [ 118 / 376 ] simplifiying candidate # 5.298 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (cbrt 1) N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * * * * [progress]: [ 119 / 376 ] simplifiying candidate # 5.298 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ (cbrt 1) N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * * * * [progress]: [ 120 / 376 ] simplifiying candidate # 5.298 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* 1 (/ (/ (cbrt 1) N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * * * * [progress]: [ 121 / 376 ] simplifiying candidate # 5.298 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (sqrt 1) (cbrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.298 * * * * [progress]: [ 122 / 376 ] simplifiying candidate # 5.298 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (sqrt 1) (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ 1 (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * * * * [progress]: [ 123 / 376 ] simplifiying candidate # 5.299 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (sqrt 1) (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * * * * [progress]: [ 124 / 376 ] simplifiying candidate # 5.299 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (sqrt 1) (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * * * * [progress]: [ 125 / 376 ] simplifiying candidate # 5.299 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (sqrt 1) (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * * * * [progress]: [ 126 / 376 ] simplifiying candidate # 5.299 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ (sqrt 1) (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (sqrt 1) (sqrt N)) 1) (/ (/ 1 (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.299 * * * * [progress]: [ 127 / 376 ] simplifiying candidate # 5.300 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (sqrt 1) N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * * * * [progress]: [ 128 / 376 ] simplifiying candidate # 5.300 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ (sqrt 1) N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * * * * [progress]: [ 129 / 376 ] simplifiying candidate # 5.300 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* 1 (/ (/ (sqrt 1) N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * * * * [progress]: [ 130 / 376 ] simplifiying candidate # 5.300 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (/ 1 (cbrt N)) (/ 1 (cbrt N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * * * * [progress]: [ 131 / 376 ] simplifiying candidate # 5.300 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.300 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * * * * [progress]: [ 132 / 376 ] simplifiying candidate # 5.301 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 (cbrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * * * * [progress]: [ 133 / 376 ] simplifiying candidate # 5.301 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * * * * [progress]: [ 134 / 376 ] simplifiying candidate # 5.301 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * * * * [progress]: [ 135 / 376 ] simplifiying candidate # 5.301 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * * * * [progress]: [ 136 / 376 ] simplifiying candidate # 5.301 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.301 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * * * * [progress]: [ 137 / 376 ] simplifiying candidate # 5.302 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * * * * [progress]: [ 138 / 376 ] simplifiying candidate # 5.302 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * * * * [progress]: [ 139 / 376 ] simplifiying candidate # 5.302 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * * * * [progress]: [ 140 / 376 ] simplifiying candidate # 5.302 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * * * * [progress]: [ 141 / 376 ] simplifiying candidate # 5.302 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.302 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 142 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 143 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 144 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* 1 (/ (/ 1 N) N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 145 / 376 ] simplifiying candidate # 5.303 * * * * [progress]: [ 146 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (* (/ 1 N) (/ 1 N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 147 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ 1 (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.303 * * * * [progress]: [ 148 / 376 ] simplifiying candidate # 5.303 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (/ (/ (/ 1 N) (* (cbrt N) (cbrt N))) (cbrt N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 149 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (/ (/ (/ 1 N) (sqrt N)) (sqrt N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 150 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 151 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ N (cbrt (/ 1 N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 152 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (sqrt (/ 1 N)) (/ N (sqrt (/ 1 N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 153 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 154 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (* (cbrt 1) (cbrt 1)) (sqrt N)) (* (/ N 1) (sqrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 155 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (* (cbrt 1) (cbrt 1)) 1) (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.304 * * * * [progress]: [ 156 / 376 ] simplifiying candidate # 5.304 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 157 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (sqrt 1) (sqrt N)) (/ N (/ 1 (sqrt N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 158 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ (sqrt 1) 1) (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 159 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ 1 (* (cbrt N) (cbrt N))) (* (/ N 1) (cbrt N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 160 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ 1 (sqrt N)) (/ N (/ 1 (sqrt N)))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 161 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ (/ 1 1) (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 162 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ 1 (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 163 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ 1 (/ N (/ 1 N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 164 / 376 ] simplifiying candidate # 5.305 * [simplify]: Simplified (2 1 2) to (λ (N) (fma (/ 1 (* N N)) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.305 * * * * [progress]: [ 165 / 376 ] simplifiying candidate #real (real->posit16 (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N))))> 5.305 * [simplify]: Simplified (2 1 1) to (λ (N) (fma (posit16->real (real->posit16 (/ (/ 1 N) N))) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 166 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (log1p (expm1 (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 167 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (expm1 (log1p (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 168 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (pow N (- -2 1)) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 169 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (pow N (- -2 1)) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 170 / 376 ] simplifiying candidate # 5.306 * * * * [progress]: [ 171 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 172 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 173 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 174 / 376 ] simplifiying candidate # 5.306 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.306 * * * * [progress]: [ 175 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 176 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (exp (- (- (log N)) (+ (log N) (log N)))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 177 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (log (exp (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 178 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (cbrt (/ (/ 1 (* (* N (* N N)) (* N (* N N)))) (* N (* N N)))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 179 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (cbrt (/ (* (/ 1 N) (* (/ 1 N) (/ 1 N))) (* (* N (* N N)) (* N (* N N))))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 180 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (cbrt (/ (* (/ (/ 1 N) N) (* (/ (/ 1 N) N) (/ (/ 1 N) N))) (* N (* N N)))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 181 / 376 ] simplifiying candidate # 5.307 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ (/ (/ 1 N) N) N)) (cbrt (/ (/ (/ 1 N) N) N))) (cbrt (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.307 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ (/ (/ 1 N) N) N)) (cbrt (/ (/ (/ 1 N) N) N))) (cbrt (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.307 * * * * [progress]: [ 182 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (cbrt (* (* (/ (/ (/ 1 N) N) N) (/ (/ (/ 1 N) N) N)) (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.308 * * * * [progress]: [ 183 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ (/ (/ 1 N) N) N)) (sqrt (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.308 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ (/ (/ 1 N) N) N)) (sqrt (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.308 * * * * [progress]: [ 184 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (- (/ 1 N)) N) (- N)) 1/3 (/ 1 N)))) 5.308 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (- (/ (/ 1 N) N)) (- N)) 1/3 (/ 1 N)))) 5.308 * * * * [progress]: [ 185 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ (/ 1 N) N)) (cbrt N)) (/ (cbrt (/ (/ 1 N) N)) (cbrt N))) (/ (cbrt (/ (/ 1 N) N)) (cbrt N))) 1/3 (/ 1 N)))) 5.308 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ (/ 1 N) N)) (cbrt N)) (/ (cbrt (/ (/ 1 N) N)) (cbrt N))) (/ (cbrt (/ (/ 1 N) N)) (cbrt N))) 1/3 (/ 1 N)))) 5.308 * * * * [progress]: [ 186 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (cbrt (/ (/ 1 N) N)) (/ (sqrt N) (cbrt (/ (/ 1 N) N)))) (/ (cbrt (/ (/ 1 N) N)) (sqrt N))) 1/3 (/ 1 N)))) 5.308 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (sqrt N)) (/ (cbrt (/ (/ 1 N) N)) (sqrt N))) 1/3 (/ 1 N)))) 5.308 * * * * [progress]: [ 187 / 376 ] simplifiying candidate # 5.308 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (/ (cbrt (/ (/ 1 N) N)) N)) 1/3 (/ 1 N)))) 5.309 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (/ (cbrt (/ (/ 1 N) N)) N)) 1/3 (/ 1 N)))) 5.309 * * * * [progress]: [ 188 / 376 ] simplifiying candidate # 5.309 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ (/ 1 N) N)) (cbrt N)) (cbrt N)) (/ (sqrt (/ (/ 1 N) N)) (cbrt N))) 1/3 (/ 1 N)))) 5.309 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ (/ 1 N) N)) (cbrt N)) (cbrt N)) (/ (sqrt (/ (/ 1 N) N)) (cbrt N))) 1/3 (/ 1 N)))) 5.309 * * * * [progress]: [ 189 / 376 ] simplifiying candidate # 5.309 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ (/ 1 N) N)) (sqrt N)) (/ (sqrt (/ (/ 1 N) N)) (sqrt N))) 1/3 (/ 1 N)))) 5.309 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ (/ 1 N) N)) (sqrt N)) (/ (sqrt (/ (/ 1 N) N)) (sqrt N))) 1/3 (/ 1 N)))) 5.309 * * * * [progress]: [ 190 / 376 ] simplifiying candidate # 5.309 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ (/ 1 N) N)) (/ (sqrt (/ (/ 1 N) N)) N)) 1/3 (/ 1 N)))) 5.309 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ (/ 1 N) N)) (/ (sqrt (/ (/ 1 N) N)) N)) 1/3 (/ 1 N)))) 5.309 * * * * [progress]: [ 191 / 376 ] simplifiying candidate # 5.309 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (cbrt (/ 1 N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.309 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (cbrt (/ 1 N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.310 * * * * [progress]: [ 192 / 376 ] simplifiying candidate # 5.310 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (sqrt N)) (/ (/ (cbrt (/ 1 N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.310 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (sqrt N)) (/ (cbrt (/ 1 N)) (* (sqrt N) (cbrt N)))) 1/3 (/ 1 N)))) 5.310 * * * * [progress]: [ 193 / 376 ] simplifiying candidate # 5.310 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (/ (cbrt (/ 1 N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.310 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (/ (cbrt (/ 1 N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.311 * * * * [progress]: [ 194 / 376 ] simplifiying candidate # 5.311 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (cbrt (/ 1 N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.311 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (cbrt (/ 1 N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.311 * * * * [progress]: [ 195 / 376 ] simplifiying candidate # 5.311 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (* (sqrt N) (sqrt N))) (/ (/ (cbrt (/ 1 N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.312 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (sqrt N)) (/ (cbrt (/ 1 N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.312 * * * * [progress]: [ 196 / 376 ] simplifiying candidate # 5.312 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (/ (cbrt (/ 1 N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.312 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (/ (cbrt (/ 1 N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.312 * * * * [progress]: [ 197 / 376 ] simplifiying candidate # 5.312 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (/ (cbrt (/ 1 N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.312 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ (cbrt (/ 1 N)) (cbrt N)) (/ (cbrt (/ 1 N)) (cbrt N))) (/ (cbrt (/ 1 N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.313 * * * * [progress]: [ 198 / 376 ] simplifiying candidate # 5.313 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (/ (cbrt (/ 1 N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.313 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (/ (/ (cbrt (/ 1 N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.313 * * * * [progress]: [ 199 / 376 ] simplifiying candidate # 5.313 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (/ (cbrt (/ 1 N)) N) N)) 1/3 (/ 1 N)))) 5.314 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (/ (/ (cbrt (/ 1 N)) N) N)) 1/3 (/ 1 N)))) 5.314 * * * * [progress]: [ 200 / 376 ] simplifiying candidate # 5.314 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (sqrt (/ 1 N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.314 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N)))) 1/3 (/ 1 N)))) 5.314 * * * * [progress]: [ 201 / 376 ] simplifiying candidate # 5.314 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ (sqrt (/ 1 N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.314 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ (sqrt (/ 1 N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.315 * * * * [progress]: [ 202 / 376 ] simplifiying candidate # 5.315 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (/ (sqrt (/ 1 N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.315 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (* N (cbrt N)))) 1/3 (/ 1 N)))) 5.315 * * * * [progress]: [ 203 / 376 ] simplifiying candidate # 5.315 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (* (cbrt N) (cbrt N)) (sqrt N))) (/ (/ (sqrt (/ 1 N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.315 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.316 * * * * [progress]: [ 204 / 376 ] simplifiying candidate # 5.316 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (sqrt N) (sqrt N))) (/ (/ (sqrt (/ 1 N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.316 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (sqrt (/ 1 N)) (sqrt N)) (sqrt N)) (/ (sqrt (/ 1 N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.316 * * * * [progress]: [ 205 / 376 ] simplifiying candidate # 5.316 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (/ (sqrt (/ 1 N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.316 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (/ (sqrt (/ 1 N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.316 * * * * [progress]: [ 206 / 376 ] simplifiying candidate # 5.316 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (/ (sqrt (/ 1 N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.317 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (/ (sqrt (/ 1 N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.317 * * * * [progress]: [ 207 / 376 ] simplifiying candidate # 5.317 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (/ (sqrt (/ 1 N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.317 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (sqrt (/ 1 N)) (sqrt N)) (/ (/ (sqrt (/ 1 N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.317 * * * * [progress]: [ 208 / 376 ] simplifiying candidate # 5.317 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ 1 N)) (/ (/ (sqrt (/ 1 N)) N) N)) 1/3 (/ 1 N)))) 5.317 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (sqrt (/ 1 N)) (/ (sqrt (/ 1 N)) (* N N))) 1/3 (/ 1 N)))) 5.318 * * * * [progress]: [ 209 / 376 ] simplifiying candidate # 5.318 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (cbrt N) (cbrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.318 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (cbrt N) (cbrt N))) (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (cbrt N))) 1/3 (/ 1 N)))) 5.318 * * * * [progress]: [ 210 / 376 ] simplifiying candidate # 5.318 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (sqrt N)) (/ (/ (/ (cbrt 1) (cbrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.318 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (sqrt N)) (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N)))) 1/3 (/ 1 N)))) 5.319 * * * * [progress]: [ 211 / 376 ] simplifiying candidate # 5.319 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (cbrt 1) (cbrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.319 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* N (cbrt N)))) 1/3 (/ 1 N)))) 5.319 * * * * [progress]: [ 212 / 376 ] simplifiying candidate # 5.319 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (* (cbrt N) (cbrt N)) (sqrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.319 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.319 * * * * [progress]: [ 213 / 376 ] simplifiying candidate # 5.320 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (sqrt N) (sqrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.320 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (sqrt N) (sqrt N))) (/ (/ 1 (cbrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.320 * * * * [progress]: [ 214 / 376 ] simplifiying candidate # 5.320 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.320 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.320 * * * * [progress]: [ 215 / 376 ] simplifiying candidate # 5.320 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (cbrt 1) (cbrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.321 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.321 * * * * [progress]: [ 216 / 376 ] simplifiying candidate # 5.321 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.321 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.321 * * * * [progress]: [ 217 / 376 ] simplifiying candidate # 5.321 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (cbrt 1) (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.322 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.322 * * * * [progress]: [ 218 / 376 ] simplifiying candidate # 5.322 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (cbrt 1) (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.322 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.322 * * * * [progress]: [ 219 / 376 ] simplifiying candidate # 5.322 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (sqrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.323 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (sqrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.323 * * * * [progress]: [ 220 / 376 ] simplifiying candidate # 5.323 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.323 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.323 * * * * [progress]: [ 221 / 376 ] simplifiying candidate # 5.323 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N))) (cbrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.324 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N))) (cbrt N)) (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.324 * * * * [progress]: [ 222 / 376 ] simplifiying candidate # 5.324 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N))) (/ (/ (/ (cbrt 1) (sqrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.324 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N))) (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.324 * * * * [progress]: [ 223 / 376 ] simplifiying candidate # 5.324 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.325 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.325 * * * * [progress]: [ 224 / 376 ] simplifiying candidate # 5.325 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.325 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.325 * * * * [progress]: [ 225 / 376 ] simplifiying candidate # 5.325 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.325 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* (sqrt N) N))) 1/3 (/ 1 N)))) 5.326 * * * * [progress]: [ 226 / 376 ] simplifiying candidate # 5.326 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (cbrt 1) (sqrt N)) N) N)) 1/3 (/ 1 N)))) 5.326 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) (* N N))) 1/3 (/ 1 N)))) 5.326 * * * * [progress]: [ 227 / 376 ] simplifiying candidate # 5.326 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (cbrt 1) N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.326 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.327 * * * * [progress]: [ 228 / 376 ] simplifiying candidate # 5.327 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (cbrt 1) N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.327 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.327 * * * * [progress]: [ 229 / 376 ] simplifiying candidate # 5.327 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (cbrt 1) N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.327 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.328 * * * * [progress]: [ 230 / 376 ] simplifiying candidate # 5.328 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (cbrt 1) N) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.328 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 N) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.328 * * * * [progress]: [ 231 / 376 ] simplifiying candidate # 5.328 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (cbrt 1) N) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.328 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 N) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.328 * * * * [progress]: [ 232 / 376 ] simplifiying candidate # 5.329 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (cbrt 1) N) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.329 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.329 * * * * [progress]: [ 233 / 376 ] simplifiying candidate # 5.329 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (cbrt 1) N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.329 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.329 * * * * [progress]: [ 234 / 376 ] simplifiying candidate # 5.329 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (cbrt 1) N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.330 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.330 * * * * [progress]: [ 235 / 376 ] simplifiying candidate # 5.330 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ (cbrt 1) N) N) N)) 1/3 (/ 1 N)))) 5.330 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.330 * * * * [progress]: [ 236 / 376 ] simplifiying candidate # 5.330 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (cbrt N) (cbrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.330 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (cbrt N))) 1/3 (/ 1 N)))) 5.331 * * * * [progress]: [ 237 / 376 ] simplifiying candidate # 5.331 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (sqrt N)) (/ (/ (/ (sqrt 1) (cbrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.331 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N)))) 1/3 (/ 1 N)))) 5.331 * * * * [progress]: [ 238 / 376 ] simplifiying candidate # 5.331 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (sqrt 1) (cbrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.331 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* N (cbrt N)))) 1/3 (/ 1 N)))) 5.332 * * * * [progress]: [ 239 / 376 ] simplifiying candidate # 5.332 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (* (cbrt N) (cbrt N)) (sqrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.332 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.332 * * * * [progress]: [ 240 / 376 ] simplifiying candidate # 5.332 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (sqrt N) (sqrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.332 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (sqrt N)) (sqrt N)) (/ (/ 1 (cbrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.333 * * * * [progress]: [ 241 / 376 ] simplifiying candidate # 5.333 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.333 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.333 * * * * [progress]: [ 242 / 376 ] simplifiying candidate # 5.333 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (sqrt 1) (cbrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.333 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.334 * * * * [progress]: [ 243 / 376 ] simplifiying candidate # 5.334 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.334 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.334 * * * * [progress]: [ 244 / 376 ] simplifiying candidate # 5.334 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (sqrt 1) (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.334 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.334 * * * * [progress]: [ 245 / 376 ] simplifiying candidate # 5.335 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (sqrt 1) (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.335 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.335 * * * * [progress]: [ 246 / 376 ] simplifiying candidate # 5.335 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (sqrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.335 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.335 * * * * [progress]: [ 247 / 376 ] simplifiying candidate # 5.336 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.336 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) 1) (/ (/ (/ 1 (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.336 * * * * [progress]: [ 248 / 376 ] simplifiying candidate # 5.336 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N))) (cbrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.336 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.336 * * * * [progress]: [ 249 / 376 ] simplifiying candidate # 5.336 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N))) (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.337 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.337 * * * * [progress]: [ 250 / 376 ] simplifiying candidate # 5.337 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.337 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) 1) (/ (/ 1 (sqrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.337 * * * * [progress]: [ 251 / 376 ] simplifiying candidate # 5.337 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.338 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) 1) (* (cbrt N) (cbrt N))) (/ (/ 1 (sqrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.338 * * * * [progress]: [ 252 / 376 ] simplifiying candidate # 5.338 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.338 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (sqrt 1) (sqrt N)) 1) (sqrt N)) (/ (/ 1 (sqrt N)) (* (sqrt N) N))) 1/3 (/ 1 N)))) 5.338 * * * * [progress]: [ 253 / 376 ] simplifiying candidate # 5.338 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (sqrt 1) (sqrt N)) N) N)) 1/3 (/ 1 N)))) 5.338 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) (* N N))) 1/3 (/ 1 N)))) 5.339 * * * * [progress]: [ 254 / 376 ] simplifiying candidate # 5.339 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ (sqrt 1) N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.339 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.339 * * * * [progress]: [ 255 / 376 ] simplifiying candidate # 5.339 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ (sqrt 1) N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.339 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.339 * * * * [progress]: [ 256 / 376 ] simplifiying candidate # 5.340 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (sqrt 1) N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.340 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.340 * * * * [progress]: [ 257 / 376 ] simplifiying candidate # 5.340 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ (sqrt 1) N) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.340 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 N) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.340 * * * * [progress]: [ 258 / 376 ] simplifiying candidate # 5.340 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ (sqrt 1) N) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.341 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 N) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.341 * * * * [progress]: [ 259 / 376 ] simplifiying candidate # 5.341 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (sqrt 1) N) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.341 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.341 * * * * [progress]: [ 260 / 376 ] simplifiying candidate # 5.341 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ (sqrt 1) N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.341 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.342 * * * * [progress]: [ 261 / 376 ] simplifiying candidate # 5.342 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ (sqrt 1) N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.342 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.342 * * * * [progress]: [ 262 / 376 ] simplifiying candidate # 5.342 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ (sqrt 1) N) N) N)) 1/3 (/ 1 N)))) 5.342 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.342 * * * * [progress]: [ 263 / 376 ] simplifiying candidate # 5.342 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (* (cbrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.343 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (cbrt N))) 1/3 (/ 1 N)))) 5.343 * * * * [progress]: [ 264 / 376 ] simplifiying candidate # 5.343 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (sqrt N)) (/ (/ (/ 1 (cbrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.343 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N)))) 1/3 (/ 1 N)))) 5.343 * * * * [progress]: [ 265 / 376 ] simplifiying candidate # 5.343 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 (cbrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.344 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* N (cbrt N)))) 1/3 (/ 1 N)))) 5.344 * * * * [progress]: [ 266 / 376 ] simplifiying candidate # 5.344 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (* (cbrt N) (cbrt N)) (sqrt N))) (/ (/ (/ 1 (cbrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.344 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.344 * * * * [progress]: [ 267 / 376 ] simplifiying candidate # 5.344 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (sqrt N) (sqrt N))) (/ (/ (/ 1 (cbrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.345 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (* (sqrt N) (sqrt N))) (/ (/ 1 (cbrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.345 * * * * [progress]: [ 268 / 376 ] simplifiying candidate # 5.345 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.345 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ 1 (cbrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.345 * * * * [progress]: [ 269 / 376 ] simplifiying candidate # 5.345 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 (cbrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.346 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ 1 (cbrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.346 * * * * [progress]: [ 270 / 376 ] simplifiying candidate # 5.346 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.346 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.346 * * * * [progress]: [ 271 / 376 ] simplifiying candidate # 5.346 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.346 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 (cbrt N)) N) N)) 1/3 (/ 1 N)))) 5.347 * * * * [progress]: [ 272 / 376 ] simplifiying candidate # 5.347 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.347 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.347 * * * * [progress]: [ 273 / 376 ] simplifiying candidate # 5.347 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (sqrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.347 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (sqrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.348 * * * * [progress]: [ 274 / 376 ] simplifiying candidate # 5.348 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.348 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 (sqrt N)) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.348 * * * * [progress]: [ 275 / 376 ] simplifiying candidate # 5.348 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N))) (cbrt N)) (/ (/ (/ 1 (sqrt N)) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.348 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 (sqrt N)) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.349 * * * * [progress]: [ 276 / 376 ] simplifiying candidate # 5.349 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N))) (/ (/ (/ 1 (sqrt N)) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.349 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.349 * * * * [progress]: [ 277 / 376 ] simplifiying candidate # 5.349 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ 1 (sqrt N)) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.349 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.349 * * * * [progress]: [ 278 / 376 ] simplifiying candidate # 5.349 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 (sqrt N)) N) (cbrt N))) 1/3 (/ 1 N)))) 5.350 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 (sqrt N)) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.350 * * * * [progress]: [ 279 / 376 ] simplifiying candidate # 5.350 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ 1 (sqrt N)) N) (sqrt N))) 1/3 (/ 1 N)))) 5.350 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 (sqrt N)) (* (sqrt N) N))) 1/3 (/ 1 N)))) 5.350 * * * * [progress]: [ 280 / 376 ] simplifiying candidate # 5.350 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 (sqrt N)) N) N)) 1/3 (/ 1 N)))) 5.350 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 (sqrt N)) (* N N))) 1/3 (/ 1 N)))) 5.351 * * * * [progress]: [ 281 / 376 ] simplifiying candidate # 5.351 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.351 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.351 * * * * [progress]: [ 282 / 376 ] simplifiying candidate # 5.351 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.351 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.351 * * * * [progress]: [ 283 / 376 ] simplifiying candidate # 5.352 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.352 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.352 * * * * [progress]: [ 284 / 376 ] simplifiying candidate # 5.352 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 N) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.352 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ 1 N) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.352 * * * * [progress]: [ 285 / 376 ] simplifiying candidate # 5.352 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.353 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 N) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.353 * * * * [progress]: [ 286 / 376 ] simplifiying candidate # 5.353 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.353 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.353 * * * * [progress]: [ 287 / 376 ] simplifiying candidate # 5.353 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.353 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.353 * * * * [progress]: [ 288 / 376 ] simplifiying candidate # 5.354 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.354 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.354 * * * * [progress]: [ 289 / 376 ] simplifiying candidate # 5.354 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.354 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.354 * * * * [progress]: [ 290 / 376 ] simplifiying candidate # 5.354 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.354 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.354 * * * * [progress]: [ 291 / 376 ] simplifiying candidate # 5.354 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.354 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.354 * * * * [progress]: [ 292 / 376 ] simplifiying candidate # 5.354 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.354 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.355 * * * * [progress]: [ 293 / 376 ] simplifiying candidate # 5.355 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 N) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.355 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 N) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.355 * * * * [progress]: [ 294 / 376 ] simplifiying candidate # 5.355 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.355 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 N) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.355 * * * * [progress]: [ 295 / 376 ] simplifiying candidate # 5.355 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.355 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.355 * * * * [progress]: [ 296 / 376 ] simplifiying candidate # 5.355 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.355 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.355 * * * * [progress]: [ 297 / 376 ] simplifiying candidate # 5.356 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.356 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.356 * * * * [progress]: [ 298 / 376 ] simplifiying candidate # 5.356 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.356 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.356 * * * * [progress]: [ 299 / 376 ] simplifiying candidate # 5.356 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (* (cbrt N) (cbrt N)) (* (cbrt N) (cbrt N)))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.356 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.356 * * * * [progress]: [ 300 / 376 ] simplifiying candidate # 5.356 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (cbrt N)) (* (sqrt N) (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.356 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (* (cbrt N) (cbrt N))) (sqrt N)) (/ (/ (/ 1 N) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.356 * * * * [progress]: [ 301 / 376 ] simplifiying candidate # 5.356 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.356 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) (cbrt N)) N)) 1/3 (/ 1 N)))) 5.357 * * * * [progress]: [ 302 / 376 ] simplifiying candidate # 5.357 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ (/ 1 (sqrt N)) (cbrt N)) (cbrt N)) (/ (/ (/ 1 N) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.357 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (* (cbrt N) (cbrt N))) (/ (/ 1 N) (* (cbrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.357 * * * * [progress]: [ 303 / 376 ] simplifiying candidate # 5.357 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.357 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 (sqrt N)) (sqrt N)) (/ (/ 1 N) (* (sqrt N) (sqrt N)))) 1/3 (/ 1 N)))) 5.357 * * * * [progress]: [ 304 / 376 ] simplifiying candidate # 5.357 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) (sqrt N)) N)) 1/3 (/ 1 N)))) 5.357 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ 1 N) (* N (sqrt N)))) 1/3 (/ 1 N)))) 5.357 * * * * [progress]: [ 305 / 376 ] simplifiying candidate # 5.357 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.357 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.357 * * * * [progress]: [ 306 / 376 ] simplifiying candidate # 5.358 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.358 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.358 * * * * [progress]: [ 307 / 376 ] simplifiying candidate # 5.358 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.358 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.358 * * * * [progress]: [ 308 / 376 ] simplifiying candidate # 5.358 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (* (/ 1 (cbrt N)) (/ 1 (cbrt N))) (/ (/ (/ 1 N) N) (cbrt N))) 1/3 (/ 1 N)))) 5.358 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (* (cbrt N) (cbrt N))) (/ (/ 1 N) (* (cbrt N) N))) 1/3 (/ 1 N)))) 5.358 * * * * [progress]: [ 309 / 376 ] simplifiying candidate # 5.358 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.359 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 (sqrt N)) (/ (/ (/ 1 N) N) (sqrt N))) 1/3 (/ 1 N)))) 5.359 * * * * [progress]: [ 310 / 376 ] simplifiying candidate # 5.359 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.359 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* 1 (/ (/ (/ 1 N) N) N)) 1/3 (/ 1 N)))) 5.359 * * * * [progress]: [ 311 / 376 ] simplifiying candidate # 5.359 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) 1/3 (/ 1 N)))) 5.359 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) (* (cbrt N) (cbrt N))) (/ (/ 1 N) (cbrt N))) 1/3 (/ 1 N)))) 5.359 * * * * [progress]: [ 312 / 376 ] simplifiying candidate # 5.359 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) (sqrt N)) (/ (/ 1 N) (sqrt N))) 1/3 (/ 1 N)))) 5.359 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) (sqrt N)) (/ (/ 1 N) (sqrt N))) 1/3 (/ 1 N)))) 5.359 * * * * [progress]: [ 313 / 376 ] simplifiying candidate # 5.359 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 N) (/ (/ 1 N) N)) 1/3 (/ 1 N)))) 5.360 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ 1 N) (/ (/ 1 N) N)) 1/3 (/ 1 N)))) 5.360 * * * * [progress]: [ 314 / 376 ] simplifiying candidate # 5.360 * * * * [progress]: [ 315 / 376 ] simplifiying candidate # 5.360 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) N) (/ 1 N)) 1/3 (/ 1 N)))) 5.360 * * * * [progress]: [ 316 / 376 ] simplifiying candidate # 5.360 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ 1 (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.360 * * * * [progress]: [ 317 / 376 ] simplifiying candidate # 5.360 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (/ 1 N) (* (cbrt N) N)) (cbrt N)) (cbrt N)) 1/3 (/ 1 N)))) 5.360 * * * * [progress]: [ 318 / 376 ] simplifiying candidate # 5.360 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (/ 1 N) N) (sqrt N)) (sqrt N)) 1/3 (/ 1 N)))) 5.360 * * * * [progress]: [ 319 / 376 ] simplifiying candidate # 5.362 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.363 * * * * [progress]: [ 320 / 376 ] simplifiying candidate # 5.363 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (* (cbrt (/ (/ 1 N) N)) (cbrt (/ (/ 1 N) N))) (/ N (cbrt (/ (/ 1 N) N)))) 1/3 (/ 1 N)))) 5.363 * * * * [progress]: [ 321 / 376 ] simplifiying candidate # 5.363 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (sqrt (/ (/ 1 N) N)) (/ N (sqrt (/ (/ 1 N) N)))) 1/3 (/ 1 N)))) 5.363 * * * * [progress]: [ 322 / 376 ] simplifiying candidate # 5.363 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (* (cbrt N) (cbrt N))) (/ N (/ (cbrt (/ 1 N)) (cbrt N)))) 1/3 (/ 1 N)))) 5.363 * * * * [progress]: [ 323 / 376 ] simplifiying candidate # 5.363 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) (sqrt N)) (* (/ N (cbrt (/ 1 N))) (sqrt N))) 1/3 (/ 1 N)))) 5.363 * * * * [progress]: [ 324 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (* (cbrt (/ 1 N)) (cbrt (/ 1 N))) 1) (/ N (/ (cbrt (/ 1 N)) N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 325 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (sqrt (/ 1 N)) (* (cbrt N) (cbrt N))) (* (/ N (sqrt (/ 1 N))) (cbrt N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 326 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (sqrt (/ 1 N)) (sqrt N)) (* (/ N (sqrt (/ 1 N))) (sqrt N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 327 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (sqrt (/ 1 N)) 1) (/ N (/ (sqrt (/ 1 N)) N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 328 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (* (/ N 1) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 329 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) (sqrt N)) (* (* (/ N 1) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.364 * * * * [progress]: [ 330 / 376 ] simplifiying candidate # 5.364 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (* (cbrt N) (cbrt N))) 1) (/ N (/ (/ 1 (cbrt N)) N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 331 / 376 ] simplifiying candidate # 5.365 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (sqrt N)) (* (cbrt N) (cbrt N))) (* (* (/ N 1) (sqrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 332 / 376 ] simplifiying candidate # 5.365 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (sqrt N)) (sqrt N)) (* (* (/ N 1) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 333 / 376 ] simplifiying candidate # 5.365 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) (sqrt N)) 1) (/ N (/ (/ 1 (sqrt N)) N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 334 / 376 ] simplifiying candidate # 5.365 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) 1) (* (cbrt N) (cbrt N))) (* (/ N (/ 1 N)) (cbrt N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 335 / 376 ] simplifiying candidate # 5.365 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) 1) (sqrt N)) (* (/ N (/ 1 N)) (sqrt N))) 1/3 (/ 1 N)))) 5.365 * * * * [progress]: [ 336 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (* (cbrt 1) (cbrt 1)) 1) 1) (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 337 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (* (/ N 1) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 338 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) (sqrt N)) (* (* (/ N 1) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 339 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (* (cbrt N) (cbrt N))) 1) (/ N (/ (/ 1 (cbrt N)) N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 340 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (sqrt N)) (* (cbrt N) (cbrt N))) (* (/ N (/ 1 (sqrt N))) (cbrt N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 341 / 376 ] simplifiying candidate # 5.366 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (sqrt N)) (sqrt N)) (* (* (/ N 1) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.366 * * * * [progress]: [ 342 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) (sqrt N)) 1) (/ N (/ (/ 1 (sqrt N)) N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 343 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) 1) (* (cbrt N) (cbrt N))) (* (/ N (/ 1 N)) (cbrt N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 344 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) 1) (sqrt N)) (* (/ N (/ 1 N)) (sqrt N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 345 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ (sqrt 1) 1) 1) (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 346 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (* (cbrt N) (cbrt N))) (* (* (/ N 1) (cbrt N)) (cbrt N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 347 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (* (cbrt N) (cbrt N))) (sqrt N)) (* (* (/ N 1) (cbrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.367 * * * * [progress]: [ 348 / 376 ] simplifiying candidate # 5.367 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (* (cbrt N) (cbrt N))) 1) (/ N (/ (/ 1 (cbrt N)) N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 349 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (sqrt N)) (* (cbrt N) (cbrt N))) (* (/ N (/ 1 (sqrt N))) (cbrt N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 350 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (sqrt N)) (sqrt N)) (* (* (/ N 1) (sqrt N)) (sqrt N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 351 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 (sqrt N)) 1) (/ N (/ (/ 1 (sqrt N)) N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 352 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 1) (* (cbrt N) (cbrt N))) (* (/ N (/ 1 N)) (cbrt N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 353 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 1) (sqrt N)) (* (/ N (/ 1 N)) (sqrt N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 354 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 1) 1) (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 355 / 376 ] simplifiying candidate # 5.368 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (* (cbrt N) (cbrt N))) (* (/ N (/ 1 N)) (cbrt N))) 1/3 (/ 1 N)))) 5.368 * * * * [progress]: [ 356 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (sqrt N)) (* (/ N (/ 1 N)) (sqrt N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 357 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 1) (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 358 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (* (cbrt N) (cbrt N))) (* (/ N (/ 1 N)) (cbrt N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 359 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 (sqrt N)) (* (/ N (/ 1 N)) (sqrt N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 360 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 1) (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 361 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ 1 (/ N (/ (/ 1 N) N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 362 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 N) (/ N (/ 1 N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 363 / 376 ] simplifiying candidate # 5.369 * [simplify]: Simplified (2 3 1 2) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ 1 N) (* N N)) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 364 / 376 ] simplifiying candidate #real (real->posit16 (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N))))> 5.369 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (posit16->real (real->posit16 (/ (/ (/ 1 N) N) N))) 1/3 (/ 1 N)))) 5.369 * * * * [progress]: [ 365 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2) to (λ (N) (- (+ (/ 1/3 (* N (* N N))) (/ 1 N)) (/ 1/2 (* N N)))) 5.370 * * * * [progress]: [ 366 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2) to (λ (N) (+ (/ 1/3 (* N (* N N))) (- (/ 1 N) (/ 1/2 (* N N))))) 5.370 * * * * [progress]: [ 367 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2) to (λ (N) (+ (/ 1/3 (* N (* N N))) (- (/ 1 N) (/ 1/2 (* N N))))) 5.370 * * * * [progress]: [ 368 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 369 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 370 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 3 1 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 371 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 372 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 373 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (/ (/ (/ 1 N) N) N) 1/3 (/ 1 N)))) 5.370 * * * * [progress]: [ 374 / 376 ] simplifiying candidate # 5.370 * [simplify]: Simplified (2 3 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) N) (/ 1 N)) 1/3 (/ 1 N)))) 5.371 * * * * [progress]: [ 375 / 376 ] simplifiying candidate # 5.371 * [simplify]: Simplified (2 3 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) N) (/ 1 N)) 1/3 (/ 1 N)))) 5.371 * * * * [progress]: [ 376 / 376 ] simplifiying candidate # 5.371 * [simplify]: Simplified (2 3 1) to (λ (N) (fma (/ (/ 1 N) N) -1/2 (fma (* (/ (/ 1 N) N) (/ 1 N)) 1/3 (/ 1 N)))) 5.371 * * * [progress]: adding candidates to table 8.817 * [progress]: [Phase 3 of 3] Extracting. 8.817 * * [regime]: Finding splitpoints for: (# # # #) 8.819 * * * [regime-changes]: Trying 1 branch expressions: (N) 8.819 * * * * [regimes]: Trying to branch on N from (# # # #) 8.867 * * * [regime]: Found split indices: #