w0 \cdot \sqrt{1 - {\left(\frac{M \cdot D}{2 \cdot d}\right)}^{2} \cdot \frac{h}{\ell}}w0 \cdot \sqrt{1 - \left(h \cdot \frac{M \cdot D}{2 \cdot d}\right) \cdot \frac{\frac{M \cdot D}{2 \cdot d}}{\ell}}(FPCore (w0 M D h l d) :precision binary64 (* w0 (sqrt (- 1.0 (* (pow (/ (* M D) (* 2.0 d)) 2.0) (/ h l))))))
(FPCore (w0 M D h l d) :precision binary64 (* w0 (sqrt (- 1.0 (* (* h (/ (* M D) (* 2.0 d))) (/ (/ (* M D) (* 2.0 d)) l))))))
double code(double w0, double M, double D, double h, double l, double d) {
return w0 * sqrt(1.0 - (pow(((M * D) / (2.0 * d)), 2.0) * (h / l)));
}
double code(double w0, double M, double D, double h, double l, double d) {
return w0 * sqrt(1.0 - ((h * ((M * D) / (2.0 * d))) * (((M * D) / (2.0 * d)) / l)));
}



Bits error versus w0



Bits error versus M



Bits error versus D



Bits error versus h



Bits error versus l



Bits error versus d
Results
Initial program 13.7
rmApplied associate-*r/_binary64_138410.8
Simplified10.8
rmApplied unpow2_binary64_150710.8
Applied associate-*r*_binary64_13829.3
rmApplied *-un-lft-identity_binary64_14429.3
Applied times-frac_binary64_14488.7
Simplified8.7
Final simplification8.7
herbie shell --seed 2020343
(FPCore (w0 M D h l d)
:name "Henrywood and Agarwal, Equation (9a)"
:precision binary64
(* w0 (sqrt (- 1.0 (* (pow (/ (* M D) (* 2.0 d)) 2.0) (/ h l))))))