c0 \cdot \sqrt{\frac{A}{V \cdot \ell}}\left(\left|\frac{\frac{\sqrt[3]{A}}{\sqrt[3]{V}}}{\sqrt[3]{\ell}}\right| \cdot c0\right) \cdot \sqrt{\frac{\frac{\sqrt[3]{A}}{\sqrt[3]{V}}}{\sqrt[3]{\ell}}}double f(double c0, double A, double V, double l) {
double r148302 = c0;
double r148303 = A;
double r148304 = V;
double r148305 = l;
double r148306 = r148304 * r148305;
double r148307 = r148303 / r148306;
double r148308 = sqrt(r148307);
double r148309 = r148302 * r148308;
return r148309;
}
double f(double c0, double A, double V, double l) {
double r148310 = A;
double r148311 = cbrt(r148310);
double r148312 = V;
double r148313 = cbrt(r148312);
double r148314 = r148311 / r148313;
double r148315 = l;
double r148316 = cbrt(r148315);
double r148317 = r148314 / r148316;
double r148318 = fabs(r148317);
double r148319 = c0;
double r148320 = r148318 * r148319;
double r148321 = sqrt(r148317);
double r148322 = r148320 * r148321;
return r148322;
}



Bits error versus c0



Bits error versus A



Bits error versus V



Bits error versus l
Results
Initial program 19.9
rmApplied associate-/r*19.5
rmApplied add-cube-cbrt19.8
Applied add-cube-cbrt20.0
Applied add-cube-cbrt20.0
Applied times-frac20.0
Applied times-frac16.1
Applied sqrt-prod7.4
Applied associate-*r*7.4
Simplified1.1
Final simplification1.1
herbie shell --seed 2019303
(FPCore (c0 A V l)
:name "Henrywood and Agarwal, Equation (3)"
:precision binary64
(* c0 (sqrt (/ A (* V l)))))