59.47 Problem number 231

\[ \int \frac {1}{(e \sec (c+d x))^{5/2} (a+i a \tan (c+d x))} \, dx \]

Optimal antiderivative \[ \frac {14 \sin \left (d x +c \right )}{45 a d e \left (e \sec \left (d x +c \right )\right )^{\frac {3}{2}}}+\frac {14 \sqrt {\frac {\cos \left (d x +c \right )}{2}+\frac {1}{2}}\, \EllipticE \left (\sin \left (\frac {d x}{2}+\frac {c}{2}\right ), \sqrt {2}\right )}{15 \cos \left (\frac {d x}{2}+\frac {c}{2}\right ) a d \,e^{2} \sqrt {\cos \left (d x +c \right )}\, \sqrt {e \sec \left (d x +c \right )}}+\frac {2 i}{9 d \left (e \sec \left (d x +c \right )\right )^{\frac {5}{2}} \left (a +i a \tan \left (d x +c \right )\right )} \]

command

integrate(1/(e*sec(d*x+c))^(5/2)/(a+I*a*tan(d*x+c)),x, algorithm="fricas")

Fricas 1.3.8 (sbcl 2.2.11.debian) via sagemath 9.6 output

\[ \frac {{\left (336 i \, \sqrt {2} e^{\left (5 i \, d x + 5 i \, c\right )} {\rm weierstrassZeta}\left (-4, 0, {\rm weierstrassPInverse}\left (-4, 0, e^{\left (i \, d x + i \, c\right )}\right )\right ) + \frac {\sqrt {2} {\left (-9 i \, e^{\left (8 i \, d x + 8 i \, c\right )} + 174 i \, e^{\left (6 i \, d x + 6 i \, c\right )} + 212 i \, e^{\left (4 i \, d x + 4 i \, c\right )} + 34 i \, e^{\left (2 i \, d x + 2 i \, c\right )} + 5 i\right )} e^{\left (\frac {1}{2} i \, d x + \frac {1}{2} i \, c\right )}}{\sqrt {e^{\left (2 i \, d x + 2 i \, c\right )} + 1}}\right )} e^{\left (-5 i \, d x - 5 i \, c - \frac {5}{2}\right )}}{360 \, a d} \]

Fricas 1.3.7 via sagemath 9.3 output

\[ \frac {\sqrt {2} \sqrt {\frac {e}{e^{\left (2 i \, d x + 2 i \, c\right )} + 1}} {\left (-9 i \, e^{\left (9 i \, d x + 9 i \, c\right )} + 9 i \, e^{\left (8 i \, d x + 8 i \, c\right )} - 162 i \, e^{\left (7 i \, d x + 7 i \, c\right )} - 174 i \, e^{\left (6 i \, d x + 6 i \, c\right )} - 124 i \, e^{\left (5 i \, d x + 5 i \, c\right )} - 212 i \, e^{\left (4 i \, d x + 4 i \, c\right )} + 34 i \, e^{\left (3 i \, d x + 3 i \, c\right )} - 34 i \, e^{\left (2 i \, d x + 2 i \, c\right )} + 5 i \, e^{\left (i \, d x + i \, c\right )} - 5 i\right )} e^{\left (\frac {1}{2} i \, d x + \frac {1}{2} i \, c\right )} + 360 \, {\left (a d e^{3} e^{\left (6 i \, d x + 6 i \, c\right )} - a d e^{3} e^{\left (5 i \, d x + 5 i \, c\right )}\right )} {\rm integral}\left (\frac {\sqrt {2} \sqrt {\frac {e}{e^{\left (2 i \, d x + 2 i \, c\right )} + 1}} {\left (-7 i \, e^{\left (2 i \, d x + 2 i \, c\right )} - 14 i \, e^{\left (i \, d x + i \, c\right )} - 7 i\right )} e^{\left (\frac {1}{2} i \, d x + \frac {1}{2} i \, c\right )}}{15 \, {\left (a d e^{3} e^{\left (3 i \, d x + 3 i \, c\right )} - 2 \, a d e^{3} e^{\left (2 i \, d x + 2 i \, c\right )} + a d e^{3} e^{\left (i \, d x + i \, c\right )}\right )}}, x\right )}{360 \, {\left (a d e^{3} e^{\left (6 i \, d x + 6 i \, c\right )} - a d e^{3} e^{\left (5 i \, d x + 5 i \, c\right )}\right )}} \]