\(\int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx\) [266]

   Optimal result
   Rubi [N/A]
   Mathematica [N/A]
   Maple [N/A] (verified)
   Fricas [N/A]
   Sympy [N/A]
   Maxima [N/A]
   Giac [N/A]
   Mupad [N/A]

Optimal result

Integrand size = 17, antiderivative size = 17 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=-\frac {b e^{c+\left (b^2+d\right ) x^2}}{2 d \left (b^2+d\right ) \sqrt {\pi }}+\frac {e^{c+d x^2} x \text {erfi}(b x)}{2 d}-\frac {\text {Int}\left (e^{c+d x^2} \text {erfi}(b x),x\right )}{2 d} \]

[Out]

1/2*exp(d*x^2+c)*x*erfi(b*x)/d-1/2*b*exp(c+(b^2+d)*x^2)/d/(b^2+d)/Pi^(1/2)-1/2*Unintegrable(exp(d*x^2+c)*erfi(
b*x),x)/d

Rubi [N/A]

Not integrable

Time = 0.07 (sec) , antiderivative size = 17, normalized size of antiderivative = 1.00, number of steps used = 0, number of rules used = 0, \(\frac {\text {number of rules}}{\text {integrand size}}\) = 0.000, Rules used = {} \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx \]

[In]

Int[E^(c + d*x^2)*x^2*Erfi[b*x],x]

[Out]

-1/2*(b*E^(c + (b^2 + d)*x^2))/(d*(b^2 + d)*Sqrt[Pi]) + (E^(c + d*x^2)*x*Erfi[b*x])/(2*d) - Defer[Int][E^(c +
d*x^2)*Erfi[b*x], x]/(2*d)

Rubi steps \begin{align*} \text {integral}& = \frac {e^{c+d x^2} x \text {erfi}(b x)}{2 d}-\frac {\int e^{c+d x^2} \text {erfi}(b x) \, dx}{2 d}-\frac {b \int e^{c+\left (b^2+d\right ) x^2} x \, dx}{d \sqrt {\pi }} \\ & = -\frac {b e^{c+\left (b^2+d\right ) x^2}}{2 d \left (b^2+d\right ) \sqrt {\pi }}+\frac {e^{c+d x^2} x \text {erfi}(b x)}{2 d}-\frac {\int e^{c+d x^2} \text {erfi}(b x) \, dx}{2 d} \\ \end{align*}

Mathematica [N/A]

Not integrable

Time = 0.16 (sec) , antiderivative size = 19, normalized size of antiderivative = 1.12 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx \]

[In]

Integrate[E^(c + d*x^2)*x^2*Erfi[b*x],x]

[Out]

Integrate[E^(c + d*x^2)*x^2*Erfi[b*x], x]

Maple [N/A] (verified)

Not integrable

Time = 0.13 (sec) , antiderivative size = 16, normalized size of antiderivative = 0.94

\[\int {\mathrm e}^{d \,x^{2}+c} x^{2} \operatorname {erfi}\left (b x \right )d x\]

[In]

int(exp(d*x^2+c)*x^2*erfi(b*x),x)

[Out]

int(exp(d*x^2+c)*x^2*erfi(b*x),x)

Fricas [N/A]

Not integrable

Time = 0.26 (sec) , antiderivative size = 18, normalized size of antiderivative = 1.06 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int { x^{2} \operatorname {erfi}\left (b x\right ) e^{\left (d x^{2} + c\right )} \,d x } \]

[In]

integrate(exp(d*x^2+c)*x^2*erfi(b*x),x, algorithm="fricas")

[Out]

integral(x^2*erfi(b*x)*e^(d*x^2 + c), x)

Sympy [N/A]

Not integrable

Time = 9.70 (sec) , antiderivative size = 19, normalized size of antiderivative = 1.12 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=e^{c} \int x^{2} e^{d x^{2}} \operatorname {erfi}{\left (b x \right )}\, dx \]

[In]

integrate(exp(d*x**2+c)*x**2*erfi(b*x),x)

[Out]

exp(c)*Integral(x**2*exp(d*x**2)*erfi(b*x), x)

Maxima [N/A]

Not integrable

Time = 0.31 (sec) , antiderivative size = 18, normalized size of antiderivative = 1.06 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int { x^{2} \operatorname {erfi}\left (b x\right ) e^{\left (d x^{2} + c\right )} \,d x } \]

[In]

integrate(exp(d*x^2+c)*x^2*erfi(b*x),x, algorithm="maxima")

[Out]

integrate(x^2*erfi(b*x)*e^(d*x^2 + c), x)

Giac [N/A]

Not integrable

Time = 0.26 (sec) , antiderivative size = 18, normalized size of antiderivative = 1.06 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int { x^{2} \operatorname {erfi}\left (b x\right ) e^{\left (d x^{2} + c\right )} \,d x } \]

[In]

integrate(exp(d*x^2+c)*x^2*erfi(b*x),x, algorithm="giac")

[Out]

integrate(x^2*erfi(b*x)*e^(d*x^2 + c), x)

Mupad [N/A]

Not integrable

Time = 6.00 (sec) , antiderivative size = 18, normalized size of antiderivative = 1.06 \[ \int e^{c+d x^2} x^2 \text {erfi}(b x) \, dx=\int x^2\,{\mathrm {e}}^{d\,x^2+c}\,\mathrm {erfi}\left (b\,x\right ) \,d x \]

[In]

int(x^2*exp(c + d*x^2)*erfi(b*x),x)

[Out]

int(x^2*exp(c + d*x^2)*erfi(b*x), x)