Optimal. Leaf size=25 \[ \text{Unintegrable}\left (\frac{x^2}{(d+e x) \left (a+b \log \left (c x^n\right )\right )},x\right ) \]
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Rubi [A] time = 0.086478, antiderivative size = 0, normalized size of antiderivative = 0., number of steps used = 0, number of rules used = 0, integrand size = 0, \(\frac{\text{number of rules}}{\text{integrand size}}\) = 0., Rules used = {} \[ \int \frac{x^2}{(d+e x) \left (a+b \log \left (c x^n\right )\right )} \, dx \]
Verification is Not applicable to the result.
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Rubi steps
\begin{align*} \int \frac{x^2}{(d+e x) \left (a+b \log \left (c x^n\right )\right )} \, dx &=\int \frac{x^2}{(d+e x) \left (a+b \log \left (c x^n\right )\right )} \, dx\\ \end{align*}
Mathematica [A] time = 1.22889, size = 0, normalized size = 0. \[ \int \frac{x^2}{(d+e x) \left (a+b \log \left (c x^n\right )\right )} \, dx \]
Verification is Not applicable to the result.
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Maple [A] time = 0.513, size = 0, normalized size = 0. \begin{align*} \int{\frac{{x}^{2}}{ \left ( ex+d \right ) \left ( a+b\ln \left ( c{x}^{n} \right ) \right ) }}\, dx \end{align*}
Verification of antiderivative is not currently implemented for this CAS.
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Maxima [A] time = 0., size = 0, normalized size = 0. \begin{align*} \int \frac{x^{2}}{{\left (e x + d\right )}{\left (b \log \left (c x^{n}\right ) + a\right )}}\,{d x} \end{align*}
Verification of antiderivative is not currently implemented for this CAS.
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Fricas [A] time = 0., size = 0, normalized size = 0. \begin{align*}{\rm integral}\left (\frac{x^{2}}{a e x + a d +{\left (b e x + b d\right )} \log \left (c x^{n}\right )}, x\right ) \end{align*}
Verification of antiderivative is not currently implemented for this CAS.
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Sympy [A] time = 0., size = 0, normalized size = 0. \begin{align*} \int \frac{x^{2}}{\left (a + b \log{\left (c x^{n} \right )}\right ) \left (d + e x\right )}\, dx \end{align*}
Verification of antiderivative is not currently implemented for this CAS.
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Giac [A] time = 0., size = 0, normalized size = 0. \begin{align*} \int \frac{x^{2}}{{\left (e x + d\right )}{\left (b \log \left (c x^{n}\right ) + a\right )}}\,{d x} \end{align*}
Verification of antiderivative is not currently implemented for this CAS.
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