Optimal. Leaf size=440 \[ -\frac {\left (c d^2-b d e+a e^2\right )^4}{11 e^9 (d+e x)^{11}}+\frac {2 (2 c d-b e) \left (c d^2-b d e+a e^2\right )^3}{5 e^9 (d+e x)^{10}}-\frac {2 \left (c d^2-b d e+a e^2\right )^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{9 e^9 (d+e x)^9}+\frac {(2 c d-b e) \left (c d^2-b d e+a e^2\right ) \left (7 c^2 d^2+b^2 e^2-c e (7 b d-3 a e)\right )}{2 e^9 (d+e x)^8}-\frac {70 c^4 d^4+b^4 e^4-4 b^2 c e^3 (5 b d-3 a e)-20 c^3 d^2 e (7 b d-3 a e)+6 c^2 e^2 \left (15 b^2 d^2-10 a b d e+a^2 e^2\right )}{7 e^9 (d+e x)^7}+\frac {2 c (2 c d-b e) \left (7 c^2 d^2+b^2 e^2-c e (7 b d-3 a e)\right )}{3 e^9 (d+e x)^6}-\frac {2 c^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{5 e^9 (d+e x)^5}+\frac {c^3 (2 c d-b e)}{e^9 (d+e x)^4}-\frac {c^4}{3 e^9 (d+e x)^3} \]
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Rubi [A]
time = 0.27, antiderivative size = 440, normalized size of antiderivative = 1.00, number of steps
used = 2, number of rules used = 1, integrand size = 20, \(\frac {\text {number of rules}}{\text {integrand size}}\) = 0.050, Rules used = {712}
\begin {gather*} -\frac {6 c^2 e^2 \left (a^2 e^2-10 a b d e+15 b^2 d^2\right )-4 b^2 c e^3 (5 b d-3 a e)-20 c^3 d^2 e (7 b d-3 a e)+b^4 e^4+70 c^4 d^4}{7 e^9 (d+e x)^7}-\frac {2 c^2 \left (-2 c e (7 b d-a e)+3 b^2 e^2+14 c^2 d^2\right )}{5 e^9 (d+e x)^5}+\frac {2 c (2 c d-b e) \left (-c e (7 b d-3 a e)+b^2 e^2+7 c^2 d^2\right )}{3 e^9 (d+e x)^6}+\frac {(2 c d-b e) \left (a e^2-b d e+c d^2\right ) \left (-c e (7 b d-3 a e)+b^2 e^2+7 c^2 d^2\right )}{2 e^9 (d+e x)^8}-\frac {2 \left (a e^2-b d e+c d^2\right )^2 \left (-2 c e (7 b d-a e)+3 b^2 e^2+14 c^2 d^2\right )}{9 e^9 (d+e x)^9}+\frac {2 (2 c d-b e) \left (a e^2-b d e+c d^2\right )^3}{5 e^9 (d+e x)^{10}}-\frac {\left (a e^2-b d e+c d^2\right )^4}{11 e^9 (d+e x)^{11}}+\frac {c^3 (2 c d-b e)}{e^9 (d+e x)^4}-\frac {c^4}{3 e^9 (d+e x)^3} \end {gather*}
Antiderivative was successfully verified.
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Rule 712
Rubi steps
\begin {align*} \int \frac {\left (a+b x+c x^2\right )^4}{(d+e x)^{12}} \, dx &=\int \left (\frac {\left (c d^2-b d e+a e^2\right )^4}{e^8 (d+e x)^{12}}+\frac {4 (-2 c d+b e) \left (c d^2-b d e+a e^2\right )^3}{e^8 (d+e x)^{11}}+\frac {2 \left (c d^2-b d e+a e^2\right )^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{e^8 (d+e x)^{10}}+\frac {4 (2 c d-b e) \left (c d^2-b d e+a e^2\right ) \left (-7 c^2 d^2+7 b c d e-b^2 e^2-3 a c e^2\right )}{e^8 (d+e x)^9}+\frac {70 c^4 d^4+b^4 e^4-4 b^2 c e^3 (5 b d-3 a e)-20 c^3 d^2 e (7 b d-3 a e)+6 c^2 e^2 \left (15 b^2 d^2-10 a b d e+a^2 e^2\right )}{e^8 (d+e x)^8}+\frac {4 c (2 c d-b e) \left (-7 c^2 d^2-b^2 e^2+c e (7 b d-3 a e)\right )}{e^8 (d+e x)^7}+\frac {2 c^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{e^8 (d+e x)^6}-\frac {4 c^3 (2 c d-b e)}{e^8 (d+e x)^5}+\frac {c^4}{e^8 (d+e x)^4}\right ) \, dx\\ &=-\frac {\left (c d^2-b d e+a e^2\right )^4}{11 e^9 (d+e x)^{11}}+\frac {2 (2 c d-b e) \left (c d^2-b d e+a e^2\right )^3}{5 e^9 (d+e x)^{10}}-\frac {2 \left (c d^2-b d e+a e^2\right )^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{9 e^9 (d+e x)^9}+\frac {(2 c d-b e) \left (c d^2-b d e+a e^2\right ) \left (7 c^2 d^2+b^2 e^2-c e (7 b d-3 a e)\right )}{2 e^9 (d+e x)^8}-\frac {70 c^4 d^4+b^4 e^4-4 b^2 c e^3 (5 b d-3 a e)-20 c^3 d^2 e (7 b d-3 a e)+6 c^2 e^2 \left (15 b^2 d^2-10 a b d e+a^2 e^2\right )}{7 e^9 (d+e x)^7}+\frac {2 c (2 c d-b e) \left (7 c^2 d^2+b^2 e^2-c e (7 b d-3 a e)\right )}{3 e^9 (d+e x)^6}-\frac {2 c^2 \left (14 c^2 d^2+3 b^2 e^2-2 c e (7 b d-a e)\right )}{5 e^9 (d+e x)^5}+\frac {c^3 (2 c d-b e)}{e^9 (d+e x)^4}-\frac {c^4}{3 e^9 (d+e x)^3}\\ \end {align*}
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Mathematica [A]
time = 0.21, size = 731, normalized size = 1.66 \begin {gather*} -\frac {14 c^4 \left (d^8+11 d^7 e x+55 d^6 e^2 x^2+165 d^5 e^3 x^3+330 d^4 e^4 x^4+462 d^3 e^5 x^5+462 d^2 e^6 x^6+330 d e^7 x^7+165 e^8 x^8\right )+3 e^4 \left (210 a^4 e^4+84 a^3 b e^3 (d+11 e x)+28 a^2 b^2 e^2 \left (d^2+11 d e x+55 e^2 x^2\right )+7 a b^3 e \left (d^3+11 d^2 e x+55 d e^2 x^2+165 e^3 x^3\right )+b^4 \left (d^4+11 d^3 e x+55 d^2 e^2 x^2+165 d e^3 x^3+330 e^4 x^4\right )\right )+c e^3 \left (56 a^3 e^3 \left (d^2+11 d e x+55 e^2 x^2\right )+63 a^2 b e^2 \left (d^3+11 d^2 e x+55 d e^2 x^2+165 e^3 x^3\right )+36 a b^2 e \left (d^4+11 d^3 e x+55 d^2 e^2 x^2+165 d e^3 x^3+330 e^4 x^4\right )+10 b^3 \left (d^5+11 d^4 e x+55 d^3 e^2 x^2+165 d^2 e^3 x^3+330 d e^4 x^4+462 e^5 x^5\right )\right )+6 c^2 e^2 \left (3 a^2 e^2 \left (d^4+11 d^3 e x+55 d^2 e^2 x^2+165 d e^3 x^3+330 e^4 x^4\right )+5 a b e \left (d^5+11 d^4 e x+55 d^3 e^2 x^2+165 d^2 e^3 x^3+330 d e^4 x^4+462 e^5 x^5\right )+3 b^2 \left (d^6+11 d^5 e x+55 d^4 e^2 x^2+165 d^3 e^3 x^3+330 d^2 e^4 x^4+462 d e^5 x^5+462 e^6 x^6\right )\right )+3 c^3 e \left (4 a e \left (d^6+11 d^5 e x+55 d^4 e^2 x^2+165 d^3 e^3 x^3+330 d^2 e^4 x^4+462 d e^5 x^5+462 e^6 x^6\right )+7 b \left (d^7+11 d^6 e x+55 d^5 e^2 x^2+165 d^4 e^3 x^3+330 d^3 e^4 x^4+462 d^2 e^5 x^5+462 d e^6 x^6+330 e^7 x^7\right )\right )}{6930 e^9 (d+e x)^{11}} \end {gather*}
Antiderivative was successfully verified.
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Maple [B] Leaf count of result is larger than twice the leaf count of optimal. \(913\) vs.
\(2(425)=850\).
time = 0.71, size = 914, normalized size = 2.08 Too large to display
Verification of antiderivative is not currently implemented for this CAS.
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Maxima [B] Leaf count of result is larger than twice the leaf count of optimal. 925 vs.
\(2 (432) = 864\).
time = 0.33, size = 925, normalized size = 2.10 \begin {gather*} -\frac {2310 \, c^{4} x^{8} e^{8} + 14 \, c^{4} d^{8} + 21 \, b c^{3} d^{7} e + 2310 \, {\left (2 \, c^{4} d e^{7} + 3 \, b c^{3} e^{8}\right )} x^{7} + 6 \, {\left (3 \, b^{2} c^{2} e^{2} + 2 \, a c^{3} e^{2}\right )} d^{6} + 462 \, {\left (14 \, c^{4} d^{2} e^{6} + 21 \, b c^{3} d e^{7} + 18 \, b^{2} c^{2} e^{8} + 12 \, a c^{3} e^{8}\right )} x^{6} + 10 \, {\left (b^{3} c e^{3} + 3 \, a b c^{2} e^{3}\right )} d^{5} + 462 \, {\left (14 \, c^{4} d^{3} e^{5} + 21 \, b c^{3} d^{2} e^{6} + 10 \, b^{3} c e^{8} + 30 \, a b c^{2} e^{8} + 6 \, {\left (3 \, b^{2} c^{2} e^{7} + 2 \, a c^{3} e^{7}\right )} d\right )} x^{5} + 252 \, a^{3} b d e^{7} + 3 \, {\left (b^{4} e^{4} + 12 \, a b^{2} c e^{4} + 6 \, a^{2} c^{2} e^{4}\right )} d^{4} + 330 \, {\left (14 \, c^{4} d^{4} e^{4} + 21 \, b c^{3} d^{3} e^{5} + 3 \, b^{4} e^{8} + 36 \, a b^{2} c e^{8} + 18 \, a^{2} c^{2} e^{8} + 6 \, {\left (3 \, b^{2} c^{2} e^{6} + 2 \, a c^{3} e^{6}\right )} d^{2} + 10 \, {\left (b^{3} c e^{7} + 3 \, a b c^{2} e^{7}\right )} d\right )} x^{4} + 630 \, a^{4} e^{8} + 21 \, {\left (a b^{3} e^{5} + 3 \, a^{2} b c e^{5}\right )} d^{3} + 165 \, {\left (14 \, c^{4} d^{5} e^{3} + 21 \, b c^{3} d^{4} e^{4} + 21 \, a b^{3} e^{8} + 63 \, a^{2} b c e^{8} + 6 \, {\left (3 \, b^{2} c^{2} e^{5} + 2 \, a c^{3} e^{5}\right )} d^{3} + 10 \, {\left (b^{3} c e^{6} + 3 \, a b c^{2} e^{6}\right )} d^{2} + 3 \, {\left (b^{4} e^{7} + 12 \, a b^{2} c e^{7} + 6 \, a^{2} c^{2} e^{7}\right )} d\right )} x^{3} + 28 \, {\left (3 \, a^{2} b^{2} e^{6} + 2 \, a^{3} c e^{6}\right )} d^{2} + 55 \, {\left (14 \, c^{4} d^{6} e^{2} + 21 \, b c^{3} d^{5} e^{3} + 6 \, {\left (3 \, b^{2} c^{2} e^{4} + 2 \, a c^{3} e^{4}\right )} d^{4} + 84 \, a^{2} b^{2} e^{8} + 56 \, a^{3} c e^{8} + 10 \, {\left (b^{3} c e^{5} + 3 \, a b c^{2} e^{5}\right )} d^{3} + 3 \, {\left (b^{4} e^{6} + 12 \, a b^{2} c e^{6} + 6 \, a^{2} c^{2} e^{6}\right )} d^{2} + 21 \, {\left (a b^{3} e^{7} + 3 \, a^{2} b c e^{7}\right )} d\right )} x^{2} + 11 \, {\left (14 \, c^{4} d^{7} e + 21 \, b c^{3} d^{6} e^{2} + 6 \, {\left (3 \, b^{2} c^{2} e^{3} + 2 \, a c^{3} e^{3}\right )} d^{5} + 10 \, {\left (b^{3} c e^{4} + 3 \, a b c^{2} e^{4}\right )} d^{4} + 252 \, a^{3} b e^{8} + 3 \, {\left (b^{4} e^{5} + 12 \, a b^{2} c e^{5} + 6 \, a^{2} c^{2} e^{5}\right )} d^{3} + 21 \, {\left (a b^{3} e^{6} + 3 \, a^{2} b c e^{6}\right )} d^{2} + 28 \, {\left (3 \, a^{2} b^{2} e^{7} + 2 \, a^{3} c e^{7}\right )} d\right )} x}{6930 \, {\left (x^{11} e^{20} + 11 \, d x^{10} e^{19} + 55 \, d^{2} x^{9} e^{18} + 165 \, d^{3} x^{8} e^{17} + 330 \, d^{4} x^{7} e^{16} + 462 \, d^{5} x^{6} e^{15} + 462 \, d^{6} x^{5} e^{14} + 330 \, d^{7} x^{4} e^{13} + 165 \, d^{8} x^{3} e^{12} + 55 \, d^{9} x^{2} e^{11} + 11 \, d^{10} x e^{10} + d^{11} e^{9}\right )}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Fricas [B] Leaf count of result is larger than twice the leaf count of optimal. 866 vs.
\(2 (432) = 864\).
time = 2.22, size = 866, normalized size = 1.97 \begin {gather*} -\frac {14 \, c^{4} d^{8} + {\left (2310 \, c^{4} x^{8} + 6930 \, b c^{3} x^{7} + 2772 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} x^{6} + 4620 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} x^{5} + 2772 \, a^{3} b x + 990 \, {\left (b^{4} + 12 \, a b^{2} c + 6 \, a^{2} c^{2}\right )} x^{4} + 630 \, a^{4} + 3465 \, {\left (a b^{3} + 3 \, a^{2} b c\right )} x^{3} + 1540 \, {\left (3 \, a^{2} b^{2} + 2 \, a^{3} c\right )} x^{2}\right )} e^{8} + {\left (4620 \, c^{4} d x^{7} + 9702 \, b c^{3} d x^{6} + 2772 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d x^{5} + 3300 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} d x^{4} + 252 \, a^{3} b d + 495 \, {\left (b^{4} + 12 \, a b^{2} c + 6 \, a^{2} c^{2}\right )} d x^{3} + 1155 \, {\left (a b^{3} + 3 \, a^{2} b c\right )} d x^{2} + 308 \, {\left (3 \, a^{2} b^{2} + 2 \, a^{3} c\right )} d x\right )} e^{7} + {\left (6468 \, c^{4} d^{2} x^{6} + 9702 \, b c^{3} d^{2} x^{5} + 1980 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d^{2} x^{4} + 1650 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} d^{2} x^{3} + 165 \, {\left (b^{4} + 12 \, a b^{2} c + 6 \, a^{2} c^{2}\right )} d^{2} x^{2} + 231 \, {\left (a b^{3} + 3 \, a^{2} b c\right )} d^{2} x + 28 \, {\left (3 \, a^{2} b^{2} + 2 \, a^{3} c\right )} d^{2}\right )} e^{6} + {\left (6468 \, c^{4} d^{3} x^{5} + 6930 \, b c^{3} d^{3} x^{4} + 990 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d^{3} x^{3} + 550 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} d^{3} x^{2} + 33 \, {\left (b^{4} + 12 \, a b^{2} c + 6 \, a^{2} c^{2}\right )} d^{3} x + 21 \, {\left (a b^{3} + 3 \, a^{2} b c\right )} d^{3}\right )} e^{5} + {\left (4620 \, c^{4} d^{4} x^{4} + 3465 \, b c^{3} d^{4} x^{3} + 330 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d^{4} x^{2} + 110 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} d^{4} x + 3 \, {\left (b^{4} + 12 \, a b^{2} c + 6 \, a^{2} c^{2}\right )} d^{4}\right )} e^{4} + {\left (2310 \, c^{4} d^{5} x^{3} + 1155 \, b c^{3} d^{5} x^{2} + 66 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d^{5} x + 10 \, {\left (b^{3} c + 3 \, a b c^{2}\right )} d^{5}\right )} e^{3} + {\left (770 \, c^{4} d^{6} x^{2} + 231 \, b c^{3} d^{6} x + 6 \, {\left (3 \, b^{2} c^{2} + 2 \, a c^{3}\right )} d^{6}\right )} e^{2} + 7 \, {\left (22 \, c^{4} d^{7} x + 3 \, b c^{3} d^{7}\right )} e}{6930 \, {\left (x^{11} e^{20} + 11 \, d x^{10} e^{19} + 55 \, d^{2} x^{9} e^{18} + 165 \, d^{3} x^{8} e^{17} + 330 \, d^{4} x^{7} e^{16} + 462 \, d^{5} x^{6} e^{15} + 462 \, d^{6} x^{5} e^{14} + 330 \, d^{7} x^{4} e^{13} + 165 \, d^{8} x^{3} e^{12} + 55 \, d^{9} x^{2} e^{11} + 11 \, d^{10} x e^{10} + d^{11} e^{9}\right )}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Sympy [F(-1)] Timed out
time = 0.00, size = 0, normalized size = 0.00 \begin {gather*} \text {Timed out} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Giac [B] Leaf count of result is larger than twice the leaf count of optimal. 945 vs.
\(2 (432) = 864\).
time = 1.10, size = 945, normalized size = 2.15 \begin {gather*} -\frac {{\left (2310 \, c^{4} x^{8} e^{8} + 4620 \, c^{4} d x^{7} e^{7} + 6468 \, c^{4} d^{2} x^{6} e^{6} + 6468 \, c^{4} d^{3} x^{5} e^{5} + 4620 \, c^{4} d^{4} x^{4} e^{4} + 2310 \, c^{4} d^{5} x^{3} e^{3} + 770 \, c^{4} d^{6} x^{2} e^{2} + 154 \, c^{4} d^{7} x e + 14 \, c^{4} d^{8} + 6930 \, b c^{3} x^{7} e^{8} + 9702 \, b c^{3} d x^{6} e^{7} + 9702 \, b c^{3} d^{2} x^{5} e^{6} + 6930 \, b c^{3} d^{3} x^{4} e^{5} + 3465 \, b c^{3} d^{4} x^{3} e^{4} + 1155 \, b c^{3} d^{5} x^{2} e^{3} + 231 \, b c^{3} d^{6} x e^{2} + 21 \, b c^{3} d^{7} e + 8316 \, b^{2} c^{2} x^{6} e^{8} + 5544 \, a c^{3} x^{6} e^{8} + 8316 \, b^{2} c^{2} d x^{5} e^{7} + 5544 \, a c^{3} d x^{5} e^{7} + 5940 \, b^{2} c^{2} d^{2} x^{4} e^{6} + 3960 \, a c^{3} d^{2} x^{4} e^{6} + 2970 \, b^{2} c^{2} d^{3} x^{3} e^{5} + 1980 \, a c^{3} d^{3} x^{3} e^{5} + 990 \, b^{2} c^{2} d^{4} x^{2} e^{4} + 660 \, a c^{3} d^{4} x^{2} e^{4} + 198 \, b^{2} c^{2} d^{5} x e^{3} + 132 \, a c^{3} d^{5} x e^{3} + 18 \, b^{2} c^{2} d^{6} e^{2} + 12 \, a c^{3} d^{6} e^{2} + 4620 \, b^{3} c x^{5} e^{8} + 13860 \, a b c^{2} x^{5} e^{8} + 3300 \, b^{3} c d x^{4} e^{7} + 9900 \, a b c^{2} d x^{4} e^{7} + 1650 \, b^{3} c d^{2} x^{3} e^{6} + 4950 \, a b c^{2} d^{2} x^{3} e^{6} + 550 \, b^{3} c d^{3} x^{2} e^{5} + 1650 \, a b c^{2} d^{3} x^{2} e^{5} + 110 \, b^{3} c d^{4} x e^{4} + 330 \, a b c^{2} d^{4} x e^{4} + 10 \, b^{3} c d^{5} e^{3} + 30 \, a b c^{2} d^{5} e^{3} + 990 \, b^{4} x^{4} e^{8} + 11880 \, a b^{2} c x^{4} e^{8} + 5940 \, a^{2} c^{2} x^{4} e^{8} + 495 \, b^{4} d x^{3} e^{7} + 5940 \, a b^{2} c d x^{3} e^{7} + 2970 \, a^{2} c^{2} d x^{3} e^{7} + 165 \, b^{4} d^{2} x^{2} e^{6} + 1980 \, a b^{2} c d^{2} x^{2} e^{6} + 990 \, a^{2} c^{2} d^{2} x^{2} e^{6} + 33 \, b^{4} d^{3} x e^{5} + 396 \, a b^{2} c d^{3} x e^{5} + 198 \, a^{2} c^{2} d^{3} x e^{5} + 3 \, b^{4} d^{4} e^{4} + 36 \, a b^{2} c d^{4} e^{4} + 18 \, a^{2} c^{2} d^{4} e^{4} + 3465 \, a b^{3} x^{3} e^{8} + 10395 \, a^{2} b c x^{3} e^{8} + 1155 \, a b^{3} d x^{2} e^{7} + 3465 \, a^{2} b c d x^{2} e^{7} + 231 \, a b^{3} d^{2} x e^{6} + 693 \, a^{2} b c d^{2} x e^{6} + 21 \, a b^{3} d^{3} e^{5} + 63 \, a^{2} b c d^{3} e^{5} + 4620 \, a^{2} b^{2} x^{2} e^{8} + 3080 \, a^{3} c x^{2} e^{8} + 924 \, a^{2} b^{2} d x e^{7} + 616 \, a^{3} c d x e^{7} + 84 \, a^{2} b^{2} d^{2} e^{6} + 56 \, a^{3} c d^{2} e^{6} + 2772 \, a^{3} b x e^{8} + 252 \, a^{3} b d e^{7} + 630 \, a^{4} e^{8}\right )} e^{\left (-9\right )}}{6930 \, {\left (x e + d\right )}^{11}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Mupad [B]
time = 1.09, size = 997, normalized size = 2.27 \begin {gather*} -\frac {\frac {630\,a^4\,e^8+252\,a^3\,b\,d\,e^7+56\,a^3\,c\,d^2\,e^6+84\,a^2\,b^2\,d^2\,e^6+63\,a^2\,b\,c\,d^3\,e^5+18\,a^2\,c^2\,d^4\,e^4+21\,a\,b^3\,d^3\,e^5+36\,a\,b^2\,c\,d^4\,e^4+30\,a\,b\,c^2\,d^5\,e^3+12\,a\,c^3\,d^6\,e^2+3\,b^4\,d^4\,e^4+10\,b^3\,c\,d^5\,e^3+18\,b^2\,c^2\,d^6\,e^2+21\,b\,c^3\,d^7\,e+14\,c^4\,d^8}{6930\,e^9}+\frac {x^3\,\left (63\,a^2\,b\,c\,e^5+18\,a^2\,c^2\,d\,e^4+21\,a\,b^3\,e^5+36\,a\,b^2\,c\,d\,e^4+30\,a\,b\,c^2\,d^2\,e^3+12\,a\,c^3\,d^3\,e^2+3\,b^4\,d\,e^4+10\,b^3\,c\,d^2\,e^3+18\,b^2\,c^2\,d^3\,e^2+21\,b\,c^3\,d^4\,e+14\,c^4\,d^5\right )}{42\,e^6}+\frac {x^4\,\left (18\,a^2\,c^2\,e^4+36\,a\,b^2\,c\,e^4+30\,a\,b\,c^2\,d\,e^3+12\,a\,c^3\,d^2\,e^2+3\,b^4\,e^4+10\,b^3\,c\,d\,e^3+18\,b^2\,c^2\,d^2\,e^2+21\,b\,c^3\,d^3\,e+14\,c^4\,d^4\right )}{21\,e^5}+\frac {x\,\left (252\,a^3\,b\,e^7+56\,a^3\,c\,d\,e^6+84\,a^2\,b^2\,d\,e^6+63\,a^2\,b\,c\,d^2\,e^5+18\,a^2\,c^2\,d^3\,e^4+21\,a\,b^3\,d^2\,e^5+36\,a\,b^2\,c\,d^3\,e^4+30\,a\,b\,c^2\,d^4\,e^3+12\,a\,c^3\,d^5\,e^2+3\,b^4\,d^3\,e^4+10\,b^3\,c\,d^4\,e^3+18\,b^2\,c^2\,d^5\,e^2+21\,b\,c^3\,d^6\,e+14\,c^4\,d^7\right )}{630\,e^8}+\frac {c^4\,x^8}{3\,e}+\frac {x^2\,\left (56\,a^3\,c\,e^6+84\,a^2\,b^2\,e^6+63\,a^2\,b\,c\,d\,e^5+18\,a^2\,c^2\,d^2\,e^4+21\,a\,b^3\,d\,e^5+36\,a\,b^2\,c\,d^2\,e^4+30\,a\,b\,c^2\,d^3\,e^3+12\,a\,c^3\,d^4\,e^2+3\,b^4\,d^2\,e^4+10\,b^3\,c\,d^3\,e^3+18\,b^2\,c^2\,d^4\,e^2+21\,b\,c^3\,d^5\,e+14\,c^4\,d^6\right )}{126\,e^7}+\frac {c^3\,x^7\,\left (3\,b\,e+2\,c\,d\right )}{3\,e^2}+\frac {c^2\,x^6\,\left (18\,b^2\,e^2+21\,b\,c\,d\,e+14\,c^2\,d^2+12\,a\,c\,e^2\right )}{15\,e^3}+\frac {c\,x^5\,\left (10\,b^3\,e^3+18\,b^2\,c\,d\,e^2+21\,b\,c^2\,d^2\,e+30\,a\,b\,c\,e^3+14\,c^3\,d^3+12\,a\,c^2\,d\,e^2\right )}{15\,e^4}}{d^{11}+11\,d^{10}\,e\,x+55\,d^9\,e^2\,x^2+165\,d^8\,e^3\,x^3+330\,d^7\,e^4\,x^4+462\,d^6\,e^5\,x^5+462\,d^5\,e^6\,x^6+330\,d^4\,e^7\,x^7+165\,d^3\,e^8\,x^8+55\,d^2\,e^9\,x^9+11\,d\,e^{10}\,x^{10}+e^{11}\,x^{11}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
[In]
[Out]
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