Optimal. Leaf size=225 \[ -\frac {160 d^3 (c+d x) \cos (a+b x)}{9 b^4}+\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {488 d^4 \sin (a+b x)}{27 b^5}-\frac {80 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {8 d^4 \sin ^3(a+b x)}{81 b^5} \]
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Rubi [A]
time = 0.16, antiderivative size = 225, normalized size of antiderivative = 1.00, number of steps
used = 12, number of rules used = 4, integrand size = 16, \(\frac {\text {number of rules}}{\text {integrand size}}\) = 0.250, Rules used = {3392, 3377,
2717, 2713} \begin {gather*} -\frac {8 d^4 \sin ^3(a+b x)}{81 b^5}+\frac {488 d^4 \sin (a+b x)}{27 b^5}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}-\frac {160 d^3 (c+d x) \cos (a+b x)}{9 b^4}-\frac {80 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}-\frac {4 d^2 (c+d x)^2 \sin (a+b x) \cos ^2(a+b x)}{9 b^3}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}+\frac {(c+d x)^4 \sin (a+b x) \cos ^2(a+b x)}{3 b} \end {gather*}
Antiderivative was successfully verified.
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Rule 2713
Rule 2717
Rule 3377
Rule 3392
Rubi steps
\begin {align*} \int (c+d x)^4 \cos ^3(a+b x) \, dx &=\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}+\frac {2}{3} \int (c+d x)^4 \cos (a+b x) \, dx-\frac {\left (4 d^2\right ) \int (c+d x)^2 \cos ^3(a+b x) \, dx}{3 b^2}\\ &=-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {(8 d) \int (c+d x)^3 \sin (a+b x) \, dx}{3 b}-\frac {\left (8 d^2\right ) \int (c+d x)^2 \cos (a+b x) \, dx}{9 b^2}+\frac {\left (8 d^4\right ) \int \cos ^3(a+b x) \, dx}{27 b^4}\\ &=\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}-\frac {8 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {\left (8 d^2\right ) \int (c+d x)^2 \cos (a+b x) \, dx}{b^2}+\frac {\left (16 d^3\right ) \int (c+d x) \sin (a+b x) \, dx}{9 b^3}-\frac {\left (8 d^4\right ) \text {Subst}\left (\int \left (1-x^2\right ) \, dx,x,-\sin (a+b x)\right )}{27 b^5}\\ &=-\frac {16 d^3 (c+d x) \cos (a+b x)}{9 b^4}+\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {8 d^4 \sin (a+b x)}{27 b^5}-\frac {80 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {8 d^4 \sin ^3(a+b x)}{81 b^5}+\frac {\left (16 d^3\right ) \int (c+d x) \sin (a+b x) \, dx}{b^3}+\frac {\left (16 d^4\right ) \int \cos (a+b x) \, dx}{9 b^4}\\ &=-\frac {160 d^3 (c+d x) \cos (a+b x)}{9 b^4}+\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {56 d^4 \sin (a+b x)}{27 b^5}-\frac {80 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {8 d^4 \sin ^3(a+b x)}{81 b^5}+\frac {\left (16 d^4\right ) \int \cos (a+b x) \, dx}{b^4}\\ &=-\frac {160 d^3 (c+d x) \cos (a+b x)}{9 b^4}+\frac {8 d (c+d x)^3 \cos (a+b x)}{3 b^2}-\frac {8 d^3 (c+d x) \cos ^3(a+b x)}{27 b^4}+\frac {4 d (c+d x)^3 \cos ^3(a+b x)}{9 b^2}+\frac {488 d^4 \sin (a+b x)}{27 b^5}-\frac {80 d^2 (c+d x)^2 \sin (a+b x)}{9 b^3}+\frac {2 (c+d x)^4 \sin (a+b x)}{3 b}-\frac {4 d^2 (c+d x)^2 \cos ^2(a+b x) \sin (a+b x)}{9 b^3}+\frac {(c+d x)^4 \cos ^2(a+b x) \sin (a+b x)}{3 b}-\frac {8 d^4 \sin ^3(a+b x)}{81 b^5}\\ \end {align*}
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Mathematica [A]
time = 0.59, size = 385, normalized size = 1.71 \begin {gather*} \frac {972 b d (c+d x) \left (-6 d^2+b^2 (c+d x)^2\right ) \cos (a+b x)+12 b d (c+d x) \left (-2 d^2+3 b^2 (c+d x)^2\right ) \cos (3 (a+b x))+243 b^4 c^4 \sin (a+b x)-2916 b^2 c^2 d^2 \sin (a+b x)+5832 d^4 \sin (a+b x)+972 b^4 c^3 d x \sin (a+b x)-5832 b^2 c d^3 x \sin (a+b x)+1458 b^4 c^2 d^2 x^2 \sin (a+b x)-2916 b^2 d^4 x^2 \sin (a+b x)+972 b^4 c d^3 x^3 \sin (a+b x)+243 b^4 d^4 x^4 \sin (a+b x)+27 b^4 c^4 \sin (3 (a+b x))-36 b^2 c^2 d^2 \sin (3 (a+b x))+8 d^4 \sin (3 (a+b x))+108 b^4 c^3 d x \sin (3 (a+b x))-72 b^2 c d^3 x \sin (3 (a+b x))+162 b^4 c^2 d^2 x^2 \sin (3 (a+b x))-36 b^2 d^4 x^2 \sin (3 (a+b x))+108 b^4 c d^3 x^3 \sin (3 (a+b x))+27 b^4 d^4 x^4 \sin (3 (a+b x))}{324 b^5} \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. \(1022\) vs.
\(2(205)=410\).
time = 0.18, size = 1023, normalized size = 4.55
method | result | size |
risch | \(\frac {3 d \left (b^{2} d^{3} x^{3}+3 b^{2} c \,d^{2} x^{2}+3 b^{2} c^{2} d x +b^{2} c^{3}-6 d^{3} x -6 c \,d^{2}\right ) \cos \left (b x +a \right )}{b^{4}}+\frac {3 \left (d^{4} x^{4} b^{4}+4 b^{4} c \,d^{3} x^{3}+6 b^{4} c^{2} d^{2} x^{2}+4 b^{4} c^{3} d x +c^{4} b^{4}-12 b^{2} d^{4} x^{2}-24 b^{2} c \,d^{3} x -12 b^{2} c^{2} d^{2}+24 d^{4}\right ) \sin \left (b x +a \right )}{4 b^{5}}+\frac {d \left (3 b^{2} d^{3} x^{3}+9 b^{2} c \,d^{2} x^{2}+9 b^{2} c^{2} d x +3 b^{2} c^{3}-2 d^{3} x -2 c \,d^{2}\right ) \cos \left (3 b x +3 a \right )}{27 b^{4}}+\frac {\left (27 d^{4} x^{4} b^{4}+108 b^{4} c \,d^{3} x^{3}+162 b^{4} c^{2} d^{2} x^{2}+108 b^{4} c^{3} d x +27 c^{4} b^{4}-36 b^{2} d^{4} x^{2}-72 b^{2} c \,d^{3} x -36 b^{2} c^{2} d^{2}+8 d^{4}\right ) \sin \left (3 b x +3 a \right )}{324 b^{5}}\) | \(344\) |
derivativedivides | \(\text {Expression too large to display}\) | \(1023\) |
default | \(\text {Expression too large to display}\) | \(1023\) |
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.
\(2 (205) = 410\).
time = 0.34, size = 925, normalized size = 4.11 \begin {gather*} -\frac {108 \, {\left (\sin \left (b x + a\right )^{3} - 3 \, \sin \left (b x + a\right )\right )} c^{4} - \frac {432 \, {\left (\sin \left (b x + a\right )^{3} - 3 \, \sin \left (b x + a\right )\right )} a c^{3} d}{b} + \frac {648 \, {\left (\sin \left (b x + a\right )^{3} - 3 \, \sin \left (b x + a\right )\right )} a^{2} c^{2} d^{2}}{b^{2}} - \frac {432 \, {\left (\sin \left (b x + a\right )^{3} - 3 \, \sin \left (b x + a\right )\right )} a^{3} c d^{3}}{b^{3}} + \frac {108 \, {\left (\sin \left (b x + a\right )^{3} - 3 \, \sin \left (b x + a\right )\right )} a^{4} d^{4}}{b^{4}} - \frac {36 \, {\left (3 \, {\left (b x + a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 27 \, {\left (b x + a\right )} \sin \left (b x + a\right ) + \cos \left (3 \, b x + 3 \, a\right ) + 27 \, \cos \left (b x + a\right )\right )} c^{3} d}{b} + \frac {108 \, {\left (3 \, {\left (b x + a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 27 \, {\left (b x + a\right )} \sin \left (b x + a\right ) + \cos \left (3 \, b x + 3 \, a\right ) + 27 \, \cos \left (b x + a\right )\right )} a c^{2} d^{2}}{b^{2}} - \frac {108 \, {\left (3 \, {\left (b x + a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 27 \, {\left (b x + a\right )} \sin \left (b x + a\right ) + \cos \left (3 \, b x + 3 \, a\right ) + 27 \, \cos \left (b x + a\right )\right )} a^{2} c d^{3}}{b^{3}} + \frac {36 \, {\left (3 \, {\left (b x + a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 27 \, {\left (b x + a\right )} \sin \left (b x + a\right ) + \cos \left (3 \, b x + 3 \, a\right ) + 27 \, \cos \left (b x + a\right )\right )} a^{3} d^{4}}{b^{4}} - \frac {18 \, {\left (6 \, {\left (b x + a\right )} \cos \left (3 \, b x + 3 \, a\right ) + 162 \, {\left (b x + a\right )} \cos \left (b x + a\right ) + {\left (9 \, {\left (b x + a\right )}^{2} - 2\right )} \sin \left (3 \, b x + 3 \, a\right ) + 81 \, {\left ({\left (b x + a\right )}^{2} - 2\right )} \sin \left (b x + a\right )\right )} c^{2} d^{2}}{b^{2}} + \frac {36 \, {\left (6 \, {\left (b x + a\right )} \cos \left (3 \, b x + 3 \, a\right ) + 162 \, {\left (b x + a\right )} \cos \left (b x + a\right ) + {\left (9 \, {\left (b x + a\right )}^{2} - 2\right )} \sin \left (3 \, b x + 3 \, a\right ) + 81 \, {\left ({\left (b x + a\right )}^{2} - 2\right )} \sin \left (b x + a\right )\right )} a c d^{3}}{b^{3}} - \frac {18 \, {\left (6 \, {\left (b x + a\right )} \cos \left (3 \, b x + 3 \, a\right ) + 162 \, {\left (b x + a\right )} \cos \left (b x + a\right ) + {\left (9 \, {\left (b x + a\right )}^{2} - 2\right )} \sin \left (3 \, b x + 3 \, a\right ) + 81 \, {\left ({\left (b x + a\right )}^{2} - 2\right )} \sin \left (b x + a\right )\right )} a^{2} d^{4}}{b^{4}} - \frac {12 \, {\left ({\left (9 \, {\left (b x + a\right )}^{2} - 2\right )} \cos \left (3 \, b x + 3 \, a\right ) + 243 \, {\left ({\left (b x + a\right )}^{2} - 2\right )} \cos \left (b x + a\right ) + 3 \, {\left (3 \, {\left (b x + a\right )}^{3} - 2 \, b x - 2 \, a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 81 \, {\left ({\left (b x + a\right )}^{3} - 6 \, b x - 6 \, a\right )} \sin \left (b x + a\right )\right )} c d^{3}}{b^{3}} + \frac {12 \, {\left ({\left (9 \, {\left (b x + a\right )}^{2} - 2\right )} \cos \left (3 \, b x + 3 \, a\right ) + 243 \, {\left ({\left (b x + a\right )}^{2} - 2\right )} \cos \left (b x + a\right ) + 3 \, {\left (3 \, {\left (b x + a\right )}^{3} - 2 \, b x - 2 \, a\right )} \sin \left (3 \, b x + 3 \, a\right ) + 81 \, {\left ({\left (b x + a\right )}^{3} - 6 \, b x - 6 \, a\right )} \sin \left (b x + a\right )\right )} a d^{4}}{b^{4}} - \frac {{\left (12 \, {\left (3 \, {\left (b x + a\right )}^{3} - 2 \, b x - 2 \, a\right )} \cos \left (3 \, b x + 3 \, a\right ) + 972 \, {\left ({\left (b x + a\right )}^{3} - 6 \, b x - 6 \, a\right )} \cos \left (b x + a\right ) + {\left (27 \, {\left (b x + a\right )}^{4} - 36 \, {\left (b x + a\right )}^{2} + 8\right )} \sin \left (3 \, b x + 3 \, a\right ) + 243 \, {\left ({\left (b x + a\right )}^{4} - 12 \, {\left (b x + a\right )}^{2} + 24\right )} \sin \left (b x + a\right )\right )} d^{4}}{b^{4}}}{324 \, b} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Fricas [A]
time = 0.39, size = 350, normalized size = 1.56 \begin {gather*} \frac {12 \, {\left (3 \, b^{3} d^{4} x^{3} + 9 \, b^{3} c d^{3} x^{2} + 3 \, b^{3} c^{3} d - 2 \, b c d^{3} + {\left (9 \, b^{3} c^{2} d^{2} - 2 \, b d^{4}\right )} x\right )} \cos \left (b x + a\right )^{3} + 72 \, {\left (3 \, b^{3} d^{4} x^{3} + 9 \, b^{3} c d^{3} x^{2} + 3 \, b^{3} c^{3} d - 20 \, b c d^{3} + {\left (9 \, b^{3} c^{2} d^{2} - 20 \, b d^{4}\right )} x\right )} \cos \left (b x + a\right ) + {\left (54 \, b^{4} d^{4} x^{4} + 216 \, b^{4} c d^{3} x^{3} + 54 \, b^{4} c^{4} - 720 \, b^{2} c^{2} d^{2} + 1456 \, d^{4} + 36 \, {\left (9 \, b^{4} c^{2} d^{2} - 20 \, b^{2} d^{4}\right )} x^{2} + {\left (27 \, b^{4} d^{4} x^{4} + 108 \, b^{4} c d^{3} x^{3} + 27 \, b^{4} c^{4} - 36 \, b^{2} c^{2} d^{2} + 8 \, d^{4} + 18 \, {\left (9 \, b^{4} c^{2} d^{2} - 2 \, b^{2} d^{4}\right )} x^{2} + 36 \, {\left (3 \, b^{4} c^{3} d - 2 \, b^{2} c d^{3}\right )} x\right )} \cos \left (b x + a\right )^{2} + 72 \, {\left (3 \, b^{4} c^{3} d - 20 \, b^{2} c d^{3}\right )} x\right )} \sin \left (b x + a\right )}{81 \, b^{5}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Sympy [B] Leaf count of result is larger than twice the leaf count of optimal. 772 vs.
\(2 (226) = 452\).
time = 0.78, size = 772, normalized size = 3.43 \begin {gather*} \begin {cases} \frac {2 c^{4} \sin ^{3}{\left (a + b x \right )}}{3 b} + \frac {c^{4} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{b} + \frac {8 c^{3} d x \sin ^{3}{\left (a + b x \right )}}{3 b} + \frac {4 c^{3} d x \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{b} + \frac {4 c^{2} d^{2} x^{2} \sin ^{3}{\left (a + b x \right )}}{b} + \frac {6 c^{2} d^{2} x^{2} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{b} + \frac {8 c d^{3} x^{3} \sin ^{3}{\left (a + b x \right )}}{3 b} + \frac {4 c d^{3} x^{3} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{b} + \frac {2 d^{4} x^{4} \sin ^{3}{\left (a + b x \right )}}{3 b} + \frac {d^{4} x^{4} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{b} + \frac {8 c^{3} d \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{3 b^{2}} + \frac {28 c^{3} d \cos ^{3}{\left (a + b x \right )}}{9 b^{2}} + \frac {8 c^{2} d^{2} x \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{b^{2}} + \frac {28 c^{2} d^{2} x \cos ^{3}{\left (a + b x \right )}}{3 b^{2}} + \frac {8 c d^{3} x^{2} \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{b^{2}} + \frac {28 c d^{3} x^{2} \cos ^{3}{\left (a + b x \right )}}{3 b^{2}} + \frac {8 d^{4} x^{3} \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{3 b^{2}} + \frac {28 d^{4} x^{3} \cos ^{3}{\left (a + b x \right )}}{9 b^{2}} - \frac {80 c^{2} d^{2} \sin ^{3}{\left (a + b x \right )}}{9 b^{3}} - \frac {28 c^{2} d^{2} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{3 b^{3}} - \frac {160 c d^{3} x \sin ^{3}{\left (a + b x \right )}}{9 b^{3}} - \frac {56 c d^{3} x \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{3 b^{3}} - \frac {80 d^{4} x^{2} \sin ^{3}{\left (a + b x \right )}}{9 b^{3}} - \frac {28 d^{4} x^{2} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{3 b^{3}} - \frac {160 c d^{3} \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{9 b^{4}} - \frac {488 c d^{3} \cos ^{3}{\left (a + b x \right )}}{27 b^{4}} - \frac {160 d^{4} x \sin ^{2}{\left (a + b x \right )} \cos {\left (a + b x \right )}}{9 b^{4}} - \frac {488 d^{4} x \cos ^{3}{\left (a + b x \right )}}{27 b^{4}} + \frac {1456 d^{4} \sin ^{3}{\left (a + b x \right )}}{81 b^{5}} + \frac {488 d^{4} \sin {\left (a + b x \right )} \cos ^{2}{\left (a + b x \right )}}{27 b^{5}} & \text {for}\: b \neq 0 \\\left (c^{4} x + 2 c^{3} d x^{2} + 2 c^{2} d^{2} x^{3} + c d^{3} x^{4} + \frac {d^{4} x^{5}}{5}\right ) \cos ^{3}{\left (a \right )} & \text {otherwise} \end {cases} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Giac [A]
time = 0.50, size = 351, normalized size = 1.56 \begin {gather*} \frac {{\left (3 \, b^{3} d^{4} x^{3} + 9 \, b^{3} c d^{3} x^{2} + 9 \, b^{3} c^{2} d^{2} x + 3 \, b^{3} c^{3} d - 2 \, b d^{4} x - 2 \, b c d^{3}\right )} \cos \left (3 \, b x + 3 \, a\right )}{27 \, b^{5}} + \frac {3 \, {\left (b^{3} d^{4} x^{3} + 3 \, b^{3} c d^{3} x^{2} + 3 \, b^{3} c^{2} d^{2} x + b^{3} c^{3} d - 6 \, b d^{4} x - 6 \, b c d^{3}\right )} \cos \left (b x + a\right )}{b^{5}} + \frac {{\left (27 \, b^{4} d^{4} x^{4} + 108 \, b^{4} c d^{3} x^{3} + 162 \, b^{4} c^{2} d^{2} x^{2} + 108 \, b^{4} c^{3} d x + 27 \, b^{4} c^{4} - 36 \, b^{2} d^{4} x^{2} - 72 \, b^{2} c d^{3} x - 36 \, b^{2} c^{2} d^{2} + 8 \, d^{4}\right )} \sin \left (3 \, b x + 3 \, a\right )}{324 \, b^{5}} + \frac {3 \, {\left (b^{4} d^{4} x^{4} + 4 \, b^{4} c d^{3} x^{3} + 6 \, b^{4} c^{2} d^{2} x^{2} + 4 \, b^{4} c^{3} d x + b^{4} c^{4} - 12 \, b^{2} d^{4} x^{2} - 24 \, b^{2} c d^{3} x - 12 \, b^{2} c^{2} d^{2} + 24 \, d^{4}\right )} \sin \left (b x + a\right )}{4 \, b^{5}} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
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Mupad [B]
time = 1.14, size = 532, normalized size = 2.36 \begin {gather*} \frac {2\,{\sin \left (a+b\,x\right )}^3\,\left (27\,b^4\,c^4-360\,b^2\,c^2\,d^2+728\,d^4\right )}{81\,b^5}-\frac {4\,{\cos \left (a+b\,x\right )}^3\,\left (122\,c\,d^3-21\,b^2\,c^3\,d\right )}{27\,b^4}+\frac {{\cos \left (a+b\,x\right )}^2\,\sin \left (a+b\,x\right )\,\left (27\,b^4\,c^4-252\,b^2\,c^2\,d^2+488\,d^4\right )}{27\,b^5}-\frac {8\,\cos \left (a+b\,x\right )\,{\sin \left (a+b\,x\right )}^2\,\left (20\,c\,d^3-3\,b^2\,c^3\,d\right )}{9\,b^4}+\frac {28\,d^4\,x^3\,{\cos \left (a+b\,x\right )}^3}{9\,b^2}-\frac {4\,x\,{\cos \left (a+b\,x\right )}^3\,\left (122\,d^4-63\,b^2\,c^2\,d^2\right )}{27\,b^4}+\frac {2\,d^4\,x^4\,{\sin \left (a+b\,x\right )}^3}{3\,b}-\frac {8\,x\,{\sin \left (a+b\,x\right )}^3\,\left (20\,c\,d^3-3\,b^2\,c^3\,d\right )}{9\,b^3}-\frac {4\,x^2\,{\sin \left (a+b\,x\right )}^3\,\left (20\,d^4-9\,b^2\,c^2\,d^2\right )}{9\,b^3}-\frac {2\,x^2\,{\cos \left (a+b\,x\right )}^2\,\sin \left (a+b\,x\right )\,\left (14\,d^4-9\,b^2\,c^2\,d^2\right )}{3\,b^3}+\frac {28\,c\,d^3\,x^2\,{\cos \left (a+b\,x\right )}^3}{3\,b^2}+\frac {d^4\,x^4\,{\cos \left (a+b\,x\right )}^2\,\sin \left (a+b\,x\right )}{b}+\frac {8\,d^4\,x^3\,\cos \left (a+b\,x\right )\,{\sin \left (a+b\,x\right )}^2}{3\,b^2}+\frac {8\,c\,d^3\,x^3\,{\sin \left (a+b\,x\right )}^3}{3\,b}-\frac {8\,x\,\cos \left (a+b\,x\right )\,{\sin \left (a+b\,x\right )}^2\,\left (20\,d^4-9\,b^2\,c^2\,d^2\right )}{9\,b^4}-\frac {4\,x\,{\cos \left (a+b\,x\right )}^2\,\sin \left (a+b\,x\right )\,\left (14\,c\,d^3-3\,b^2\,c^3\,d\right )}{3\,b^3}+\frac {4\,c\,d^3\,x^3\,{\cos \left (a+b\,x\right )}^2\,\sin \left (a+b\,x\right )}{b}+\frac {8\,c\,d^3\,x^2\,\cos \left (a+b\,x\right )\,{\sin \left (a+b\,x\right )}^2}{b^2} \end {gather*}
Verification of antiderivative is not currently implemented for this CAS.
[In]
[Out]
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