3.17 \(\int \frac {1}{x^3} \, dx\)

Optimal. Leaf size=7 \[ -\frac {1}{2 x^2} \]

[Out]

-1/2/x^2

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Rubi [A]  time = 0.00, antiderivative size = 7, normalized size of antiderivative = 1.00, number of steps used = 1, number of rules used = 1, integrand size = 3, \(\frac {\text {number of rules}}{\text {integrand size}}\) = 0.333, Rules used = {30} \[ -\frac {1}{2 x^2} \]

Antiderivative was successfully verified.

[In]

Int[x^(-3),x]

[Out]

-1/(2*x^2)

Rule 30

Int[(x_)^(m_.), x_Symbol] :> Simp[x^(m + 1)/(m + 1), x] /; FreeQ[m, x] && NeQ[m, -1]

Rubi steps

\begin {align*} \int \frac {1}{x^3} \, dx &=-\frac {1}{2 x^2}\\ \end {align*}

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Mathematica [A]  time = 0.00, size = 7, normalized size = 1.00 \[ -\frac {1}{2 x^2} \]

Antiderivative was successfully verified.

[In]

Integrate[x^(-3),x]

[Out]

-1/2*1/x^2

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fricas [A]  time = 0.37, size = 5, normalized size = 0.71 \[ -\frac {1}{2 \, x^{2}} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

integrate(1/x^3,x, algorithm="fricas")

[Out]

-1/2/x^2

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giac [A]  time = 0.84, size = 5, normalized size = 0.71 \[ -\frac {1}{2 \, x^{2}} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

integrate(1/x^3,x, algorithm="giac")

[Out]

-1/2/x^2

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maple [A]  time = 0.00, size = 6, normalized size = 0.86 \[ -\frac {1}{2 x^{2}} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

int(1/x^3,x)

[Out]

-1/2/x^2

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maxima [A]  time = 0.49, size = 5, normalized size = 0.71 \[ -\frac {1}{2 \, x^{2}} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

integrate(1/x^3,x, algorithm="maxima")

[Out]

-1/2/x^2

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mupad [B]  time = 0.01, size = 5, normalized size = 0.71 \[ -\frac {1}{2\,x^2} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

int(1/x^3,x)

[Out]

-1/(2*x^2)

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sympy [A]  time = 0.06, size = 7, normalized size = 1.00 \[ - \frac {1}{2 x^{2}} \]

Verification of antiderivative is not currently implemented for this CAS.

[In]

integrate(1/x**3,x)

[Out]

-1/(2*x**2)

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