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Evaluate
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Differentiate w.r.t. x
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\frac{1}{x^{2}x}
Multiply x and x to get x^{2}.
\frac{1}{x^{3}}
To multiply powers of the same base, add their exponents. Add 2 and 1 to get 3.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{1}{x^{2}x})
Multiply x and x to get x^{2}.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{1}{x^{3}})
To multiply powers of the same base, add their exponents. Add 2 and 1 to get 3.
-\left(x^{3}\right)^{-1-1}\frac{\mathrm{d}}{\mathrm{d}x}(x^{3})
If F is the composition of two differentiable functions f\left(u\right) and u=g\left(x\right), that is, if F\left(x\right)=f\left(g\left(x\right)\right), then the derivative of F is the derivative of f with respect to u times the derivative of g with respect to x, that is, \frac{\mathrm{d}}{\mathrm{d}x}(F)\left(x\right)=\frac{\mathrm{d}}{\mathrm{d}x}(f)\left(g\left(x\right)\right)\frac{\mathrm{d}}{\mathrm{d}x}(g)\left(x\right).
-\left(x^{3}\right)^{-2}\times 3x^{3-1}
The derivative of a polynomial is the sum of the derivatives of its terms. The derivative of a constant term is 0. The derivative of ax^{n} is nax^{n-1}.
-3x^{2}\left(x^{3}\right)^{-2}
Simplify.