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Differentiate w.r.t. x
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\frac{x^{2}+x-\left(\left(x-1\right)^{2}+x-1\right)}{2}
Since \frac{x^{2}+x}{2} and \frac{\left(x-1\right)^{2}+x-1}{2} have the same denominator, subtract them by subtracting their numerators.
\frac{x^{2}+x-x^{2}+2x-1-x+1}{2}
Do the multiplications in x^{2}+x-\left(\left(x-1\right)^{2}+x-1\right).
\frac{2x}{2}
Combine like terms in x^{2}+x-x^{2}+2x-1-x+1.
x
Cancel out 2 and 2.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{x^{2}+x-\left(\left(x-1\right)^{2}+x-1\right)}{2})
Since \frac{x^{2}+x}{2} and \frac{\left(x-1\right)^{2}+x-1}{2} have the same denominator, subtract them by subtracting their numerators.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{x^{2}+x-x^{2}+2x-1-x+1}{2})
Do the multiplications in x^{2}+x-\left(\left(x-1\right)^{2}+x-1\right).
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{2x}{2})
Combine like terms in x^{2}+x-x^{2}+2x-1-x+1.
\frac{\mathrm{d}}{\mathrm{d}x}(x)
Cancel out 2 and 2.
x^{1-1}
The derivative of ax^{n} is nax^{n-1}.
x^{0}
Subtract 1 from 1.
1
For any term t except 0, t^{0}=1.