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\frac{2}{\left(x+4\right)\left(3x+8\right)}+\frac{1}{x+4}
Factor 3x^{2}+20x+32.
\frac{2}{\left(x+4\right)\left(3x+8\right)}+\frac{3x+8}{\left(x+4\right)\left(3x+8\right)}
To add or subtract expressions, expand them to make their denominators the same. Least common multiple of \left(x+4\right)\left(3x+8\right) and x+4 is \left(x+4\right)\left(3x+8\right). Multiply \frac{1}{x+4} times \frac{3x+8}{3x+8}.
\frac{2+3x+8}{\left(x+4\right)\left(3x+8\right)}
Since \frac{2}{\left(x+4\right)\left(3x+8\right)} and \frac{3x+8}{\left(x+4\right)\left(3x+8\right)} have the same denominator, add them by adding their numerators.
\frac{10+3x}{\left(x+4\right)\left(3x+8\right)}
Combine like terms in 2+3x+8.
\frac{10+3x}{3x^{2}+20x+32}
Expand \left(x+4\right)\left(3x+8\right).
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{2}{\left(x+4\right)\left(3x+8\right)}+\frac{1}{x+4})
Factor 3x^{2}+20x+32.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{2}{\left(x+4\right)\left(3x+8\right)}+\frac{3x+8}{\left(x+4\right)\left(3x+8\right)})
To add or subtract expressions, expand them to make their denominators the same. Least common multiple of \left(x+4\right)\left(3x+8\right) and x+4 is \left(x+4\right)\left(3x+8\right). Multiply \frac{1}{x+4} times \frac{3x+8}{3x+8}.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{2+3x+8}{\left(x+4\right)\left(3x+8\right)})
Since \frac{2}{\left(x+4\right)\left(3x+8\right)} and \frac{3x+8}{\left(x+4\right)\left(3x+8\right)} have the same denominator, add them by adding their numerators.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{10+3x}{\left(x+4\right)\left(3x+8\right)})
Combine like terms in 2+3x+8.
\frac{\mathrm{d}}{\mathrm{d}x}(\frac{10+3x}{3x^{2}+20x+32})
Use the distributive property to multiply x+4 by 3x+8 and combine like terms.
\frac{\left(3x^{2}+20x^{1}+32\right)\frac{\mathrm{d}}{\mathrm{d}x}(3x^{1}+10)-\left(3x^{1}+10\right)\frac{\mathrm{d}}{\mathrm{d}x}(3x^{2}+20x^{1}+32)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
For any two differentiable functions, the derivative of the quotient of two functions is the denominator times the derivative of the numerator minus the numerator times the derivative of the denominator, all divided by the denominator squared.
\frac{\left(3x^{2}+20x^{1}+32\right)\times 3x^{1-1}-\left(3x^{1}+10\right)\left(2\times 3x^{2-1}+20x^{1-1}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
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}.
\frac{\left(3x^{2}+20x^{1}+32\right)\times 3x^{0}-\left(3x^{1}+10\right)\left(6x^{1}+20x^{0}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
Simplify.
\frac{3x^{2}\times 3x^{0}+20x^{1}\times 3x^{0}+32\times 3x^{0}-\left(3x^{1}+10\right)\left(6x^{1}+20x^{0}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
Multiply 3x^{2}+20x^{1}+32 times 3x^{0}.
\frac{3x^{2}\times 3x^{0}+20x^{1}\times 3x^{0}+32\times 3x^{0}-\left(3x^{1}\times 6x^{1}+3x^{1}\times 20x^{0}+10\times 6x^{1}+10\times 20x^{0}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
Multiply 3x^{1}+10 times 6x^{1}+20x^{0}.
\frac{3\times 3x^{2}+20\times 3x^{1}+32\times 3x^{0}-\left(3\times 6x^{1+1}+3\times 20x^{1}+10\times 6x^{1}+10\times 20x^{0}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
To multiply powers of the same base, add their exponents.
\frac{9x^{2}+60x^{1}+96x^{0}-\left(18x^{2}+60x^{1}+60x^{1}+200x^{0}\right)}{\left(3x^{2}+20x^{1}+32\right)^{2}}
Simplify.
\frac{-9x^{2}-60x^{1}-104x^{0}}{\left(3x^{2}+20x^{1}+32\right)^{2}}
Combine like terms.
\frac{-9x^{2}-60x-104x^{0}}{\left(3x^{2}+20x+32\right)^{2}}
For any term t, t^{1}=t.
\frac{-9x^{2}-60x-104}{\left(3x^{2}+20x+32\right)^{2}}
For any term t except 0, t^{0}=1.