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# Find the derivative $\frac{d}{dx}\left(\frac{-131}{4x}\right)$

## Step-by-step Solution

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###  Videos

$\frac{524}{16x^2}$
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##  Step-by-step Solution 

Problem to solve:

$\frac{d}{dx}\left(\frac{-131}{4x}\right)$

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Apply the quotient rule for differentiation, which states that if $f(x)$ and $g(x)$ are functions and $h(x)$ is the function defined by $h(x) = \frac{f(x)}{g(x)}$, where ${g(x) \neq 0}$, then $h'(x) = \frac{f'(x) \cdot g(x) - g'(x) \cdot f(x)}{g(x)^2}$

$\frac{4\frac{d}{dx}\left(-131\right)x+131\frac{d}{dx}\left(4x\right)}{\left(4x\right)^2}$

Learn how to solve quotient rule of differentiation problems step by step online.

$\frac{4\frac{d}{dx}\left(-131\right)x+131\frac{d}{dx}\left(4x\right)}{\left(4x\right)^2}$

Learn how to solve quotient rule of differentiation problems step by step online. Find the derivative d/dx(-131/(4x)). Apply the quotient rule for differentiation, which states that if f(x) and g(x) are functions and h(x) is the function defined by {\displaystyle h(x) = \frac{f(x)}{g(x)}}, where {g(x) \neq 0}, then {\displaystyle h'(x) = \frac{f'(x) \cdot g(x) - g'(x) \cdot f(x)}{g(x)^2}}. The power of a product is equal to the product of it's factors raised to the same power. The derivative of the constant function (-131) is equal to zero. Multiply 0 times 4.

$\frac{524}{16x^2}$

##  Explore different ways to solve this problem

Solving a math problem using different methods is important because it enhances understanding, encourages critical thinking, allows for multiple solutions, and develops problem-solving strategies. Read more

Find the derivativeFind d/dx(-131/(4x)) using the product ruleFind d/dx(-131/(4x)) using the quotient ruleFind d/dx(-131/(4x)) using logarithmic differentiationFind d/dx(-131/(4x)) using the definition

SnapXam A2

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0
a
b
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d
f
g
m
n
u
v
w
x
y
z
.
(◻)
+
-
×
◻/◻
/
÷
2

e
π
ln
log
log
lim
d/dx
Dx
|◻|
θ
=
>
<
>=
<=
sin
cos
tan
cot
sec
csc

asin
acos
atan
acot
asec
acsc

sinh
cosh
tanh
coth
sech
csch

asinh
acosh
atanh
acoth
asech
acsch

### Main topic:

Quotient Rule of differentiation

~ 0.06 s

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