Simplify the expression $6m^xn^am^2n$

Step-by-step Solution

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Final answer to the problem

$6m^{\left(x+2\right)}n^{\left(a+1\right)}$
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Step-by-step Solution

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  • Choose an option
  • Write in simplest form
  • Solve by quadratic formula (general formula)
  • Find the derivative using the definition
  • Simplify
  • Find the integral
  • Find the derivative
  • Factor
  • Factor by completing the square
  • Find the roots
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When multiplying exponents with same base we can add the exponents

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$6m^{\left(x+2\right)}n^an$

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Learn how to solve differential calculus problems step by step online. Simplify the expression 6m^xn^am^2n. When multiplying exponents with same base we can add the exponents. When multiplying exponents with same base you can add the exponents: 6m^{\left(x+2\right)}n^an.

Final answer to the problem

$6m^{\left(x+2\right)}n^{\left(a+1\right)}$

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Plotting: $6m^{\left(x+2\right)}n^{\left(a+1\right)}$

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Go!
1
2
3
4
5
6
7
8
9
0
a
b
c
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

How to improve your answer:

Main Topic: Differential Calculus

The derivative of a function of a real variable measures the sensitivity to change of a quantity (a function value or dependent variable) which is determined by another quantity (the independent variable). Derivatives are a fundamental tool of calculus.

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