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Finite Math Examples
Step 1
Step 1.1
Subtract from both sides of the equation.
Step 1.2
Subtract from both sides of the equation.
Step 1.3
Subtract from both sides of the equation.
Step 2
Step 2.1
Divide by .
Step 2.2
To write as a fraction with a common denominator, multiply by .
Step 2.3
Write each expression with a common denominator of , by multiplying each by an appropriate factor of .
Step 2.3.1
Multiply by .
Step 2.3.2
Raise to the power of .
Step 2.3.3
Raise to the power of .
Step 2.3.4
Use the power rule to combine exponents.
Step 2.3.5
Add and .
Step 2.3.6
Reorder the factors of .
Step 2.4
Combine the numerators over the common denominator.
Step 2.5
Simplify the numerator.
Step 2.5.1
Apply the distributive property.
Step 2.5.2
Multiply by .
Step 2.5.3
Expand using the FOIL Method.
Step 2.5.3.1
Apply the distributive property.
Step 2.5.3.2
Apply the distributive property.
Step 2.5.3.3
Apply the distributive property.
Step 2.5.4
Simplify and combine like terms.
Step 2.5.4.1
Simplify each term.
Step 2.5.4.1.1
Multiply by by adding the exponents.
Step 2.5.4.1.1.1
Move .
Step 2.5.4.1.1.2
Multiply by .
Step 2.5.4.1.2
Multiply by .
Step 2.5.4.1.3
Multiply by .
Step 2.5.4.2
Subtract from .
Step 2.6
To write as a fraction with a common denominator, multiply by .
Step 2.7
Write each expression with a common denominator of , by multiplying each by an appropriate factor of .
Step 2.7.1
Combine and .
Step 2.7.2
Reorder the factors of .
Step 2.8
Combine the numerators over the common denominator.
Step 2.9
Simplify the numerator.
Step 2.9.1
Apply the distributive property.
Step 2.9.2
Multiply by .
Step 2.9.3
Rewrite as .
Step 2.9.4
Expand using the FOIL Method.
Step 2.9.4.1
Apply the distributive property.
Step 2.9.4.2
Apply the distributive property.
Step 2.9.4.3
Apply the distributive property.
Step 2.9.5
Simplify and combine like terms.
Step 2.9.5.1
Simplify each term.
Step 2.9.5.1.1
Multiply by .
Step 2.9.5.1.2
Move to the left of .
Step 2.9.5.1.3
Multiply by .
Step 2.9.5.2
Add and .
Step 2.9.6
Expand by multiplying each term in the first expression by each term in the second expression.
Step 2.9.7
Simplify each term.
Step 2.9.7.1
Multiply by by adding the exponents.
Step 2.9.7.1.1
Move .
Step 2.9.7.1.2
Multiply by .
Step 2.9.7.1.2.1
Raise to the power of .
Step 2.9.7.1.2.2
Use the power rule to combine exponents.
Step 2.9.7.1.3
Add and .
Step 2.9.7.2
Multiply by by adding the exponents.
Step 2.9.7.2.1
Move .
Step 2.9.7.2.2
Multiply by .
Step 2.9.7.3
Multiply by .
Step 2.9.7.4
Multiply by .
Step 2.9.7.5
Rewrite using the commutative property of multiplication.
Step 2.9.7.6
Multiply by .
Step 2.9.7.7
Multiply by .
Step 2.9.8
Subtract from .
Step 2.9.9
Subtract from .
Step 2.10
To write as a fraction with a common denominator, multiply by .
Step 2.11
Multiply by .
Step 2.12
Combine the numerators over the common denominator.
Step 2.13
Simplify the numerator.
Step 2.13.1
Apply the distributive property.
Step 2.13.2
Multiply by .
Step 2.14
Factor out of .
Step 2.15
Factor out of .
Step 2.16
Factor out of .
Step 2.17
Factor out of .
Step 2.18
Factor out of .
Step 2.19
Factor out of .
Step 2.20
Factor out of .
Step 2.21
Factor out of .
Step 2.22
Factor out of .
Step 2.23
Factor out of .
Step 2.24
Factor out of .
Step 2.25
Factor out of .
Step 2.26
Factor out of .
Step 2.27
Factor out of .
Step 2.28
Factor out of .
Step 2.29
Factor out of .
Step 2.30
Factor out of .
Step 2.31
Factor out of .
Step 2.32
Factor out of .
Step 2.33
Rewrite as .
Step 2.34
Move the negative in front of the fraction.
Step 3
The domain of the expression is all real numbers except where the expression is undefined. In this case, there is no real number that makes the expression undefined.