Finite Math Examples

Find Where Undefined/Discontinuous (9x)/((x+1)(x+4)^2)=a/1+b/(x+4)+c/((x+4)^2)
Step 1
Move all the expressions to the left side of the equation.
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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
Simplify .
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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 .
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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.
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Step 2.5.1
Apply the distributive property.
Step 2.5.2
Multiply by .
Step 2.5.3
Expand using the FOIL Method.
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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.
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Step 2.5.4.1
Simplify each term.
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Step 2.5.4.1.1
Multiply by by adding the exponents.
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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 .
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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.
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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.
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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.
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Step 2.9.5.1
Simplify each term.
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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.
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Step 2.9.7.1
Multiply by by adding the exponents.
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Step 2.9.7.1.1
Move .
Step 2.9.7.1.2
Multiply by .
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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.
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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.
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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.