Calculus Examples

Integrate Using u-Substitution integral of (x^2)/( square root of x+2) with respect to x
Step 1
Let . Then . Rewrite using and .
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Step 1.1
Let . Find .
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Step 1.1.1
Differentiate .
Step 1.1.2
By the Sum Rule, the derivative of with respect to is .
Step 1.1.3
Differentiate using the Power Rule which states that is where .
Step 1.1.4
Since is constant with respect to , the derivative of with respect to is .
Step 1.1.5
Add and .
Step 1.2
Rewrite the problem using and .
Step 2
Apply basic rules of exponents.
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Step 2.1
Use to rewrite as .
Step 2.2
Move out of the denominator by raising it to the power.
Step 2.3
Multiply the exponents in .
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Step 2.3.1
Apply the power rule and multiply exponents, .
Step 2.3.2
Combine and .
Step 2.3.3
Move the negative in front of the fraction.
Step 3
Let . Then . Rewrite using and .
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Step 3.1
Let . Find .
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Step 3.1.1
Differentiate .
Step 3.1.2
By the Sum Rule, the derivative of with respect to is .
Step 3.1.3
Differentiate using the Power Rule which states that is where .
Step 3.1.4
Since is constant with respect to , the derivative of with respect to is .
Step 3.1.5
Add and .
Step 3.2
Rewrite the problem using and .
Step 4
Let . Then . Rewrite using and .
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Step 4.1
Let . Find .
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Step 4.1.1
Differentiate .
Step 4.1.2
By the Sum Rule, the derivative of with respect to is .
Step 4.1.3
Differentiate using the Power Rule which states that is where .
Step 4.1.4
Since is constant with respect to , the derivative of with respect to is .
Step 4.1.5
Add and .
Step 4.2
Rewrite the problem using and .
Step 5
Simplify.
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Step 5.1
Rewrite as .
Step 5.2
Apply the distributive property.
Step 5.3
Apply the distributive property.
Step 5.4
Apply the distributive property.
Step 5.5
Apply the distributive property.
Step 5.6
Apply the distributive property.
Step 5.7
Apply the distributive property.
Step 5.8
Reorder and .
Step 5.9
Raise to the power of .
Step 5.10
Raise to the power of .
Step 5.11
Use the power rule to combine exponents.
Step 5.12
Add and .
Step 5.13
Use the power rule to combine exponents.
Step 5.14
To write as a fraction with a common denominator, multiply by .
Step 5.15
Combine and .
Step 5.16
Combine the numerators over the common denominator.
Step 5.17
Simplify the numerator.
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Step 5.17.1
Multiply by .
Step 5.17.2
Subtract from .
Step 5.18
Raise to the power of .
Step 5.19
Use the power rule to combine exponents.
Step 5.20
Write as a fraction with a common denominator.
Step 5.21
Combine the numerators over the common denominator.
Step 5.22
Subtract from .
Step 5.23
Raise to the power of .
Step 5.24
Use the power rule to combine exponents.
Step 5.25
Write as a fraction with a common denominator.
Step 5.26
Combine the numerators over the common denominator.
Step 5.27
Subtract from .
Step 5.28
Multiply by .
Step 5.29
Subtract from .
Step 5.30
Reorder and .
Step 5.31
Reorder and .
Step 6
Split the single integral into multiple integrals.
Step 7
Since is constant with respect to , move out of the integral.
Step 8
By the Power Rule, the integral of with respect to is .
Step 9
By the Power Rule, the integral of with respect to is .
Step 10
Since is constant with respect to , move out of the integral.
Step 11
By the Power Rule, the integral of with respect to is .
Step 12
Simplify.
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Step 12.1
Combine and .
Step 12.2
Simplify.
Step 13
Reorder terms.
Step 14
Simplify.
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Step 14.1
Combine and .
Step 14.2
Multiply by .
Step 14.3
Move the negative in front of the fraction.
Step 15
Substitute back in for each integration substitution variable.
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Step 15.1
Replace all occurrences of with .
Step 15.2
Replace all occurrences of with .
Step 15.3
Replace all occurrences of with .
Step 16
Simplify.
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Step 16.1
Subtract from .
Step 16.2
Add and .
Step 16.3
Subtract from .
Step 16.4
Add and .
Step 16.5
Subtract from .
Step 16.6
Add and .
Step 16.7
Combine and .
Step 17
Reorder terms.