Step 1:

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The indefinite integral is \"\".

\

Solve the integral using substitution method.

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Let \"\".

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Apply derivative on each side with respect to \"\".

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\"\"

\

\"\"

\

\"\"

\

\"\".

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Step 2:

\

Substitute \"\" and \"\" in integral.

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\"\"

\

\"\"

\

\"\"

\

\"\"

\

Apply power rule of integration \"\".

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\"\"

\

\"\"

\

\"\"

\

Substitute \"\".

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\"\".

\

\"\".

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Solution:

\

\"\".

\

 

\

Step 1:

\

The indefinite integral is \"\".

\

Solve the integral using substitution method.

\

Let \"\".

\

Apply derivative on each side with respect to \"\".

\

\"\"

\

\"\"

\

\"\"

\

\"\".

\

Step 2:

\

Substitute \"\" and \"\" in integral.

\

\"\"

\

\"\"

\

\"\"

\

\"\"

\

Apply power rule of integration \"\".

\

\"\"

\

\"\"

\

\"\"

\

Substitute \"\".

\

\"\".

\

\"\".

\

Solution:

\

\"\".

\

 

\

Step 1:

\

The indefinite integral is \"\".

\

Solve the integral using substitution method.

\

Let \"\".

\

Apply derivative on each side with respect to \"\".

\

\"\"

\

\"\"

\

\"\".

\

Step 2:

\

Substitute \"\", \"\" and \"\" in the integral.

\

\"\"

\

\"\"

\

\"\"

\

Apply poer rule if integration: \"\".

\

\"\"

\

\"\"

\

Substitute \"\".

\

\"\".

\

\"\".

\

Solution:

\

\"\".