\"\"

\

The integral is \"\".

\

\"\" is discontinuous at \"\".

\

If \"\" is continuous on the interval \"\" and has an infinite discontinuity at \"\", then

\

\"\", the limit exists then function is convergent.

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\"\".

\

\"\"

\

\"\"

\

Consider \"\".

\

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

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\"\"

\

\"\".

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Substitute \"\" and \"\".

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\"\"

\

\"\"

\

\"\"

\

Substitute \"\".

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\"\"

\

\"\"

\

\"\"

\

\"\"

\

Therefore, the series is diverges.

\

\"\"

\

The improper integral \"\" is diverges.