\"\"

\

The function is \"\".

\

Fundamental theorem of calculus: 

\

If \"\" is continuous on \"\", then the function \"\" is defined by \"\" is continuous on \"\" and differentiable on \"\", then \"\".

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Here \"\".

\

\"\".

\

\"\".

\

Differentiate on each side with respect to \"\".

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\"\"

\

\"\"

\

\"\"

\

Find the points of inflection by equating \"\".

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\"\"

\

\"\"

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\"\" and \"\".

\

The test intervals are \"\" ,\"\" and \"\".

\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
\

Interval

\
Test ValueSign of \"\"Concavity
\"\"\"\"\"\"Concave Up
\"\"\"\"\"\" \

Concave Down

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\"\"\"\"\"\"Concave Up
\

The curve is concave down on the interval \"\".

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\"\"

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The curve is concave down on the interval \"\".