\"\"

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(a)

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The function is\"\" , \"\".

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

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\"\"

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\"\"

\

\"\"

\

\"\".

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\"\"

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\"\".

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

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\"\".

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\"\"

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\"\"

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\"\".

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\"\"

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(b)

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Find out the relative extrema by equating \"\".

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\"\"

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\"\" and  \"\" and \"\"

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\"\" and \"\".

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The critical values of \"\" and \"\".

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Substitute \"\" in the function.

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\"\"

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\"\".

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The point is \"\".

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Substitute \"\" in the function.

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Then, \"\".

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\"\".

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The point is \"\".

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Substitute \"\" in \"\"

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\"\"

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The point is \"\".

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The relative extrema points are \"\",\"\" and \"\".

\ \
\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
Point\"\"\"\"\"\"    
Sign of \"\" \

\"\"

\
\

\"\"

\
\"\"
ConclusionRelative maximumTest Fails \

Relative minimum

\
\

To determine the inflection point is \"\".

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\"\".

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\"\"

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The inflection points occurs at \"\", \"\", and \"\".

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\"\"

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 (c)

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Sketch the function \"\" ,\"\" and \"\".

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\"\"

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\"\"

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(a) \"\".

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     \"\".

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(b)

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The relative maximum in \"\".

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The relative minimum in \"\".

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The inflection points occurs at \"\", \"\", and \"\".

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(c)

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\"\".