\"\"

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The function is \"\".

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Intercept:

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To find the \"\"-intercept substitute \"\" in the function.

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\"\"

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\"\"

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\"\"

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\"\" and \"\"

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\"\"

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\"\" and \"\"

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The \"\"-intercept are \"\" and \"\".

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To find the \"\"-intercept substitute \"\" in the function.

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\"\"

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The \"\"-intercept is \"\".

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\"\"

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Find the extrema for  \"\".

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Differentiate  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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To find the critical numbers, equate \"\" to \"\".

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\"\"

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\"\".

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 \"\".

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The critical number is \"\".\"\"

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Find the points of inflection.

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The first derivative of \"\" is \"\".0

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

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\"\".

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\"\"

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\"\".

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The second derivative of \"\" is \"\".

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Equate \"\" to \"\".

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\"\".

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\"\"

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The inflection points occurs at  \"\".

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\"\"

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The critical numbers is \"\".

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Relative extrema points exist at critical numbers.

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Substitute \"\" in the function.

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\"\"

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\"\".

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Perform second derivative test to identify the nature of the extrema.

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\ \ \ \ \ \ \ \ \ \ \ \ \ \
Test valueSign of \"\"Conclusion
\"\" \

\"\"

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Relative maximum
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Relative maximum point is \"\".

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\"\"

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Find asymptote of function \"\".

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To find horizontal asymptote \"\".

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\"\".

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\"\".

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\"\".

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There is no horizontal asymptote.

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To find vertical asymptote,denominator of the function is equated to zero.

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The function is defined for all values of \"\".

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There is no vertical asymptote.

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\"\"

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Graph:

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Graph the function \"\".

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\"\"

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Observe the graph ,

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The intercepts are \"\", \"\" and \"\".

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Relative maximum point is \"\".

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The  inflection points occurs at  \"\".

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There is no horizontal and vertical asymptote.

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\"\"

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Graph the function \"\".

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\"\".