\"\"

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The function is \"\".

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By evaluating function \"\" for a few large positive values of \"\" to complete the table.

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For all values of \"\", substitute those in function \"\" to complete the table.

\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"
\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"
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Use above values \"\" and \"\" to draw the graph.

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Graph:

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\"\"

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\"\"

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The function is \"\".

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Find the limit as approaches to infinity.

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\"\"

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Both the numerator and denominator approach infinity as \"\" approaches infinity.

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This result an indeterminate form.

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Divide both the numerator and denominator by \"\".

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\"\"

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Simply the above expression

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\"\"

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\"\"

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\"\"

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\"\"

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Limits at infinity : \"\",\"\".

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\"\"

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\"\"

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\"\"

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\"\"

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The function of \"\".

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\"\"

\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"
\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"\"
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Graph of the function is

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\"\"

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\"\".