\"\"

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The function is \"\".

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(a)

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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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As \"\" tends to \"\" from left side, the value of \"\" approaches to \"\".

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\"\".

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As \"\" tends to \"\" from right side, the value of \"\" approaches to \"\".

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\"\".

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Left hand limit and right hand limit are equal, so \"\" is exist.

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\"\".

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\"\"

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(b)

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The function is \"\".

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Construct the table with nearest value of \"\", to estimate the value of \"\":

\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
\"\"\"\"
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Observe the table :

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The value of \"\" at \"\" is \"\" and the value of \"\" at \"\" is \"\".

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So the value of \"\" at \"\" is \"\".

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\"\".

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\"\"

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(c)

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The limit of the function is \"\".

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Find the value of the limit using limit laws.

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Rationalize the numerator.

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\"\"

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Quotient law of limit : \"\", if \"\".

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                            \"\"

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Sum law of limit : \"\".

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                           \"\"

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Root law of limit : \"\".

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                           \"\"

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Sum law of limit : \"\".

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                          \"\"

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\"\".

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\"\"

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\"\".