\"\"

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The function is \"\", \"\".

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Let the function as \"\".

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Solve above equation for \"\" in terms of \"\".

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\"\"

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\"\".

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To express the inverse function \"\" interms of \"\", interchange \"\" and \"\" then

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the resulting equation is \"\".

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\"\". 

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Inverse of the function is same as the function on \"\".

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\"\"

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Graph:

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Graph the function \"\" on \"\".

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\"\" 

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Observe the graph, the graph of \"\" is a quarter circle in first quadrant with \"\"-unit radius.

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\"\"

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Inverse of the function is \"\"

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Graph: 

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\"\"

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The graph of \"\" is a quarter circle in first quadrant with \"\"-unit radius.