\"\"

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The expression is \"\", where \"\" is a continupus function, \"\" and \"\" are differentiable functions.

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Consider \"\".

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Part 2 of the fundamental theorem of calculus :

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If \"\" is continuous on \"\", \"\".

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Where \"\" is any anti derivative of \"\" , that is a function such that \"\".

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\"\".

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Where \"\" is anti derivative of \"\".

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\"\".

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Differentiate on each side with respect to \"\"

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\"\".

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Apply chain rule to find the derivative of the above expression.

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\"\".\"\"

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\"\".