\"\"

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The statement is \"\".

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Continuity Implies Integrability Theorem:

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If a function \"\" is continuous on the closed interval \"\", then \"\" is integrable on \"\".

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\"\" exists.

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Consider the function \"\".

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Rewrite the function as \"\".

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The function is not continuous on the interval \"\".

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\"\"

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Each of these integral is infinite.

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The function is not integrable on \"\".

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\"\" has a non removable discontinuity at \"\".

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\"\"

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\"\" has a non removable discontinuity at \"\".