\"\"

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The statement is true.

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For the limit of \"\" to exist to at  \"\", \"\" must be allowed to get arbitrarily close to \"\".

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Consider the values closer to \"\" to find the limit of the function at \"\".

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If the limit of the function as \"\" approaches \"\" is \"\".

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\"\" approaches to zero as \"\".

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\"\" closer to zero and smaller than \"\".

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Then values closer to \"\" exist such that \"\".

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\"\"

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The statement is true.

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