\"\" \ \

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The series is \"\".

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\"\".  \ \

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\"\"

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Therefore, the series approaches to \"\".

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Observe the graph \"\":

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

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The series approaches to \"\".

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The series matches the graph \"\".

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\"\"

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Prove analytically.

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The series is \"\".

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The series is a geometric series.

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Sum of the \"\" terms in the geometric series \"\" is \"\".

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\"\"

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\"\".

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The series approaches to \"\".

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\"\"

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The series matches the graph \"\".