\"\"

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The function is \"\" and differential equation is \"\".

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The function is \"\".

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Apply first derivative on each side with respect to \"\".

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\"\"

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\"\"

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\"\"

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\"\"

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\"\"

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\"\"

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Apply second derivative on each side with respect to \"\".

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\"\"

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\"\"

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\"\"

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\"\"

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\"\"

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\"\"

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The differential equation is \"\".

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Consider \"\"

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Substitute \"\" and \"\" in above expression.

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\"\"

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Therefore, \"\".

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\"\"

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The function satisfies the differential equation \"\".