\"\"

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In the derivation of (4), the surface area is \"\".

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When \"\" is not necessarily positive, the approximations \"\"  and \"\"

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must be replaced by \"\" and \"\".

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From the proof of theorem 8.1.2, \"\".

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Thus, \"\".

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Continuing with the rest of the derivation as before, we obtain \"\". \"\"

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\"\".