An aluminum pan whose thermal conductivity is 237 W/m-K hasa flat bottom with diameter 15 cm and thickness 0.4cm. Heat is transferred steadily to boiling water in the pan through its bottom at a rate of 1400 W. If the inner surface of the bottom of the pan is at 105°C, determine the temperature of the outer surface of the bottom of the par
An aluminum pan whose thermal conductivity is 237 W/m-K hasa flat bottom with diameter 15 cm and thickness 0.4cm. Heat is transferred steadily to boiling water in the pan through its bottom at a rate of 1400 W. If the inner surface of the bottom of the pan is at 105°C, determine the temperature of the outer surface of the bottom of the par
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
Transcribed Image Text:An aluminum pan whose thermal conductivity is 237 W/m-K hasa flat bottom with diameter 15 cm
and thickness 0.4cm. Heat is transferred steadily to boiling water in the pan through its bottom at
a rate of 1400 W. If the inner surface of the bottom of the pan is at 105°C, determine the
temperature of the outer surface of the bottom of the pan
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