(II) An ideal gas expands at a constant total pressure of3.0 atm from 410 mL to 690 mL. Heat then flows out of thegas at constant volume, and the pressure and temperatureare allowed to drop until the temperature reaches itsoriginal value. Calculate (a) the total work done by the gasin the process, and (b) the total heat flow into the gas.

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Chapter1: Units, Trigonometry. And Vectors
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(II) An ideal gas expands at a constant total pressure of
3.0 atm from 410 mL to 690 mL. Heat then flows out of the
gas at constant volume, and the pressure and temperature
are allowed to drop until the temperature reaches its
original value. Calculate (a) the total work done by the gas
in the process, and (b) the total heat flow into the gas.

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