4. 1 mole of an ideal gas at 300K and 1 atm reversibly expands against a piston, at con- stant temperature (isothermal), until the volume is doubled. The heat capacity of this gas is Cy.m = 2.5R. a) Calculate the work done by the gas during the expansion. 1 b) Calculate AU for this process. c) Is heat adsorbed or emitted by the gas during the expansion? How much?

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4. 1 mole of an ideal gas at 300K and 1 atm reversibly expands against a piston, at con-
stant temperature (isothermal), until the volume is doubled. The heat capacity of this gas
is Cym = 2.5R.
a) Calculate the work done by the gas during the expansion.
1
b) Calculate AU for this process.
c) Is heat adsorbed or emitted by the gas during the expansion? How much?
O G 4x
Transcribed Image Text:4. 1 mole of an ideal gas at 300K and 1 atm reversibly expands against a piston, at con- stant temperature (isothermal), until the volume is doubled. The heat capacity of this gas is Cym = 2.5R. a) Calculate the work done by the gas during the expansion. 1 b) Calculate AU for this process. c) Is heat adsorbed or emitted by the gas during the expansion? How much? O G 4x
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