4. a. One mole of an ideal gas at 300.0 K is reversibly and isothermally compressed from a volume of 25.0 L to a volume of 10.0 L. Because it is very large, the temperature of the water bath thermal reservoir in the surroundings remains essentially constant at 300.0 K during the process. Calculate q, w, AE and AH, ASSY ASSurr, AStotal and AG.

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4. a. One mole of an ideal gas at 300.0 K is reversibly and isothermally compressed from a volume of 25.0 L to a volume
of 10.0 L. Because it is very large, the temperature of the water bath thermal reservoir in the surroundings remains
essentially constant at 300.0 K during the process. Calculate q, w, AE and AH, ASSYS Assurre AStotal and AG.
Transcribed Image Text:4. a. One mole of an ideal gas at 300.0 K is reversibly and isothermally compressed from a volume of 25.0 L to a volume of 10.0 L. Because it is very large, the temperature of the water bath thermal reservoir in the surroundings remains essentially constant at 300.0 K during the process. Calculate q, w, AE and AH, ASSYS Assurre AStotal and AG.
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