14. A sample containing 2.50 moles of a perfect gas at 325 K is expanded isothermally from an initial volume of 10.5 L to a final volume of 60.0L. a. Calculate the final pressure. b. Calculate ∆G and ∆A for this process through a reversible path. c. Calculate ∆G and ∆A for this process through an irreversible path against a constant external pressure equal to the final pressure. d. Explain why ∆G and ∆A do or do not differ from one another.

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14. A sample containing 2.50 moles of a perfect gas at 325 K is expanded isothermally from an initial volume of 10.5 L to a final volume of 60.0L.
a. Calculate the final pressure.
b. Calculate ∆G and ∆A for this process through a reversible path.
c. Calculate ∆G and ∆A for this process through an irreversible path against a constant external pressure equal to the final pressure.
d. Explain why ∆G and ∆A do or do not differ from one another.

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