A 2.00 mole sample of Ar undergoes an isothermal reversible expansion from an initial volume of 2.00...

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Chemistry

A 2.00 mole sample of Arundergoes an isothermal reversible expansion from an initial volumeof 2.00 L to a final volume of 85.0L at 313 K .

a) Calculate the work done in this processusing the ideal gas equation of state.

b) Calculate the work done in this processusing the van der Waals equation of state.

c) What percentage of the work done by the vander Waals gas arises from the attractive potential?

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200 mole sample of Ar undergoes an isothermal reversible expansion from an initial volume of 200 L to a final volume of 850 L at 313 K aWork done in an isothermal reversible expansion of Argon Ar using the ideal gas equation of state Work done    See Answer
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