3-1 mol of N2 gas in a volume of 300 K and 2 Lundergoes an isothermal reversible expansion up to 20 L final volume. In this case, calculate the work by assuming that the gas a) behaves ideally b) behaves in accordance with the van der Waals equation. Calculate the percent error in work when using the ideal gas equation instead of the van der Waals equation.

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter2: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 2.52E: Use the data in Table 2.2 to determine Hp T for Ar at 0C and 1atm. Make any reasonable assumptions...
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3-1 mol of N2 gas in a volume of 300 K and 2L undergoes an isothermal reversible expansion
up to 20 L final volume. In this case, calculate the work by assuming that the gas a) behaves
ideally b) behaves in accordance with the van der Waals equation. Calculate the percent error in
work when using the ideal gas equation instead of the van der Waals equation.
Transcribed Image Text:3-1 mol of N2 gas in a volume of 300 K and 2L undergoes an isothermal reversible expansion up to 20 L final volume. In this case, calculate the work by assuming that the gas a) behaves ideally b) behaves in accordance with the van der Waals equation. Calculate the percent error in work when using the ideal gas equation instead of the van der Waals equation.
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