1 mol of N2 gas in a volume of 300 K and 2 L undergoes an isothermal reversible expansion up to 20 L final volume. In this case, the gas a) considering to behave ideally b) Calculate the work, assuming that it behaves according to the van der Waals equation. Calculate the percent error in work when the ideal gas equation is used instead of the van der Waals equation.
1 mol of N2 gas in a volume of 300 K and 2 L undergoes an isothermal reversible expansion up to 20 L final volume. In this case, the gas a) considering to behave ideally b) Calculate the work, assuming that it behaves according to the van der Waals equation. Calculate the percent error in work when the ideal gas equation is used instead of the van der Waals equation.
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1 mol of N2 gas in a volume of 300 K and 2 L undergoes an isothermal reversible expansion up to 20 L final volume. In this case, the gas
a) considering to behave ideally
b) Calculate the work, assuming that it behaves according to the van der Waals equation.
Calculate the percent error in work when the ideal gas equation is used instead of the van der Waals equation.
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