According to the ideal gas law, a 10.24 mol sample of xenon gas in a 0.8381 L container at 499.4 K should exert a pressure of 500.7 atm. What is the percent difference between the pressure calculated using the van der Waals' equation and the ideal pressure? For Xe gas, a 4.194 L²atm/mol² and b = 5.105×102 L/mol. = Percent difference | Pideal – Pvan der Waals | × 100 Pideal+Pvan der Waals % 2

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter5: Gases
Section: Chapter Questions
Problem 5.101PAE
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According to the ideal gas law, a 10.24 mol sample of xenon gas in a 0.8381 L container at 499.4 K should exert a pressure of 500.7
atm. What is the percent difference between the pressure calculated using the van der Waals' equation and the ideal pressure? For
Xe gas, a 4.194 L²atm/mol² and b = 5.105×102 L/mol.
=
Percent difference
| Pideal – Pvan der Waals |
× 100
Pideal+Pvan der Waals
%
2
Transcribed Image Text:According to the ideal gas law, a 10.24 mol sample of xenon gas in a 0.8381 L container at 499.4 K should exert a pressure of 500.7 atm. What is the percent difference between the pressure calculated using the van der Waals' equation and the ideal pressure? For Xe gas, a 4.194 L²atm/mol² and b = 5.105×102 L/mol. = Percent difference | Pideal – Pvan der Waals | × 100 Pideal+Pvan der Waals % 2
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