According to the ideal gas law, a 9.629 mol sample of nitrogen gas in a 0.8290 L container at 496.3 K should exert a pressure of 473.0 atm. What is the percent difference between the pressure calculated using the van der Waals' equation and the ideal pressure? For N2 gas, a = 1.390 L²atm/mol? and b = 3.910×10-2 L/mol. Pideal – Pvan der Waals - Percent difference = x 100 Pideal+Pean der Waals 2 43.6 % An error has been detected in your answer. Check for typos, miscalculations etc. before submitting your answer.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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According to the ideal gas law, a 9.629 mol sample of nitrogen
gas in a 0.8290 L container at 496.3 K should exert a pressure of
473.0 atm. What is the percent difference between the pressure
calculated using the van der Waals' equation and the ideal
pressure? For N2 gas, a = 1.390 L²atm/mol? and b = 3.910×10-2
L/mol.
Pideal – Pvan der Waals
-
Percent difference =
x 100
Pideal+Pean der Waals
2
43.6
%
An error has been detected in your answer. Check for typos,
miscalculations etc. before submitting your answer.
Transcribed Image Text:According to the ideal gas law, a 9.629 mol sample of nitrogen gas in a 0.8290 L container at 496.3 K should exert a pressure of 473.0 atm. What is the percent difference between the pressure calculated using the van der Waals' equation and the ideal pressure? For N2 gas, a = 1.390 L²atm/mol? and b = 3.910×10-2 L/mol. Pideal – Pvan der Waals - Percent difference = x 100 Pideal+Pean der Waals 2 43.6 % An error has been detected in your answer. Check for typos, miscalculations etc. before submitting your answer.
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