This experiment was performed using 1.000 atm of gas at 294.6 K. However, STP conditions are 1.000 atm and 273.15 K. Use the Ideal Gas Law to calculate the volume that the same number of moles of gas will occupy at STP. Calculate the molar volume at STP. How does your STP molar volume compare to the known value of 22.4 L? R is 0.0820 L-atm/(mol-K). Record your data in the table below.

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter9: The Gaseous State
Section: Chapter Questions
Problem 24P
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This experiment was performed using 1.000 atm of
gas at 294.6 K. However, STP conditions are
1.000 atm and 273.15 K. Use the Ideal Gas Law to
calculate the volume that the same number of
moles of gas will occupy at STP. Calculate the
molar volume at STP. How does your STP molar
volume compare to the known value of 22.4 L? R is
0.0820 L-atm/(mol-K). Record your data in the
table below.
Transcribed Image Text:This experiment was performed using 1.000 atm of gas at 294.6 K. However, STP conditions are 1.000 atm and 273.15 K. Use the Ideal Gas Law to calculate the volume that the same number of moles of gas will occupy at STP. Calculate the molar volume at STP. How does your STP molar volume compare to the known value of 22.4 L? R is 0.0820 L-atm/(mol-K). Record your data in the table below.
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