You are doing an experiment with two flasks connected with a stopcock. Flask #1 has a volume of 2.8 L and contains oxygen gas at a pressure of 0.75 atm and flask #2 has a volume of 3.6 L and contains hydrogen gas at a pressure of 1.2 atm. You opened the stopcock between the two flasks and the gases are allowed to mix and found out that the resulting pressure of the gas mixture is 1.01 atm. Present a solution showing how the resulting pressure of the gas mixture came up with 1.01 atm.

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter8: Properties Of Gases
Section8.7: Kinetic-molecular Theory And The Velocities Of Gas Molecules
Problem 8.12PSP
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You are doing an experiment with two flasks connected with a stopcock. Flask #1 has a volume of
2.8 L and contains oxygen gas at a pressure of 0.75 atm and flask #2 has a volume of 3.6 L and
contains hydrogen gas at a pressure of 1.2 atm. You opened the stopcock between the two flasks
and the gases are allowed to mix and found out that the resulting pressure of the gas mixture is
1.01 atm. Present a solution showing how the resulting pressure of the gas mixture came up with
1.01 atm.
Transcribed Image Text:You are doing an experiment with two flasks connected with a stopcock. Flask #1 has a volume of 2.8 L and contains oxygen gas at a pressure of 0.75 atm and flask #2 has a volume of 3.6 L and contains hydrogen gas at a pressure of 1.2 atm. You opened the stopcock between the two flasks and the gases are allowed to mix and found out that the resulting pressure of the gas mixture is 1.01 atm. Present a solution showing how the resulting pressure of the gas mixture came up with 1.01 atm.
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