Solve Using Dalton’s Law of Calculate a Partial Pressure Problem 1. The total pressure exerted by a mixture of O2, N2, and He gases is 1.50 atm. What is the partial pressure, in the atmosphere, of the O2, given that the partial pressures of the N2 and He are 0.75 and 0.33 atm, respectively? Problem 2. A gas mixture contains O2, N2, and Ar at partial pressures of 125, 175, and 225 mm Hg, respectively. If CO2 gas is added to the mixture until the total pressure reaches 623 mm Hg, what is the partial pressure, in millimeters of mercury, of CO2?

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
Section8.8: The Behavior Of Real (non-ideal) Gases
Problem 8.18E
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Solve Using Dalton’s Law of Calculate a Partial Pressure

Problem 1. The total pressure exerted by a mixture of O2, N2, and He gases is 1.50 atm. What is the partial pressure, in the atmosphere, of the O2, given that the partial pressures of the N2 and He are 0.75 and 0.33 atm, respectively?

Problem 2. A gas mixture contains O2, N2, and Ar at partial pressures of 125, 175, and 225 mm Hg, respectively. If CO2 gas is added to the mixture until the total pressure reaches 623 mm Hg, what is the partial pressure, in millimeters of mercury, of CO2?

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