There is an ever-present gas mixture that chemists must consider in all situations air. When we use air as a source of oxygen for chemical reactions, we must be able to calculate the moles, volume and pressure of the oxygen in that mixture. Nitrogen - 78.084% Oxygen - 20.948% Argon - 0.934% Carbon Dioxide - 0.035% On a particular day, the air pressure in the chemistry lab is 1.137 atm. Perform the following calculations based on this air pressure. What is the partial pressure of oxygen in the room on that day? How many moles of oxygen molecules would be in a 10.0-L sample of air from the room on that day (assume room temperature is 22 °C)?

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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There is an ever-present gas mixture that chemists must consider in all situations air. When we use air as a source of oxygen for chemical reactions, we must be able to calculate the moles, volume and pressure of the oxygen in that mixture.

Nitrogen - 78.084%

Oxygen - 20.948%

Argon - 0.934%

Carbon Dioxide - 0.035%

On a particular day, the air pressure in the chemistry lab is 1.137 atm. Perform the following calculations based on this air pressure.

What is the partial pressure of oxygen in the room on that day?

How many moles of oxygen molecules would be in a 10.0-L sample of air from the room on that day (assume room temperature is 22 °C)?

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