Humans and other mammals breathe in oxygen from the air for respiration. At the top of Mt Everest, assume the atmospheric pressure is 0.500 atm and the temperature is -35.0°C. Assume that the volume of one breath is still 0.500 L. Calculate the number of moles of air in one breath at the top of Mt Everest

Chemistry & Chemical Reactivity
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ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter10: Gases And Their Properties
Section: Chapter Questions
Problem 88GQ: A study of climbers who reached the summit of Mount Everest without supplemental oxygen showed that...
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Humans and other mammals breathe in oxygen from the air for respiration. At the top of Mt Everest, assume the atmospheric pressure is 0.500 atm and the temperature is -35.0°C. Assume that the volume of one breath is still 0.500 L. Calculate the number of moles of air in one breath at the top of Mt Everest.

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Humans and other mammals breathe in oxygen from the air for
respiration.
At the top of Mt Everest, assume the atmospheric pressure is 0.500
atm and the temperature is -35.0°C. Assume that the volume of one
breath is still 0.500 L. Calculate the number of moles of air in one
mol
breath at the top of Mt Everest.
1
3
Remember the gas constant, R, is 0.08206 L·atm/mol·K.
6.
C
7
8
9
+/-
х 100
PAGES
W
4+
Transcribed Image Text:Chrome File Edit View History Bookmarks People Tab Window Help 58% Wed 7:55 PM Chem 101 HW 101 Chem101 + app.101edu.co Question 2.e of 5 Submit Humans and other mammals breathe in oxygen from the air for respiration. At the top of Mt Everest, assume the atmospheric pressure is 0.500 atm and the temperature is -35.0°C. Assume that the volume of one breath is still 0.500 L. Calculate the number of moles of air in one mol breath at the top of Mt Everest. 1 3 Remember the gas constant, R, is 0.08206 L·atm/mol·K. 6. C 7 8 9 +/- х 100 PAGES W 4+
Expert Solution
Step 1

Ideal gases are those gases which follow ideal gas equation. The relation between pressure, volume, number of moles, ideal gas constant and temperature is represented by this equation. Write the expression of Ideal gas equation.

PV=nRT                   

where P is the pressure of the gas in atm, V is the volume of the gas in L, n is the number of moles, R is the ideal gas constant and T is the temperature of the gas.

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