The total pressure in a container is 25.0 atm. It contains 50.0% oxygen, 45.0% nitrogen, and the rest is hydrogen. What is the partial pressure of the hydrogen? This is a type of problem so we use the equation The container is 5.00% hydrogen, thus 5.00% of the 25.0 atm is from hydrogen. This corresponds to (0.0500)(25.0 atm) = atm a. missing variable f. 1 mol = 22.4 L k. P I. P₁ v. T₁ W. T₂ b. change in conditions h. PV = nRT g. D = m/V m. P₂ x. 1.25 n. V o. V₁ y. 12.5 Z. 125 c. density d. molar volume at STP e. partial pressure i. P₂V₂/n₂T₂ = P₁V₁/n₁T₁ j. Ptotal = P₁ + P₂+...... q. n r. n₁ s. n₂ t. R u. T p. V₂

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The total pressure in a container is 25.0 atm. It contains 50.0% oxygen, 45.0% nitrogen, and the rest is hydrogen. What is the partial pressure of the hydrogen?
This is a
type of problem so we use the equation
The container is 5.00% hydrogen, thus 5.00% of the 25.0 atm is from hydrogen. This corresponds to
(0.0500)(25.0 atm) =
atm
a. missing variable
f. 1 mol = 22.4 L
k. P
v. T₁
b. change in conditions
g. D = m/V h. PV = nRT
n. V o. V₁
I. P₁ m. P₂
W. T₂
x. 1.25
y. 12.5 Z. 125
c. density d. molar volume at STP
i. P₂V₂/n₂T₂ = P₁V₁/n₁T₁ j. Ptotal = P1 + P₂ +......
p. V₂
q. n
s. 1₂
t. R
u. T
e. partial pressure
r. n₁
Transcribed Image Text:The total pressure in a container is 25.0 atm. It contains 50.0% oxygen, 45.0% nitrogen, and the rest is hydrogen. What is the partial pressure of the hydrogen? This is a type of problem so we use the equation The container is 5.00% hydrogen, thus 5.00% of the 25.0 atm is from hydrogen. This corresponds to (0.0500)(25.0 atm) = atm a. missing variable f. 1 mol = 22.4 L k. P v. T₁ b. change in conditions g. D = m/V h. PV = nRT n. V o. V₁ I. P₁ m. P₂ W. T₂ x. 1.25 y. 12.5 Z. 125 c. density d. molar volume at STP i. P₂V₂/n₂T₂ = P₁V₁/n₁T₁ j. Ptotal = P1 + P₂ +...... p. V₂ q. n s. 1₂ t. R u. T e. partial pressure r. n₁
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