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College Physics Study Set 3
Quiz 10: Gases
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Question 61
Short Answer
What is the total translational kinetic energy of the gas in a classroom filled with nitrogen at
1.01
×
1
0
5
P
a
1.01 \times 10 ^ { 5 } \mathrm {~Pa}
1.01
×
1
0
5
Pa
at
20.
7
∘
C
?
20.7 ^ { \circ } \mathrm { C } \text { ? }
20.
7
∘
C
?
The dimensions of the classroom are
4.60
m
×
5.20
m
×
8.80
m
.
4.60 \mathrm {~m} \times 5.20 \mathrm {~m} \times 8.80 \mathrm {~m} .
4.60
m
×
5.20
m
×
8.80
m
.
The Boltzmann constant is 1.3806503 × 10
-23
J/K,R = 8.31 J/mol ∙ K,and N
A
= 6.022 × 10
23
molecules/mol.
Question 62
Multiple Choice
A sealed container holds 0.020 moles of ideal nitrogen (N
2
) gas,at a pressure of 1.5 atm and a temperature of 290 K.The atomic mass of nitrogen is 14.0 g/mol.What is the average translational kinetic energy of a nitrogen molecule? The Boltzmann constant is 1.38 × 10
-23
J/K.
Question 63
Multiple Choice
The molecular weight of nitrogen,N
2
,is 28 g/mol.What is the rms speed of nitrogen molecules in a cooler at 8.0°C? The Boltzmann constant is 1.38 × 10
-23
J/K and N
A
= 6.022 × 10
23
molecules/mol.
Question 64
Multiple Choice
A 24.0-L tank contains ideal helium gas at 27°C and a pressure of 22.0 atm.How many moles of gas are in the tank? (R = 8.31 J/mol ∙ K,1 atm = 101 kPa)
Question 65
Multiple Choice
What is the average translational kinetic energy of an ideal gas at
819
K
?
819 \mathrm {~K} \text { ? }
819
K
?
The Boltzmann constant is 1.38 × 10
-23
J/K.
Question 66
Multiple Choice
At what temperature would the root mean square speed of oxygen molecules,O
2
,be
14.0
m
/
s
14.0 \mathrm {~m} / \mathrm { s }
14.0
m
/
s
if oxygen behaves like an ideal gas? The mass of one O
2
molecule is 5.312 × 10
-26
kg,and the Boltzmann constant is 1.38 × 10
-23
J/K.
Question 67
Multiple Choice
If the temperature of a gas is increased from 20°C to 100°C,by what factor does the rms speed of an ideal molecule change?
Question 68
Short Answer
A flask contains a mixture of argon and neon gases at a stabilized temperature.The root-mean-square speed of the argon gas is determined to be 1.21 km/s.What is the root-mean-square speed of the neon gas? The atomic mass of argon is 39.95 g/mol,and that of neon is 20.18 g/mol.
Question 69
Multiple Choice
A 5.3 L flask of ideal neon gas (which is monatomic) is at a pressure of 6.0 atm and a temperature of
290
K
.
290 \mathrm {~K} .
290
K
.
The atomic mass of neon is 20.2 g/mol.What is the mass of the neon gas in the flask.(R = 8.31 J/mol ∙ K,1 atm = 101 kPa,N
A
= 6.022 × 10
23
molecules/mol)
Question 70
Multiple Choice
A sealed container holds 0.020 moles of ideal nitrogen (N
2
) gas,at a pressure of 1.5 atm and a temperature of 290 K.The atomic mass of nitrogen is 14.0 g/mol.How many molecules of nitrogen are in the container? (R = 8.31 J/mol ∙ K,1 atm = 101 kPa)
Question 71
Multiple Choice
A 0.50
m
3
m ^ { 3 }
m
3
gas tank holds 3.0 moles of ideal diatomic nitrogen gas at a temperature of
350
K
.
350 \mathrm {~K} .
350
K
.
The atomic mass of nitrogen is
14.0
g
/
m
o
l
14.0 \mathrm {~g} / \mathrm { mol }
14.0
g
/
mol
What is the rms speed of the molecules? (The Boltzmann constant is 1.38 × 10
-23
J/K,N
A
= 6.022 × 10
23
molecules/mol.)
Question 72
Multiple Choice
At what temperature is the rms speed of hydrogen molecules,H
2
,which have a molecular weight of 2.02 g/mole,equal to 2.0 km/s? The Boltzmann constant is 1.38 × 10
-23
J/K and N
A
= 6.022 × 10
23
molecules/mol.
Question 73
Multiple Choice
A 4.2-L flask of ideal neon gas (which is monatomic) is at a pressure of 3.3 atm and a temperature of 450 K.The atomic mass of neon is 20.2 g/mol.How many neon atoms are in the flask? (R = 8.31 J/mol ∙ K,1 atm = 101 kPa,N
A
= 6.022 × 10
23
molecules/mol)
Question 74
Multiple Choice
An oxygen molecule,O
2
,falls in a vacuum.From what height must it fall so that its translational kinetic energy at the bottom of its fall equals the average translational kinetic energy of an oxygen molecule at 920 K? The mass of one O
2
molecule is 5.312 × 10
-26
kg,and the Boltzmann constant is 1.38 × 10
-23
J/K.Neglect air resistance and assume that g remains constant at 9.8 m/s
2
throughout the fall of the molecule.
Question 75
Multiple Choice
The rms speed of a certain sample of carbon dioxide molecules,with a molecular weight of 44.0 g/mole,is 396 m/s.What is the rms speed of water vapor molecules,with a molecular weight of 18.0 g/mol,at the same temperature as the carbon dioxide?