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A sample of hydrogen gas exerts a pressure of 466 torr in a container. What is this pressure in atmospheres? (1 atm = 1.01325 ×105 Pa = 760 torr)


A) 0.217 atm
B) 0.466 atm
C) 0.613 atm
D) 1.63 atm
E) 4.60 atm

F) A) and B)
G) D) and E)

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Which of the following gas molecules have the highest average kinetic energy at 25°C?


A) H2
B) O2
C) N2
D) Cl2
E) All the gases have the same average kinetic energy.

F) A) and B)
G) B) and D)

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Which sample of gas is least likely to behave ideally?


A) 1 mol He(g) at 400 K, 1 atm pressure
B) 1 mol Ne(g) at 400 K, 1 atm pressure
C) 1 mol H2(g) at 400 K, 1 atm pressure
D) 1 mol O2(g) at 400 K, 1 atm pressure
E) 1 mol H2O(g) at 400 K, 1 atm pressure

F) C) and E)
G) D) and E)

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If a liquid boils at -75°C then what is the temperature in kelvins?

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Which is not a property of a gas?


A) The density of a gaseous substance varies greatly with temperature.
B) A sample of gas assumes the shape and volume of its container.
C) Gases are highly compressible.
D) The densities of gases are much larger than those of corresponding liquids.
E) Gases form homogeneous mixtures with one another in any proportion.

F) All of the above
G) D) and E)

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What is the volume occupied by 25.2 g of CO2 at 0.840 atm and 25°C? (R = 0.08206 L • atm/K • mol)


A) 0.060 L
B) 1.34 L
C) 16.7 L
D) 24.2 L
E) 734 L

F) A) and B)
G) A) and D)

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If 2.38 mol of a gas has a volume of 120.0 mL, what is the volume of 1.97 mol of the gas at the same temperature and pressure?


A) 25.6 mL
B) 99.3 mL
C) 119 mL
D) 145 mL
E) 563 mL

F) A) and B)
G) All of the above

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________ is the formula to determine the amount of a reactant or product in units of moles using the ideal gas law.

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The molecules of different samples of an ideal gas have the same average kinetic energies at the same ________.


A) pressure
B) temperature
C) volume
D) density

E) B) and D)
F) B) and C)

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At -3°C, 2.5 moles of a gas in a 0.50-L container exert a pressure of 135 atm. Under these conditions, is the gas behaving like an ideal gas?

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No. (The ideal gas l...

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State Avogadro's law.

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Equal volumes of gas...

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If 2.3 mol of a gas occupies 50.5 mL, how many moles of the gas will occupy 85.5 mL at the same temperature and pressure?


A) 1.4 mol
B) 0.59 mol
C) 3.9 mol
D) 0.26 mol
E) 2.3 mol

F) A) and E)
G) C) and E)

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A fixed quantity of gas, initially at 600ºC, undergoes a temperature change at constant pressure in a cylinder with a movable piston. What final temperature of the gas can result in the change of state depicted below? A fixed quantity of gas, initially at 600ºC, undergoes a temperature change at constant pressure in a cylinder with a movable piston. What final temperature of the gas can result in the change of state depicted below?   A)  1473ºC B)  1200ºC C)  600ºC D)  300ºC E)  163ºC


A) 1473ºC
B) 1200ºC
C) 600ºC
D) 300ºC
E) 163ºC

F) A) and D)
G) B) and C)

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The pressure of sulfur dioxide in a container is 159 kPa. What is this pressure in atmospheres? (1 atm = 101,325 Pa = 760 torr) ?


A) 0.209 atm
B) 0.637 atm
C) 1.57 atm
D) 21.2 atm
E) 1.59 ×104 atm

F) None of the above
G) A) and E)

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What is the mole fraction of NO in a 55.0-L gas cylinder at 30°C which comes from a mixture of N2 and NO if the cylinder contains 3.238 mol of N2 at a total pressure of 2.14 atm?

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For real gases, PV > nRT.

A) True
B) False

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What is the formula which describes the relationship between the volume and number of moles in the sample at constant pressure and constant temperature?


A) Vn = k3
B) V2 /n = k3
C) n/V2 = k3
D) V/n = k3
E) V = -k3n

F) C) and D)
G) A) and B)

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Which statement is false?


A) The average kinetic energies of molecules from samples of different "ideal" gases are the same at the same temperature.
B) The molecules of an ideal gas are relatively far apart.
C) All molecules of an ideal gas have the same kinetic energy at constant temperature.
D) Molecules of a gas undergo many collisions with each other and the container walls.
E) Molecules of greater mass have a lower average speed than those of less mass at the same temperature.

F) D) and E)
G) A) and B)

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In the van der Waals equation, the constant a is a constant that is part of a correction factor for ________.


A) the volume of the gas
B) the temperature of the gas
C) the pressure of the gas
D) the ideal gas constant

E) A) and B)
F) B) and D)

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A gas sample occupies 8.76 L at a temperature of 37°C. What is the volume if the temperature is lowered to 0°C at constant pressure?


A) 9.95 L
B) 0 L
C) 4.22 L
D) 74.1 L
E) 7.71 L

F) D) and E)
G) B) and E)

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