A sealed cubical container 21.0 cm on a side contains a gas with five times Avogadro's number of argon atoms at a temperature of 30.0°C. HINT (a) Find the internal energy (in J) of the gas. J (b) The total translational kinetic energy (in J) of the gas. J (c) Calculate the average kinetic energy (in J) per atom. J (d) Use P = 2 3 N V 1 2 mv2 to calculate the gas pressure (in Pa). Pa (e) Calculate the gas pressure (in Pa) using the ideal gas law (PV = nRT). Pa

Physical Chemistry
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ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
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Chapter2: The First Law Of Thermodynamics
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Problem 2.39E: A refrigerator contains approximately 17cubic feet, or about 480 liters, of air. Assuming it acts as...
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A sealed cubical container 21.0 cm on a side contains a gas with five times Avogadro's number of argon atoms at a temperature of 30.0°C. HINT (a) Find the internal energy (in J) of the gas. J (b) The total translational kinetic energy (in J) of the gas. J (c) Calculate the average kinetic energy (in J) per atom. J (d) Use P = 2 3 N V 1 2 mv2 to calculate the gas pressure (in Pa). Pa (e) Calculate the gas pressure (in Pa) using the ideal gas law (PV = nRT). Pa
A sealed cubical container 21.0 cm on a side contains a gas with five times Avogadro's number of argon atoms at a temperature of 30.0°C.
HINT
(a) Find the internal energy (in J) of the gas.
(b) The total translational kinetic energy (in J) of the gas.
(c) Calculate the average kinetic energy (in J) per atom.
(d) Use P-
to calculate the gas pressure (in Pa).
Pa
Transcribed Image Text:A sealed cubical container 21.0 cm on a side contains a gas with five times Avogadro's number of argon atoms at a temperature of 30.0°C. HINT (a) Find the internal energy (in J) of the gas. (b) The total translational kinetic energy (in J) of the gas. (c) Calculate the average kinetic energy (in J) per atom. (d) Use P- to calculate the gas pressure (in Pa). Pa
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