Ideal and real gases are described below. Select a correct description. O a. For a fixed amount of ideal gas, it is possible to vary the temperature, pressure and volume independently. O b. In the ideal gases, the gas particles always collide with the walls of the container with kinetic energy loss. OC. None of these choices. O d. Real gases can behave like an ideal gas at high temperatures because the potential energy of the gas molecules dominates the kinetic energy. O e. In the van der Waals equation, a correction was made for real gas to suppress the intermolecular forces of attraction.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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QUESTION 19
Ideal and real gases are described below. Select a correct description.
O a. For a fixed amount of ideal gas, it is possible to vary the temperature, pressure and volume independently.
O b. In the ideal gases, the gas particles always collide with the walls of the container with kinetic energy loss.
O C. None of these choices.
O d. Real gases can behave like an ideal gas at high temperatures because the potential energy of the
dominates the kinetic energy.
gas
molecules
O e. In the van der Waals equation, a correction was made for real gas to suppress the intermolecular forces of attraction.
Transcribed Image Text:QUESTION 19 Ideal and real gases are described below. Select a correct description. O a. For a fixed amount of ideal gas, it is possible to vary the temperature, pressure and volume independently. O b. In the ideal gases, the gas particles always collide with the walls of the container with kinetic energy loss. O C. None of these choices. O d. Real gases can behave like an ideal gas at high temperatures because the potential energy of the dominates the kinetic energy. gas molecules O e. In the van der Waals equation, a correction was made for real gas to suppress the intermolecular forces of attraction.
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