A monatomic ideal gas expands from 1.00 m3 to 2.50 m3 at a constant pressure of 2.00 3 105 Pa. Find the change in the internal energy of the gas. (a) 7.50 3 105 J (b) 1.05 3 106 J (c) 4.50 3 105 J (d) 3.00 3 105 J (e) 24.50 3 105 J
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Textbook Solutions for College Physics
Question
An ideal gas is compressed from a volume of Vi 5 5.00 L to a volume of Vf 5 3.00 L while in thermal contact with a heat reservoir at T 5 295 K as in Figure P12.19. During the compression process, the piston moves down a distance of d 5 0.130 m under the action of an average external force of F 5 25.0 kN. Find (a) the work done on the gas, (b) the change in internal energy of the gas, and (c) the thermal energy exchanged between the gas and the reservoir. (d) If the gas is thermally insulated so no thermal energy could be exchanged, what would happen to the temperature of the gas during the compression?
Solution
The first step in solving 12 problem number trying to solve the problem we have to refer to the textbook question: An ideal gas is compressed from a volume of Vi 5 5.00 L to a volume of Vf 5 3.00 L while in thermal contact with a heat reservoir at T 5 295 K as in Figure P12.19. During the compression process, the piston moves down a distance of d 5 0.130 m under the action of an average external force of F 5 25.0 kN. Find (a) the work done on the gas, (b) the change in internal energy of the gas, and (c) the thermal energy exchanged between the gas and the reservoir. (d) If the gas is thermally insulated so no thermal energy could be exchanged, what would happen to the temperature of the gas during the compression?
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