1 mole of ideal gas 1st undergoes an isothermal expansion at 500 K to 3 times its v(original vlm). The T is then reduced in an isochoric process to 250 K. Then isothermal compression takes the gas back to its v(orgnl vlm) and a final isochoric process returns the system to temperature T1 .find amount of heat (in J) that is exchanged between the system and its surroundings? [ heat expelled from the system is -ve)
1 mole of ideal gas 1st undergoes an isothermal expansion at 500 K to 3 times its v(original vlm). The T is then reduced in an isochoric process to 250 K. Then isothermal compression takes the gas back to its v(orgnl vlm) and a final isochoric process returns the system to temperature T1 .find amount of heat (in J) that is exchanged between the system and its surroundings? [ heat expelled from the system is -ve)
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter18: Heat Engines, Entropy, And The Second Law Of Thermodynamics
Section: Chapter Questions
Problem 11P
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1 mole of ideal gas 1st undergoes an isothermal expansion at 500 K to 3 times its v(original vlm). The T is then reduced in an isochoric process to 250 K. Then isothermal compression takes the gas back to its v(orgnl vlm) and a final isochoric process returns the system to temperature T1 .find amount of heat (in J) that is exchanged between the system and its surroundings? [ heat expelled from the system is -ve)
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