A rigid and well-insulated cylinder is divided into two compartments by a piston which is free...
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A rigid and well-insulated cylinder is divided into two compartments by a piston which is free to move but does not allow either gas to leak into the other side. Initially, one side of the piston contains 2 m3 of N2 at 250 kPa and 90°C, while the other side contains m3 of He at 250 kPa and 30°C. Now thermal equilibrium is established in the cylinder as a result of heat transfer through the piston. Using constant volume specific heats at 27°C, determine the final equilibrium temperature in the cylinder. A rigid and well-insulated cylinder is divided into two compartments by a piston which is free to move but does not allow either gas to leak into the other side. Initially, one side of the piston contains 2 m3 of N2 at 250 kPa and 90°C, while the other side contains m3 of He at 250 kPa and 30°C. Now thermal equilibrium is established in the cylinder as a result of heat transfer through the piston. Using constant volume specific heats at 27°C, determine the final equilibrium temperature in the cylinder.
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Related Book For
Thermodynamics An Interactive Approach
ISBN: 978-0130351173
1st edition
Authors: Subrata Bhattacharjee
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