In a system similar to that shown in Active Figure 12.1, the gas in the cylinder is at a pressure equal to 1.01 x 105 Pa and the piston has an area of 0.100 m2. As energy is slowly added to the gas by heat, the piston is pushed up a distance of 4.00 cm. Calculate the work done by the expanding gas on the surroundings, Wenv, assuming the pressure remains constant. Compute the change in volume and multiply by the pressure.
In a system similar to that shown in Active Figure 12.1, the gas in the cylinder is at a pressure equal to 1.01 x 105 Pa and the piston has an area of 0.100 m2. As energy is slowly added to the gas by heat, the piston is pushed up a distance of 4.00 cm. Calculate the work done by the expanding gas on the surroundings, Wenv, assuming the pressure remains constant. Compute the change in volume and multiply by the pressure.
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
Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 24P
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In a system similar to that shown in Active Figure 12.1, the gas in the cylinder is at a pressure equal to 1.01 x 105 Pa and the piston has an area of 0.100 m2. As energy is slowly added to the gas by heat, the piston is pushed up a distance of 4.00 cm. Calculate the work done by the expanding gas on the surroundings, Wenv, assuming the pressure remains constant.
Compute the change in volume and multiply by the pressure.
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