(a) An ideal gas is taken through a quasi-static process described by P= aV², with a = 5.50 atm/m, as shown in the figure. The gas is expanded to twice its original volume of 1.00 m3. How much work (in MJ) is done on the expanding gas in this process? P= aV? 1.00 m3 2.00 m MJ (b) What I? How does the work done in part (a) compare to the lowest and highest possible amounts of work that can be done on this gas between the initial and final states if the pressure always remains between P, and Pe and the volume always remains between V, and V2 (Enter your answers as percentages of the work done in part (a).)
(a) An ideal gas is taken through a quasi-static process described by P= aV², with a = 5.50 atm/m, as shown in the figure. The gas is expanded to twice its original volume of 1.00 m3. How much work (in MJ) is done on the expanding gas in this process? P= aV? 1.00 m3 2.00 m MJ (b) What I? How does the work done in part (a) compare to the lowest and highest possible amounts of work that can be done on this gas between the initial and final states if the pressure always remains between P, and Pe and the volume always remains between V, and V2 (Enter your answers as percentages of the work done in part (a).)
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 21P
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