Fundamentals Of Thermodynamics
10th Edition
ISBN: 9781119494966
Author: Borgnakke, C. (claus), Sonntag, Richard Edwin, Author.
Publisher: Wiley,
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Chapter 5, Problem 5.39P
R−134a fills a
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Ammonia (an ideal gas) is contained in a 1.5 cubic meter piston. Initially, it is 200 kPa, 20C but it is compressed to 40C (at constant pressure). During this process, 1500 kJ of heat is rejected to the 20C surrounding and 750 kJ of work is done. Is this process possible?
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A constant-pressure piston/cylinder assembly contains 0.2 kg of water as saturated vapor at 300 kPa. It is now cooled so that the water occupies one third of the original volume. Find
1- the work done in the process in kJ.
2- the heat transfer done in the process in kJ
Chapter 5 Solutions
Fundamentals Of Thermodynamics
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- A container maintains a constant pressure of 86300 Pa and volume of 116 liters while 49960 J of heat is added. How much work is done by the gas? *arrow_forwardA piston-cylinder device contains 2.25 kg of liquid water at 20oC and 300 kPa, at this state, a linear spring is touching the piston but exerts no force on it. Heat is now slowly transferred to the cylinder, causing the pressure and the volume to rise to 2.25 MPa and 0.1125 m3, respectively. 1) What is the final temperature (oC)? 2) What is the work on the process (kJ)?arrow_forwardAn inactive system comprising of 3 kg of the fluid in an adiabatic process according to pv1.3 = constant. The initial conditions are 1 Mpa and 150o C, and the final pressure is 0.2 Mpa. Find Work done and U for the process and compare Why is the work transfer in this process not equal to ʃ pdV?arrow_forward
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