A closed cylinder is divided into two parts by a friction-free piston restricted from motion by a Barrette. Part A contains 1OL of air at 100 kPa and 30°C, part B contains 30OL of water as saturated vapor at 30°C The pin is released and both parts come to equilibrium at 30°C. Consider air and water together as a system. Represent the statement graphically and determine the total heat transfer in the process. Answer: -15,706KJ

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A closed cylinder is divided into two parts by a friction-free
piston restricted from motion by a
Barrette. Part A contains 10L of air at 100 kPa and 30°C, part B
contains 30OL of water as saturated vapor at
30°C The pin is released and both parts come to equilibrium at
30°C. Consider air and water together
as a system. Represent the statement graphiçally and
determine the total heat transfer in the process.
Answer: -15,706KJ
Transcribed Image Text:A closed cylinder is divided into two parts by a friction-free piston restricted from motion by a Barrette. Part A contains 10L of air at 100 kPa and 30°C, part B contains 30OL of water as saturated vapor at 30°C The pin is released and both parts come to equilibrium at 30°C. Consider air and water together as a system. Represent the statement graphiçally and determine the total heat transfer in the process. Answer: -15,706KJ
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