Problem 2: There is a piston cylinder device that contains 0.03 kg of saturated liquid water. The water or H:0 is heated to a final temperature of 300 °C. The piston has a mass of 10.0586 kg and a cross sectional area of 0.001m. The atmospheric pressure is 101.325 kPa. The piston can move upward as water is heated. a) Determine the pressure inside the cylinder by applying Newton's law in vertical direction b) What is the initial temperature of the water if the pressure inside the piston cylinder device is 200 kPa? c) Determine the amount of heat transfer required for the process m-5kg Water

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Problem 2: There is a piston cylinder device that contains 0.03 kg of saturated liquid water. The
water or H;O is heated to a final temperature of 300 °C. The piston has a mass of 10.0586 kg and
a cross sectional area of 0.001m. The atmospheric pressure is 101.325 kPa. The piston can move
upward as water is heated.
a) Determine the pressure inside the cylinder by applying Newton's law in vertical direction
b) What is the initial temperature of the water if the pressure inside the piston cylinder device
is 200 kPa?
c) Determine the amount of heat transfer required for the process
m-5kg
Water
Figure for Problem 2
Transcribed Image Text:Problem 2: There is a piston cylinder device that contains 0.03 kg of saturated liquid water. The water or H;O is heated to a final temperature of 300 °C. The piston has a mass of 10.0586 kg and a cross sectional area of 0.001m. The atmospheric pressure is 101.325 kPa. The piston can move upward as water is heated. a) Determine the pressure inside the cylinder by applying Newton's law in vertical direction b) What is the initial temperature of the water if the pressure inside the piston cylinder device is 200 kPa? c) Determine the amount of heat transfer required for the process m-5kg Water Figure for Problem 2
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