Two 600 cm³ cylinders (A & B) contain identical amounts of diatomic N2 ideal gas at 17 °C. The volume of Cylinder A is pinned and it is not allowed to change. Cylinder B is closed by a piston free to move ; the piston has a surface area of 80 cm? with a mass of 10 kg. Both cylinders are subjected to the same amount of heat and for equal time. a) Which cylinder will experience a greater change in temperature, explain. b) Represent the two processes on a pV diagram. C) Find the initial pressures of the gas in cylinder A and B. d) Suppose that 375 J of heat is supplied by the heater, what is the final volume of cylinder B? e) What is the work done by the gas in both processes.

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Two 600 cm³ cylinders (A & B) contain
identical amounts of diatomic N2 ideal
gas at 17 °C. The volume of Cylinder A is
pinned and it is not allowed to change.
Cylinder B is closed by a piston free to
move ; the piston has a surface area of 80
cm? with a mass of 10 kg. Both cylinders
are subjected to the same amount of
heat and for equal time.
a) Which cylinder will experience a
greater change in temperature, explain.
b) Represent the two processes on a pV
diagram.
c) Find the initial pressures of the gas in
cylinder A and B.
d) Suppose that 375 J of heat is supplied
by the heater, what is the final volume of
cylinder B?
e) What is the work done by the gas in
both processes.
Transcribed Image Text:Two 600 cm³ cylinders (A & B) contain identical amounts of diatomic N2 ideal gas at 17 °C. The volume of Cylinder A is pinned and it is not allowed to change. Cylinder B is closed by a piston free to move ; the piston has a surface area of 80 cm? with a mass of 10 kg. Both cylinders are subjected to the same amount of heat and for equal time. a) Which cylinder will experience a greater change in temperature, explain. b) Represent the two processes on a pV diagram. c) Find the initial pressures of the gas in cylinder A and B. d) Suppose that 375 J of heat is supplied by the heater, what is the final volume of cylinder B? e) What is the work done by the gas in both processes.
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