A 6.0-cm-diameter cylinder of nitrogen gas has a 4.0-cm-thick movable copper piston. The cylinder is oriented vertically, as shown in the figure, and the air above the piston is evacuated. When the gas temperature is 25°C, the piston floats 20 cm above the bottom of the cylinder. (Figure 1). SOLVE THE FOLLOWING: Part C) Then 2.5 J of heat energy are transferred to the gas. What is the new equilibrium temperature of the gas in °C? Express your answer in degrees Celsius. Part E) How much work is done on the gas as the piston rises? Express your answer with the appropriate units.

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Figure
20 cm
Vacuum
Piston
N₂
6 cm
<
1 of 1 >
Transcribed Image Text:Figure 20 cm Vacuum Piston N₂ 6 cm < 1 of 1 >
A 6.0-cm-diameter cylinder of
nitrogen gas has a 4.0-cm-thick
movable copper piston. The
cylinder is oriented vertically, as
shown in the figure, and the air
above the piston is evacuated.
When the gas temperature is
25°C, the piston floats 20 cm
above the bottom of the cylinder.
(Figure 1).
SOLVE THE FOLLOWING:
Part C) Then 2.5 J of heat energy
are transferred to the gas. What is
the new equilibrium temperature
of the gas in °C? Express your
answer in degrees Celsius.
Part E) How much work is done
on the gas as the piston rises?
Express your answer with the
appropriate units.
Transcribed Image Text:A 6.0-cm-diameter cylinder of nitrogen gas has a 4.0-cm-thick movable copper piston. The cylinder is oriented vertically, as shown in the figure, and the air above the piston is evacuated. When the gas temperature is 25°C, the piston floats 20 cm above the bottom of the cylinder. (Figure 1). SOLVE THE FOLLOWING: Part C) Then 2.5 J of heat energy are transferred to the gas. What is the new equilibrium temperature of the gas in °C? Express your answer in degrees Celsius. Part E) How much work is done on the gas as the piston rises? Express your answer with the appropriate units.
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