The drawing shows an ideal gas confined to a cylinder by a massless piston that is attached to an ideal spring. Outside the cylinder is a vacuum. The cross-sectional area of the piston is A-2.50 x 103 m². The initial pressure, volume, and temperature of the gas are. respectively. Po. Vo = 6.00 x 10m³ and To-273 K, and the spring is initially stretched by an amount xo-0.087 m with respect to its unstrained length. The gas is heated, so that its final pressure, volume, and temperature are Pr. Ve and T, and the spring is stretched by an amount x,-0.11 m with respect to its unstrained length. What is the final temperature of the gas? i 301.98

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The drawing shows an ideal gas confined to a cylinder by a massless piston that is attached to an ideal spring. Outside the cylinder is a
vacuum. The cross-sectional area of the piston is A-2.50 x 103 m². The initial pressure, volume, and temperature of the gas are.
respectively. Po. Vo 6.00 x 10 m³ and To-273 K, and the spring is initially stretched by an amount x,-0.087 m with respect to its
unstrained length. The gas is heated, so that its final pressure, volume, and temperature are P. Ve and T, and the spring is stretched by
an amount x,-0.11 m with respect to its unstrained length. What is the final temperature of the gas?
301.98
Transcribed Image Text:The drawing shows an ideal gas confined to a cylinder by a massless piston that is attached to an ideal spring. Outside the cylinder is a vacuum. The cross-sectional area of the piston is A-2.50 x 103 m². The initial pressure, volume, and temperature of the gas are. respectively. Po. Vo 6.00 x 10 m³ and To-273 K, and the spring is initially stretched by an amount x,-0.087 m with respect to its unstrained length. The gas is heated, so that its final pressure, volume, and temperature are P. Ve and T, and the spring is stretched by an amount x,-0.11 m with respect to its unstrained length. What is the final temperature of the gas? 301.98
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