Inside a cylinder having insulating walls and closed at ends is a m...
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Inside a cylinder having insulating walls and closed at ends is a movable piston, which divides the cylinder into two compartments. On one side of the piston is a mass \( m \) of a gas and on the other side a mass \( 2 m \) of the same gas. What
\( \mathrm{P} \) fraction of volume of the cylinder will be occupied by the larger mass of the gas when the piston is in equilibrium ? Consider that the movable piston is conducting so that the temperature is the same throughout
(a) \( \frac{1}{4} \)
(b) \( \frac{1}{3} \)
(c) \( \frac{1}{2} \)
(d) \( \frac{2}{3} \)
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