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Figure shows a cylindrical tube with adiabatic walls and fitted with an adiabatic separator. The separator can slide by an external mechanism. An ideal gas (γ = 1.5) is injected in the two sides at equal pressure and temperature. The separator remains in equilibrium at the middle. It is now slid to a new position where it divides the tube in the ratio of 1 : 3. The ratio of temperature in part (1) to part (2) is |
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Answer» Figure shows a cylindrical tube with adiabatic walls and fitted with an adiabatic separator. The separator can slide by an external mechanism. An ideal gas (γ = 1.5) is injected in the two sides at equal pressure and temperature. The separator remains in equilibrium at the middle. It is now slid to a new position where it divides the tube in the ratio of 1 : 3. The ratio of temperature in part (1) to part (2) is |
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