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Figure (27-E4) shows a cylindrical tube with adiabatic walls and fitted with an adiabatic separator
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Figure (27-E4) shows a cylindrical tube with adiabatic
walls and fitted with an adiabatic separator. The
separator can be slid into the tube by an external
mechanism. An ideal gas ( 1.5) is injected in the two
sides at equal pressures and temperatures. The
separator remains in equilibrium at the middle. It is
now slid to a position where it divides the tube in the
ratio 1 : 3. Find the ratio of the temperatures in the two
parts of the vessel.
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walls and fitted with an adiabatic separator. The
separator can be slid into the tube by an external
mechanism. An ideal gas ( 1.5) is injected in the two
sides at equal pressures and temperatures. The
separator remains in equilibrium at the middle. It is
now slid to a position where it divides the tube in the
ratio 1 : 3. Find the ratio of the temperatures in the two
parts of the vessel.
Welcome to Physics With Shubham
you can discuss your doubts with me here:
Lets join hands to learn together!!
#HCV
#HCVSolution
#JEEMains
#JEEAdvanced
#NEET
#JEE
#IIT
#PhysicsWithShubham