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Question

The figure shows a cylindrical tube of radius r and length l fitted with a cork. The friction coefficient between the cork and the tube is μ. The tube contains an ideal gas at temperature T and atmospheric pressure P0 . It is slowly heated and the cork pops out when the temperature is doubled. What is normal force per unit length exerted by the cork on the periphery of the tube? (Assume uniform temperature throughout the gas and mass of cork to be negligible.)

A
P0A2μr
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B
P0Aμπr
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C
P0A4μπr
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D
P0A2μπr
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Solution

The correct option is D P0A2μπr
v constant
PT
As pressure increases (2P0) temperature increases (2T)

From the figure (force balancing at the limiting condition)

2P0A=flimiting+P0A


from the above figure

flimiting=P0A=μN (N is scalar addition of all the normal force)

Normal/Length =N2πr=P0Aμ2πr=P0A2μπr


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