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Thermodynamics ...

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  • Question 1
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    A monoatomic ideal gas, initially at temperature T1 is enclosed in a cylindes fitted with a frictionless piston. The gas is allowed to expand adiabatically to a temperature T2 releasing the piston suddenly. If L1 and L2 given by the lengths of the gas colum be fore and afters expansion respectively, then then T1/T2 is given by

  • Question 2
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    Starting with the same intial Conditions, an ideal gas expands from Volume V1 and V2 in three different ways. The Work done by the gas is W1 if the process is purely isothermal, W2 if purely isobasic and W3 if purely adiabatic Then

  • Question 3
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    In a given process on an ideal gas dw = 0 and dQ < 0. Then for the gas

  • Question 4
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  • Question 5
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    70 calorie of heat are required to raise the temperature of 2 mole of an ideal gas at constant pressure from 30oC to 35oC. The amount of heat required to raise the temperature of the same gas through the same range at constant volume is .................. calorie.

  • Question 6
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    Two cylinders A and B fitted with piston contain equal amounts of an ideal diatomic gas at 300 k. The piston of A is free to move, While that of B is held fixed. The same amount of heat is given to the gas in each cylindes. If the rise in temperature of the gas in A is 30K, then the rise in temperature of the gas in B is.

  • Question 7
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    The work of 62.25 KJ is performed in order to compress one kilo mole of gas adiabatically and in this process the temperature of the gas increases by 5oC The gas is_ R = 8-3 J/molK

  • Question 8
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    Cp and Cv denote the specific heat of oxygen per unit mass at constant Pressure and volume respectively, then

  • Question 9
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    When a System is taken from State i to State f along the path iaf, it is found that Q = 70 cal and w = 30 cal, along the path ibf. Q = 52cal the path ibf is

  • Question 10
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    µ moles of a gas filled in a containes at temperature T is in equilibrium inidially - If the gas is compressed slowly and is thesmally to half its initial volume the work done by the atmosphere on the piston is

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