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Online Practice: Law of equipartition of energy and applications to specific heat capacities of gases for JEE

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Q1PhysicsUnit 9: Kinetic Theory of Gases
Assertion Vibrational energy of diatomic molecule corresponding to each degree of freedom is kBTk_{B} T Reason For every molecule, vibrational degree of freedom is 2
Q2PhysicsUnit 9: Kinetic Theory of Gases
If for a gas RCv=0.67,\frac{\boldsymbol{R}}{\boldsymbol{C}_{\boldsymbol{v}}}=\mathbf{0 . 6 7}, then the gas is made up of molecules which are :
Q3PhysicsUnit 9: Kinetic Theory of Gases
Molar heat capacity of a gas does not depend on
Q4PhysicsUnit 9: Kinetic Theory of Gases
Assertion CPC_{P} is always greater than CVC_{V} in gases. Reason Work done at constant pressure is more than at constant volume.
Q5PhysicsUnit 9: Kinetic Theory of Gases
5 kilomoles of oxygen is heated at constant pressure. The temperature of the oxygen gas is increased from 295K295 \mathrm{K} to 305 K. If the molar heat capacity of oxygen at constant pressure is 6.994 kcal/kmole K. The amount of heat absorbed in kcal,
Q6PhysicsUnit 9: Kinetic Theory of Gases
Assertion In the formula P=23E,P=\frac{2}{3} E, the term EE represents translational kinetic energy per unit volume of gas. Reason In case of monoatomic gas translational kinetic energy and total kinetic energy are equal.
Q7PhysicsUnit 9: Kinetic Theory of Gases
The quantity 2UfkT\frac{2 U}{f k T} represents (where U=U= internal energy of gas

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