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Law of equipartition of energy and applications to specific heat capacities of gases Concepts for JEE

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Quick answer

Master Law of equipartition of energy and applications to specific heat capacities of gases by understanding definitions, standard results, and typical JEE question patterns — then practise with syllabus-aligned MCQs on Goodmarks.

Build clear conceptual foundations for Law of equipartition of energy and applications to specific heat capacities of gases before speed practice. This guide covers what JEE expects and how to test yourself with MCQs.

Concept explainer

Law of equipartition of energy and applications to specific heat capacities of gases is a core JEE Main Physics subtopic under Kinetic Theory of Gases. Master the definitions, standard results, and typical MCQ patterns tested in JEE Main and Advanced.

Key points

  • Understand the definition and scope of Law of equipartition of energy and applications to specific heat capacities of gases in the JEE syllabus
  • Memorise key formulas and standard results linked to Law of equipartition of energy and applications to specific heat capacities of gases
  • Practise 20–40 syllabus-aligned MCQs with step-by-step solutions

JEE tips

  • Revise Law of equipartition of energy and applications to specific heat capacities of gases with a one-page formula sheet before attempting mixed tests
  • After each practice set, log mistakes specific to Law of equipartition of energy and applications to specific heat capacities of gases and reattempt after 48 hours

Common trap

Students often rush Law of equipartition of energy and applications to specific heat capacities of gases questions without checking units, sign conventions, or boundary conditions — always verify assumptions before calculating.

Free sample questions

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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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Frequently asked questions

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