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According to the kinetic theory of gases, the average energy of a diatomic molecule in an ideal gasdepends on _______.
  • a)
    mass of each atom and the temperature
  • b)
    mass of each atom and the bond length
  • c)
    mass of each atom, bond length, and temperature
  • d)
    temperature only
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
According to the kinetic theory of gases, the average energy of a diat...
Temperatures only because acc to last postulate of kinetic theory of gas as the average kinetic energy increase the gas became warmer n not depend on the nature of gas.
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According to the kinetic theory of gases, the average energy of a diatomic molecule in an ideal gasdepends on _______.a)mass of each atom and the temperatureb)mass of each atom and the bond lengthc)mass of each atom, bond length, and temperatured)temperature onlyCorrect answer is option 'D'. Can you explain this answer?
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According to the kinetic theory of gases, the average energy of a diatomic molecule in an ideal gasdepends on _______.a)mass of each atom and the temperatureb)mass of each atom and the bond lengthc)mass of each atom, bond length, and temperatured)temperature onlyCorrect answer is option 'D'. Can you explain this answer? for IIT JAM 2024 is part of IIT JAM preparation. The Question and answers have been prepared according to the IIT JAM exam syllabus. Information about According to the kinetic theory of gases, the average energy of a diatomic molecule in an ideal gasdepends on _______.a)mass of each atom and the temperatureb)mass of each atom and the bond lengthc)mass of each atom, bond length, and temperatured)temperature onlyCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for IIT JAM 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for According to the kinetic theory of gases, the average energy of a diatomic molecule in an ideal gasdepends on _______.a)mass of each atom and the temperatureb)mass of each atom and the bond lengthc)mass of each atom, bond length, and temperatured)temperature onlyCorrect answer is option 'D'. Can you explain this answer?.
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