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Boltzmann distribution of particles between different states under equilibrium at temperature T is given

Vibrational states have equal spacing hv as a first approximation. For a particular case  Out of N molecules, a number N0 is in the ground state. Then  is nearest to?
    Correct answer is '0.595'. Can you explain this answer?
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    Boltzmann distribution of particles between different states under equ...

    = N0 (1 + 0.4 + 0.42 + ...)
    N = N0 (1.68) nearly
    ⇒ 
    The correct answer is: 0.595
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    Boltzmann distribution of particles between different states under equilibrium at temperature T is givenVibrational states have equal spacing hv as a first approximation. For aparticular caseOut of N molecules, a number N0is in theground state. Thenis nearest to?Correct answer is '0.595'. Can you explain this answer?
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    Boltzmann distribution of particles between different states under equilibrium at temperature T is givenVibrational states have equal spacing hv as a first approximation. For aparticular caseOut of N molecules, a number N0is in theground state. Thenis nearest to?Correct answer is '0.595'. Can you explain this answer? for Physics 2024 is part of Physics preparation. The Question and answers have been prepared according to the Physics exam syllabus. Information about Boltzmann distribution of particles between different states under equilibrium at temperature T is givenVibrational states have equal spacing hv as a first approximation. For aparticular caseOut of N molecules, a number N0is in theground state. Thenis nearest to?Correct answer is '0.595'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Boltzmann distribution of particles between different states under equilibrium at temperature T is givenVibrational states have equal spacing hv as a first approximation. For aparticular caseOut of N molecules, a number N0is in theground state. Thenis nearest to?Correct answer is '0.595'. Can you explain this answer?.
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