Consider an ensemble of N distinguishable particles distributed in two energy levels & and -E, with number of particles in them N, and N, respectively in equilibrium. The ensemble is isolated and has fixed energy E at temperature T given by, E =-NE tanh k T is the Boltzmann constant. N. e -e If e=k, In 2, find out the temperature at which N [Given, tanh x =D 2 %3D e +e (а) +2k (b) -2k (c) +1k (d) -4k
Consider an ensemble of N distinguishable particles distributed in two energy levels & and -E, with number of particles in them N, and N, respectively in equilibrium. The ensemble is isolated and has fixed energy E at temperature T given by, E =-NE tanh k T is the Boltzmann constant. N. e -e If e=k, In 2, find out the temperature at which N [Given, tanh x =D 2 %3D e +e (а) +2k (b) -2k (c) +1k (d) -4k
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![Consider an ensemble of N distinguishable particles distributed in two energy levels &
and -ɛ, with number of particles in them N, and N, respectively in equilibrium. The
ensemble is isolated and has fixed energy
E
at temperature T given by,
E =-Nɛ tanh
is the Boltzmann constant.
e-e
If e = k, In 2, find out the temperature at which
N
[Given, tanh xr =
2
e +e*
(a) +2k
(b) -2k
(c) +lk
(d) -4k](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fad676bf2-8f7a-4a60-9d55-74d4f06999af%2F656ab72d-4267-4147-a2fd-2f1220f190e1%2F63k1tzi_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider an ensemble of N distinguishable particles distributed in two energy levels &
and -ɛ, with number of particles in them N, and N, respectively in equilibrium. The
ensemble is isolated and has fixed energy
E
at temperature T given by,
E =-Nɛ tanh
is the Boltzmann constant.
e-e
If e = k, In 2, find out the temperature at which
N
[Given, tanh xr =
2
e +e*
(a) +2k
(b) -2k
(c) +lk
(d) -4k
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