A gaseous system undergoes a change in temperature and volume What is the entropy change for a particle in this system of the final number of microstates is 0.613 times that of the initial number of microstates? Express your answer numerically in joules per kelvin per particle. View Available Hint(s) AS= VAE J/(K-particle)

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Quantitative relationship between entropy and number of microstates
The connection between the number of microstates, W. and the entropy, S, of a system is expressed by the Boltzmann equation
S-kln W
where is the Boltzmann constant per molecule (particle), 1.38 x 10-23 J/(K particle) From this equation the entropy change, AS, for a system can be related to the change in the number of
microstates as
AS-kln
where Wl in the final number of microstates and Wal is the initial number of microstates
W
W
Transcribed Image Text:Quantitative relationship between entropy and number of microstates The connection between the number of microstates, W. and the entropy, S, of a system is expressed by the Boltzmann equation S-kln W where is the Boltzmann constant per molecule (particle), 1.38 x 10-23 J/(K particle) From this equation the entropy change, AS, for a system can be related to the change in the number of microstates as AS-kln where Wl in the final number of microstates and Wal is the initial number of microstates W W
A gaseous system undergoes a change in temperature and volume. What is the entropy change for a particle in this system if the final number of microstates is 0.613 times that of the initial number
of microstates?
Express your answer numerically in joules per kelvin per particle.
View Available Hint(s)
AS=
IVE ΑΣΦΑ
J/(K particle)
Transcribed Image Text:A gaseous system undergoes a change in temperature and volume. What is the entropy change for a particle in this system if the final number of microstates is 0.613 times that of the initial number of microstates? Express your answer numerically in joules per kelvin per particle. View Available Hint(s) AS= IVE ΑΣΦΑ J/(K particle)
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