Trouton’s rule states that the entropy of boiling at the normal point is 85 J / mol ⋅ K . (a) Does the data from Example 3.2 support Trouton’s rule? (b) H 2 O has a heat of vaporization of 40.7 kJ / mol . Does the Δ vap S for H 2 O at its normal boiling point support Trouton’s rule? Can you explain any deviation? (c) Predict the boiling point of cyclohexane, C 6 H 12 , if its Δ vap H is 30.1 kJ / mol . Compare your answer to the measured normal boiling point of 80.7 ° C .
Trouton’s rule states that the entropy of boiling at the normal point is 85 J / mol ⋅ K . (a) Does the data from Example 3.2 support Trouton’s rule? (b) H 2 O has a heat of vaporization of 40.7 kJ / mol . Does the Δ vap S for H 2 O at its normal boiling point support Trouton’s rule? Can you explain any deviation? (c) Predict the boiling point of cyclohexane, C 6 H 12 , if its Δ vap H is 30.1 kJ / mol . Compare your answer to the measured normal boiling point of 80.7 ° C .
Solution Summary: The author explains that entropy is used to represent the randomness in a system.
Trouton’s rule states that the entropy of boiling at the normal point is
85
J
/
mol
⋅
K
. (a) Does the data from Example
3.2
support Trouton’s rule? (b)
H
2
O
has a heat of vaporization of
40.7
kJ
/
mol
. Does the
Δ
vap
S
for
H
2
O
at its normal boiling point support Trouton’s rule? Can you explain any deviation? (c) Predict the boiling point of cyclohexane,
C
6
H
12
, if its
Δ
vap
H
is
30.1
kJ
/
mol
. Compare your answer to the measured normal boiling point of
80.7
°
C
.
The table includes macrostates characterized by 4 energy levels (&) that are
equally spaced but with different degrees of occupation.
a) Calculate the energy of all the macrostates (in joules). See if they all have
the same energy and number of particles.
b) Calculate the macrostate that is most likely to exist. For this macrostate,
show that the population of the levels is consistent with the Boltzmann
distribution.
macrostate 1 macrostate 2 macrostate 3
ε/k (K) Populations
Populations
Populations
300
5
3
4
200
7
9
8
100
15
17
16
0
33
31
32
DATO: k = 1,38×10-23 J K-1
Don't used Ai solution
In an experiment, the viscosity of water was measured at different
temperatures and the table was constructed from the data obtained.
a) Calculate the activation energy of viscous flow (kJ/mol).
b) Calculate the viscosity at 30°C.
T/°C
0
20
40
60
80
η/cpoise 1,972 1,005 0,656 0,469 0,356
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The Laws of Thermodynamics, Entropy, and Gibbs Free Energy; Author: Professor Dave Explains;https://www.youtube.com/watch?v=8N1BxHgsoOw;License: Standard YouTube License, CC-BY