A 0 .500-mol sample of an ideal gas has an initial temperature of 298 K . It is compressed from an initial volume of 13.00 L to 5.00 L by an external pressure of 2 .45 atm , at which point the internal and external pressures are equal. Calculate Δ S sys , Δ S surr , and Δ S univ for the process.
A 0 .500-mol sample of an ideal gas has an initial temperature of 298 K . It is compressed from an initial volume of 13.00 L to 5.00 L by an external pressure of 2 .45 atm , at which point the internal and external pressures are equal. Calculate Δ S sys , Δ S surr , and Δ S univ for the process.
Solution Summary: The author explains that the change in entropy of the system is given by the equation.
A
0
.500-mol
sample of an ideal gas has an initial temperature of
298
K
. It is compressed from an initial volume of
13.00
L
to
5.00
L
by an external pressure of
2
.45
atm
, at which point the internal and external pressures are equal. Calculate
Δ
S
sys
,
Δ
S
surr
,
and
Δ
S
univ
for the process.
4. Which one of the following is trans-1-tert-butyl-3-methylcyclohexane in its most stable
conformation? (NOTE: Correct answer must be trans- and must have a 1,3-arrangement of groups.)
C(CH3)3
CH₁₂
A
H,C
D
H₂C
C(CH)
C(CH3)3
C
B
CH
C(CH)
C(CH3)3
E
Predict the Product. Predict the major organic product for the following reaction:
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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