Consider a monatomic ideal gas in a piston chamber, where the initial volume is 2.00 L and the initial pressure is 8.00 atm . Assume that the piston is moving up (that is, the system is expanding) to a final volume of 5.50 L against a constant external pressure of 1.75 atm . Also assume a constant temperature of 25.0 ° C for the process. Calculate Δ S sys , Δ S surr , and Δ S univ for the process.
Consider a monatomic ideal gas in a piston chamber, where the initial volume is 2.00 L and the initial pressure is 8.00 atm . Assume that the piston is moving up (that is, the system is expanding) to a final volume of 5.50 L against a constant external pressure of 1.75 atm . Also assume a constant temperature of 25.0 ° C for the process. 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.
Consider a monatomic ideal gas in a piston chamber, where the initial volume is
2.00
L
and the initial pressure is
8.00
atm
. Assume that the piston is moving up (that is, the system is expanding) to a final volume of
5.50
L
against a constant external pressure of
1.75
atm
. Also assume a constant temperature of
25.0
°
C
for the process. Calculate
Δ
S
sys
,
Δ
S
surr
,
and
Δ
S
univ
for the process.
Where are the chiral centers in this molecule? Also is this compound meso yes or no?
A mixture of C7H12O2, C9H9OCl, biphenyl and acetone was put together in a gas chromatography tube. Please decide from the GC resutls which correspond to the peak for C7,C9 and biphenyl and explain the reasoning based on GC results. Eliminate unnecessary peaks from Gas Chromatography results.
Is the molecule chiral, meso, or achiral?
CI
.CH3
H₂C
CI
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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