Consider the following reaction: mol K SO₂(g) -297 248 2SO₂(g) + O₂(g) → 2503(g) SO₂(g) -396 257 0₂(g) 0 205 A reaction mixture is prepared at 80.0°C containing 0.30 atm of SO₂, 1.00 atm of 0₂, and 8.00 atm of SO3. Calculate AG and AG, both in units of kJ/mol. As always, you must clearly and logically show all of your work' Additional information R= 8.3145 J mol K AG= : ΔΗ° - ΤΔS AG-RT In(K) AG AG° + RT In(Q) kj So

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter12: Gaseous Chemical Equilibrium
Section: Chapter Questions
Problem 32QAP: Consider the following reaction at 75C: 3R(s)+2Q(g)A(g)+5B(l)K=9.4 A 10.0-L sample contains 0.30 mol...
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Consider the following reaction:
ΔΗ,
AH'; (-)
mol
mol K
-297
248
2SO₂(g) + O₂(g) → 2503(g)
SO₂(g)
SO₂(g)
-396
257
0₂(g)
0
205
A reaction mixture is prepared at 80.0°C containing 0.30 atm of SO2, 1.00 atm of 0₂, and 8.00
atm of SO3. Calculate AG and AG, both in units of kJ/mol. As always, you must clearly and
logically show all of your work
Additional information
R= 8.3145
J
mol K
AGAH-TAS
AG-RT In(K)
AG AG° + RT In(Q)
So
Transcribed Image Text:Consider the following reaction: ΔΗ, AH'; (-) mol mol K -297 248 2SO₂(g) + O₂(g) → 2503(g) SO₂(g) SO₂(g) -396 257 0₂(g) 0 205 A reaction mixture is prepared at 80.0°C containing 0.30 atm of SO2, 1.00 atm of 0₂, and 8.00 atm of SO3. Calculate AG and AG, both in units of kJ/mol. As always, you must clearly and logically show all of your work Additional information R= 8.3145 J mol K AGAH-TAS AG-RT In(K) AG AG° + RT In(Q) So
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