10. Consider the table below for the reaction. 4CH2=CHCH3 (g) + 6NO (g) Molecule AH CH2=CHCH3 (g) H₂O (1) CH2=CHCN (g) NO (g) N₂ (g) a. Calculate the AS° for the reaction. ->>> 4CH2=CHCN (g) + 6H2O (l) + N2 So (J/mol K) 266.9 70 274 211 192 (kJ/mol) 20.2 -286 185 90 0

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter4: Energy And Chemical Reactions
Section: Chapter Questions
Problem 64QRT
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10.
Consider the table below for the reaction.
4CH2=CHCH3 (g) + 6NO (g)
Molecule
AH
CH2=CHCH3 (g)
H₂O (1)
CH2=CHCN
(g)
NO (g)
N₂ (g)
a. Calculate the AS° for the reaction.
->>
4CH2=CHCN (g) + 6H2O (1) + N2 (g)
(kJ/mol) S° (J/mol K)
266.9
70
274
211
192
20.2
-286
185
90
0
b. Calculate the AG for the reaction at 500 K.
Transcribed Image Text:10. Consider the table below for the reaction. 4CH2=CHCH3 (g) + 6NO (g) Molecule AH CH2=CHCH3 (g) H₂O (1) CH2=CHCN (g) NO (g) N₂ (g) a. Calculate the AS° for the reaction. ->> 4CH2=CHCN (g) + 6H2O (1) + N2 (g) (kJ/mol) S° (J/mol K) 266.9 70 274 211 192 20.2 -286 185 90 0 b. Calculate the AG for the reaction at 500 K.
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