14) 14) Given the thermodynamic data in the table below, calculate the equilibrium constant (at 298K) for the reaction: 1.8M 1.885- 2 SO2 (g) + O2 (g) = 2 SO3 (g) ase Substance AHf (kJ/mol) S° (J/mol K) 249 88.18 20110 SO2 (g) 02 (g) SO3 (g) -297 (oldmorh a) 2 205 000- e ear- -395 256 ali mor D09lonoide onodoi orits s lo suisy ontE A) 2.37 x 1024 B) 1.06 C) 1.95 + () D) 3.82 x 1023 E) More data are needed. Jom\4
14) 14) Given the thermodynamic data in the table below, calculate the equilibrium constant (at 298K) for the reaction: 1.8M 1.885- 2 SO2 (g) + O2 (g) = 2 SO3 (g) ase Substance AHf (kJ/mol) S° (J/mol K) 249 88.18 20110 SO2 (g) 02 (g) SO3 (g) -297 (oldmorh a) 2 205 000- e ear- -395 256 ali mor D09lonoide onodoi orits s lo suisy ontE A) 2.37 x 1024 B) 1.06 C) 1.95 + () D) 3.82 x 1023 E) More data are needed. Jom\4
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:14)
14) Given the thermodynamic data in the table below, calculate the equilibrium constant (at 298K) for
the reaction:
1.8M
1.885-
2 SO2 (g) + O2 (g) = 2 SO3 (g)
ase
Substance AHf (kJ/mol) S° (J/mol K)
249 88.18
20110
SO2 (g)
02 (g)
SO3 (g)
-297
(oldmorh a) 2
205
000-
e ear-
-395
256
ali mor D09lonoide
onodoi orits s lo suisy ontE
A) 2.37 x 1024
B) 1.06
C) 1.95
+ ()
D) 3.82 x 1023
E) More data are needed.
Jom\4
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