a. Calculate A, G° for the following reaction at 298 K. 2 HC10(aq) + 2 Ci" (aq) + 2 H† (aq) → 2 Cl2 (g) + 2 H2 0(e) Use the data provided below. 2 HC10(aq) + 2 H* (aq) + 2 e → Cl2 (g) + 2 H20(€), E° = 1.63 V Cl2 (g) + 2 e → 2 Cl¯ (aq), E° = 1.36 V A,G° = kJ b. Calculate A, G° for the following reaction at 298 K. AgI(s) + Br (aq) → AgBr(s) +I (aq) Use the data provided below. AgBr(s) + e → Ag(s) + Br¯ (aq), E° = 0.0713 V AgI(s) + e → Ag(s) +I (aq), E° = -0.15 V kJ
a. Calculate A, G° for the following reaction at 298 K. 2 HC10(aq) + 2 Ci" (aq) + 2 H† (aq) → 2 Cl2 (g) + 2 H2 0(e) Use the data provided below. 2 HC10(aq) + 2 H* (aq) + 2 e → Cl2 (g) + 2 H20(€), E° = 1.63 V Cl2 (g) + 2 e → 2 Cl¯ (aq), E° = 1.36 V A,G° = kJ b. Calculate A, G° for the following reaction at 298 K. AgI(s) + Br (aq) → AgBr(s) +I (aq) Use the data provided below. AgBr(s) + e → Ag(s) + Br¯ (aq), E° = 0.0713 V AgI(s) + e → Ag(s) +I (aq), E° = -0.15 V kJ
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:a. Calculate A, G° for the following reaction at 298 K.
2 HC10(aq) + 2 Ci" (aq) + 2 H† (aq) → 2 Cl2 (g) + 2 H2 0(e)
Use the data provided below.
2 HC10(aq) + 2 H* (aq) + 2 e → Cl2 (g) + 2 H20(€), E° = 1.63 V
Cl2 (g) + 2 e → 2 Cl¯ (aq), E° = 1.36 V
A,G° =
kJ
b. Calculate A, G° for the following reaction at 298 K.
AgI(s) + Br (aq) → AgBr(s) +I (aq)
Use the data provided below.
AgBr(s) + e → Ag(s) + Br¯ (aq), E° = 0.0713 V
AgI(s) + e → Ag(s) +I (aq), E° = -0.15 V
kJ
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