6. (a) An alternative to the lead/acid battery currently in use in automobiles is therechargeable Sodium/Sulfur battery. The sodium anode is separated from the sulfurcathode by a -alumina porous cell.Na+ + e– ------→ Na(s) E°red = –2.71 VS(s) + 2e– ------→ S2– E°ox = + 0.48 VUsing the provided electrode potentials, calculate E°cell for this battery.(b) What is ∆G° for this process?(c) Calculate Keq for this battery.(d) What is the cell voltage is [S2–] = 0.15 M and [Na+] = 0.0125 M?
6. (a) An alternative to the lead/acid battery currently in use in automobiles is therechargeable Sodium/Sulfur battery. The sodium anode is separated from the sulfurcathode by a -alumina porous cell.Na+ + e– ------→ Na(s) E°red = –2.71 VS(s) + 2e– ------→ S2– E°ox = + 0.48 VUsing the provided electrode potentials, calculate E°cell for this battery.(b) What is ∆G° for this process?(c) Calculate Keq for this battery.(d) What is the cell voltage is [S2–] = 0.15 M and [Na+] = 0.0125 M?
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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6. (a) An alternative to the lead/acid battery currently in use in automobiles is the
rechargeable Sodium/Sulfur battery. The sodium anode is separated from the sulfur
cathode by a -alumina porous cell.
Na+ + e– ------→ Na(s) E°red = –2.71 V
S(s) + 2e– ------→ S2– E°ox = + 0.48 V
Using the provided electrode potentials,
calculate E°cell for this battery.
(b) What is ∆G° for this process?
(c) Calculate Keq for this battery.
(d) What is the cell voltage is [S2–] = 0.15 M and [Na+] = 0.0125 M?
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