For the following reactions, determine the standard cell potential, the cell potential, ΔG and ΔG° a. The galvanic cell made from a half-cell consisting of an aluminum electrode in 0.015 M aluminium nitrate solution and a half-cell consisting of a nickel electrode in 0.25 M nickel (II) nitrate solution. b. The galvanic cell made from a half-cell in which 1.0 M aqueous bromide is oxidized to 0.11 M aqueous bromine and a half-cell in which aluminum ion at 0.023 M is reduced to aluminum metal. Assume that the reduction potential for Br2(l) is the same as that of Br2(aq)
For the following reactions, determine the standard cell potential, the cell potential, ΔG and ΔG° a. The galvanic cell made from a half-cell consisting of an aluminum electrode in 0.015 M aluminium nitrate solution and a half-cell consisting of a nickel electrode in 0.25 M nickel (II) nitrate solution. b. The galvanic cell made from a half-cell in which 1.0 M aqueous bromide is oxidized to 0.11 M aqueous bromine and a half-cell in which aluminum ion at 0.023 M is reduced to aluminum metal. Assume that the reduction potential for Br2(l) is the same as that of Br2(aq)
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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For the following reactions, determine the standard cell potential, the cell potential, ΔG and ΔG°
a. The galvanic cell made from a half-cell consisting of an aluminum electrode in 0.015 M aluminium nitrate solution and a half-cell consisting of a nickel electrode in 0.25 M nickel (II) nitrate solution.
b. The galvanic cell made from a half-cell in which 1.0 M aqueous bromide is oxidized to 0.11 M aqueous bromine and a half-cell in which aluminum ion at 0.023 M is reduced to aluminum metal. Assume that the reduction potential for Br2(l) is the same as that of Br2(aq)
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