Consider each of the following electrode-solution interfaces, and write the equation for the elec- trode reaction that occurs first when the potential is moved in (1) a negative direction and (2) a posi- tive direction from the open-circuit potential. Next to each reaction write the approximate potential for the reaction in V vs. SCE (assuming the reaction is reversible). (a) Pt/Cu2+ (0.01 M), Cd2+ (0.01 M), H2SO4(1 M) (b) Pt/Sn2+ (0.01 M), Sn4+ (0.01 M), HCl(1 M) (c) Hg/Cd2+ (0.01 M), Zn2+ (0.01 M), HCl(1 M)

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter18: Electrochemistry
Section: Chapter Questions
Problem 18.93QE
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Consider each of the following electrode-solution interfaces, and write the equation for the elec-
trode reaction that occurs first when the potential is moved in (1) a negative direction and (2) a posi-
tive direction from the open-circuit potential. Next to each reaction write the approximate potential
for the reaction in V vs. SCE (assuming the reaction is reversible).
(a) Pt/Cu2+ (0.01 M), Cd2+ (0.01 M), H2SO4(1 M)
(b) Pt/Sn2+ (0.01 M), Sn4+ (0.01 M), HCl(1 M)
(c) Hg/Cd2+ (0.01 M), Zn2+ (0.01 M), HCl(1 M)
Transcribed Image Text:Consider each of the following electrode-solution interfaces, and write the equation for the elec- trode reaction that occurs first when the potential is moved in (1) a negative direction and (2) a posi- tive direction from the open-circuit potential. Next to each reaction write the approximate potential for the reaction in V vs. SCE (assuming the reaction is reversible). (a) Pt/Cu2+ (0.01 M), Cd2+ (0.01 M), H2SO4(1 M) (b) Pt/Sn2+ (0.01 M), Sn4+ (0.01 M), HCl(1 M) (c) Hg/Cd2+ (0.01 M), Zn2+ (0.01 M), HCl(1 M)
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