Based on the cell notation of an electrochemical cell, Pt(s)| H2 (g. 1 atm) |H+ (aq,0.02M)|| Ag (aq,0.15 M) Ag (s) (a) write the half-cell notation equation of the anode and cathode. (b) write the overall cell reaction equation. (c) given that the cell potential is +0.852 V, calculate the standard reduction potential of silver. (d) calculate the equilibrium constant for the reaction at 25°C.

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter17: Electrochemistry
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Based on the cell notation of an electrochemical cell,
Pt(s) | H2 (g, 1 atm) | H+ (aq,0.02M)|| Ag* (aq.0.15
M) Ag (s)
(a)
write the half-cell notation equation of the anode and cathode.
(b)
write the overall cell reaction equation.
(c)
given that the cell potential is +0.852 V, calculate the standard reduction potential of silver.
(d)
calculate the equilibrium constant for the reaction at 25 C.
Transcribed Image Text:Based on the cell notation of an electrochemical cell, Pt(s) | H2 (g, 1 atm) | H+ (aq,0.02M)|| Ag* (aq.0.15 M) Ag (s) (a) write the half-cell notation equation of the anode and cathode. (b) write the overall cell reaction equation. (c) given that the cell potential is +0.852 V, calculate the standard reduction potential of silver. (d) calculate the equilibrium constant for the reaction at 25 C.
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