31)Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25°C, given the standard reduction potentials for the half- reactions. Sn(s) | Sn2+(ag, 0.022 M) || Ag*(aq, 2.7 M) | Ag(s) Sn2+(ag) + 2 e → Sn(s) E° = -0.14 V Ag*(aq) + e¯ → Ag(s) E° = +0.80 V a. +1.01 V b. -0.83 V c. +1.31 V d. +0.01 V e. -0.66 V
31)Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25°C, given the standard reduction potentials for the half- reactions. Sn(s) | Sn2+(ag, 0.022 M) || Ag*(aq, 2.7 M) | Ag(s) Sn2+(ag) + 2 e → Sn(s) E° = -0.14 V Ag*(aq) + e¯ → Ag(s) E° = +0.80 V a. +1.01 V b. -0.83 V c. +1.31 V d. +0.01 V e. -0.66 V
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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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:31)Calculate the cell potential for the following reaction that takes place in an
electrochemical cell at 25°C, given the standard reduction potentials for the half-
reactions.
Sn(s) | Sn2+(ag, 0.022 M) || Ag*(aq, 2.7 M) | Ag(s)
Sn2+(ag) + 2 e → Sn(s) E° = -0.14 V
Ag*(aq) + e¯ → Ag(s)
E° = +0.80 V
a. +1.01 V
b. -0.83 V
c. +1.31 V
d. +0.01 V
e. -0.66 V
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