A galvanic cell at a temperature of 25.0 °C is powered by the following redox reaction: Cu2+ (aq)+Zn(s)→ Cu (s) + Zn2+ (aq) Suppose the cell is prepared with 7.76 M Cu 2+ in one half-cell and 7.41 M Zn 2+ in the other. Calculate the cell voltage under these conditions. Round your answer to 3 significant digits. ☐ 1x10 ロ・ロ ㅁㅁ

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter17: Electrochemistry And Its Applications
Section17.4: Voltaic Cells And Cell Potential
Problem 17.4PSP: Given this reaction, its standard potential, and the standard half-cell potential of 0.34 V for the...
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A galvanic cell at a temperature of 25.0 °C is powered by the following redox reaction:
Cu2+ (aq)+Zn(s)→ Cu (s) + Zn2+ (aq)
Suppose the cell is prepared with 7.76 M Cu
2+
in one half-cell and 7.41 M Zn
2+
in the other.
Calculate the cell voltage under these conditions. Round your answer to 3 significant digits.
☐
1x10
ロ・ロ
ㅁㅁ
Transcribed Image Text:A galvanic cell at a temperature of 25.0 °C is powered by the following redox reaction: Cu2+ (aq)+Zn(s)→ Cu (s) + Zn2+ (aq) Suppose the cell is prepared with 7.76 M Cu 2+ in one half-cell and 7.41 M Zn 2+ in the other. Calculate the cell voltage under these conditions. Round your answer to 3 significant digits. ☐ 1x10 ロ・ロ ㅁㅁ
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