For the cell shown, the measured cell potential, Ecell, is –0.3525 V at 25 °C. Pt(s) | H,(g, 0.851 atm) | H†(aq, ? M) || Cd²+(aq, 1.00 M) | Cd(s) The balanced reduction half-reactions for the cell, and their respective standard reduction potential values, E°, are 2 H*(aq) + 2 e- ► H,(g) E° = 0.00 V Cd²+(aq) + 2 e¯ → Cd(s) E° = -0.403 V Calculate the H+ concentration. [H*] = M

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter18: Electrochemistry
Section: Chapter Questions
Problem 18.47QE
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For the cell shown, the measured cell potential, Ecell, is –0.3525 V at 25 °C.
Pt(s) | H, (g, 0.851 atm) | H* (aq, ? M) || Cd²+(aq, 1.00 M) | Cd(s)
The balanced reduction half-reactions for the cell, and their respective standard reduction potential values, E°, are
2 H* (аq) + 2е
H, (g)
E° = 0.00 V
Cd²+(aq) + 2 e¯ → Cd(s)
E° = -0.403 V
Calculate the H+ concentration.
[H*] =
Transcribed Image Text:For the cell shown, the measured cell potential, Ecell, is –0.3525 V at 25 °C. Pt(s) | H, (g, 0.851 atm) | H* (aq, ? M) || Cd²+(aq, 1.00 M) | Cd(s) The balanced reduction half-reactions for the cell, and their respective standard reduction potential values, E°, are 2 H* (аq) + 2е H, (g) E° = 0.00 V Cd²+(aq) + 2 e¯ → Cd(s) E° = -0.403 V Calculate the H+ concentration. [H*] =
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