Use measured cell potential to calculate concentration. When [Hg2+] = 1.06 M, the observed cell potential at 298K for an electrochemical cell with the reaction shown below is 1.655 V. What is the Cr3+ concentration in this cell? 3Hg2+(aq) + 2Cr(s)—3Hg(1) + 2Cr³+(aq) [Cr3+]= M Use cell potential to calculate an equilibrium constant. Calculate the cell potential and the equilibrium constant for the following reaction at 298 K: Cu2+(aq) + Fe2(aq) → Cu*(aq) + Fe3+(aq) Hint: Carry at least 5 significant figures during intermediate calculations to avoid round off error when taking the antilogarithm. Equilibrium constant: 4.8x10^-11

Chemistry: The Molecular Science
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Chapter17: Electrochemistry And Its Applications
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Use measured cell potential to calculate concentration.
When [Hg2+] = 1.06 M, the observed cell potential at 298K for an
electrochemical cell with the reaction shown below is 1.655 V. What is the
Cr3+ concentration in this cell?
3Hg2+(aq) + 2Cr(s)—3Hg(1) + 2Cr³+(aq)
[Cr3+]=
M
Transcribed Image Text:Use measured cell potential to calculate concentration. When [Hg2+] = 1.06 M, the observed cell potential at 298K for an electrochemical cell with the reaction shown below is 1.655 V. What is the Cr3+ concentration in this cell? 3Hg2+(aq) + 2Cr(s)—3Hg(1) + 2Cr³+(aq) [Cr3+]= M
Use cell potential to calculate an equilibrium constant.
Calculate the cell potential and the equilibrium constant for the following
reaction at 298 K:
Cu2+(aq) + Fe2(aq) → Cu*(aq) + Fe3+(aq)
Hint: Carry at least 5 significant figures during intermediate calculations
to avoid round off error when taking the antilogarithm.
Equilibrium constant: 4.8x10^-11
Transcribed Image Text:Use cell potential to calculate an equilibrium constant. Calculate the cell potential and the equilibrium constant for the following reaction at 298 K: Cu2+(aq) + Fe2(aq) → Cu*(aq) + Fe3+(aq) Hint: Carry at least 5 significant figures during intermediate calculations to avoid round off error when taking the antilogarithm. Equilibrium constant: 4.8x10^-11
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