A galvanic cell is powered by the following redox reaction: 2+ 3 Cu(aq) + Cr(OH)3(s) + 5 OH¯ (aq) - 3 Cu (aq) + CrO4(aq) + 4H2O(l) + 4H,00 Answer the following questions about this cell. If you need any electrochemical data, be sure you get it from the ALEKS Data tab. Write a balanced equation for the half-reaction that takes place at the cathode. Write a balanced equation for the half-reaction that takes place at the anode. Calculate the cell voltage under standard conditions. Round your answer to 2 decimal places. ☐ E=V X

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter19: Principles Of Chemical Reactivity: Electron Transfer Reactions
Section19.9: Corrosion: Redox Reactions In The Environment
Problem 2.5ACP: Assume the following electrochemical cell simulates the galvanic cell formed by copper and zinc in...
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A galvanic cell is powered by the following redox reaction:
2+
3 Cu(aq) + Cr(OH)3(s) + 5 OH¯ (aq) -
3 Cu (aq) + CrO4(aq) + 4H2O(l)
+ 4H,00
Answer the following questions about this cell. If you need any electrochemical data, be sure you get it from the ALEKS Data tab.
Write a balanced equation for
the half-reaction that takes
place at the cathode.
Write a balanced equation for
the half-reaction that takes
place at the anode.
Calculate the cell voltage
under standard conditions.
Round your answer to 2
decimal places.
☐
E=V
X
Transcribed Image Text:A galvanic cell is powered by the following redox reaction: 2+ 3 Cu(aq) + Cr(OH)3(s) + 5 OH¯ (aq) - 3 Cu (aq) + CrO4(aq) + 4H2O(l) + 4H,00 Answer the following questions about this cell. If you need any electrochemical data, be sure you get it from the ALEKS Data tab. Write a balanced equation for the half-reaction that takes place at the cathode. Write a balanced equation for the half-reaction that takes place at the anode. Calculate the cell voltage under standard conditions. Round your answer to 2 decimal places. ☐ E=V X
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