Consider a voltaic cell designed to study the redox reaction between Cu²+ and Ni(s). Ni(NO3)2 and Cu(s) are also used in the cell. Consult Appendix L (p. 1237) in your text, and write out the correct oxidation and reduction half-reactions. On the schematic diagram below, identify where each of the four compounds would be used in the cell. e- e- Porous disk o forhis Reducing Oxidizing agent agent e- (a) Anode (b) Cathode Calo Cwhen HT- 1. Calculate the standard cell potential (E°cell) for the cell in #1. 2. Using a 3.00-A current, how long would it take to electroplate a sheet of metal with 0.200 g of Ni from a Ni(NO3)2 solution?

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Consider a voltaic cell designed to study the redox reaction between Cu²+ and Ni(s). Ni(NO3)2
and Cu(s) are also used in the cell. Consult Appendix L (p. 1237) in your text, and write out the
correct oxidation and reduction half-reactions. On the schematic diagram below, identify where
each of the four compounds would be used in the cell.
e-
e-
Porous
disk
o
forhis
Reducing
Oxidizing
agent
agent
e-
(a) Anode
(b) Cathode
Calo
Cwhen HT-
1. Calculate the standard cell potential (E°cell) for the cell in #1.
2. Using a 3.00-A current, how long would it take to electroplate a sheet of metal with 0.200 g
of Ni from a Ni(NO3)2 solution?
Transcribed Image Text:Consider a voltaic cell designed to study the redox reaction between Cu²+ and Ni(s). Ni(NO3)2 and Cu(s) are also used in the cell. Consult Appendix L (p. 1237) in your text, and write out the correct oxidation and reduction half-reactions. On the schematic diagram below, identify where each of the four compounds would be used in the cell. e- e- Porous disk o forhis Reducing Oxidizing agent agent e- (a) Anode (b) Cathode Calo Cwhen HT- 1. Calculate the standard cell potential (E°cell) for the cell in #1. 2. Using a 3.00-A current, how long would it take to electroplate a sheet of metal with 0.200 g of Ni from a Ni(NO3)2 solution?
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