Table 1. Lead-copper Galvanic Cell Reduction Half-Reaction Standard Reduction Potential Eº (V) Anode (Oxidation) Cathode (Reduction) Overall Cell Reaction Cell Notation E°cell =

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Electrochemistry Fill out the table, and calculate the E⁰cell. Thanks!
Constructing a Lead-Copper Galvanic Cell
In this experiment, we prepared solutions of Lead nitrate (PBNO3)2 and Copper sulfate (CUSO-).
Then, we took a piece of lead and copper strips (electrodes), placed them in the solutions, and
connected them using a multimeter. After turning the multimeter on, the voltage reading was 0.465
volts.
In our lead-copper cell, copper has higher standard reduction potential compared to lead, which
is why copper is reduced and lead was oxidized in the reaction. It also means that copper electrode is
the cathode since it is where reduction occurred, and lead is the anode because it is where oxidization
took place. The direction of electron flow is from the lead electrode (anode) to the copper electrode
(cathode).
Table 1. Lead-copper Galvanic Cell
Reduction Half-Reaction
Standard Reduction Potential Eº (V)
Anode (Oxidation)
Cathode (Reduction)
Overall Cell Reaction
Cell Notation
E°cell =
Transcribed Image Text:Constructing a Lead-Copper Galvanic Cell In this experiment, we prepared solutions of Lead nitrate (PBNO3)2 and Copper sulfate (CUSO-). Then, we took a piece of lead and copper strips (electrodes), placed them in the solutions, and connected them using a multimeter. After turning the multimeter on, the voltage reading was 0.465 volts. In our lead-copper cell, copper has higher standard reduction potential compared to lead, which is why copper is reduced and lead was oxidized in the reaction. It also means that copper electrode is the cathode since it is where reduction occurred, and lead is the anode because it is where oxidization took place. The direction of electron flow is from the lead electrode (anode) to the copper electrode (cathode). Table 1. Lead-copper Galvanic Cell Reduction Half-Reaction Standard Reduction Potential Eº (V) Anode (Oxidation) Cathode (Reduction) Overall Cell Reaction Cell Notation E°cell =
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