Zn-Fe (Ecell = 0.20 V) Anode Equation for Anode Half-Reaction Cathode Equation for Cathode Half- Reaction Table 1.2. Effect of Concentration Changes on Cell Potential Cu| Cu²“(aq,0.001M) || Cu²*(aq,1M) |Cu Cell Potential of Concentration Cell: 0.087 V Equation for Anode Half-Reaction Equation for Cathode Half-Reaction Table 1.3. The Nernst Equation and an Unknown Concentration Ecell measured (V) 0.06 0.12 0.18 Concentration of the Concentration Cell Unknown, M Solution 1 – Solution 2 Solution 1 – Solution 3 Solution 1 – Solution 4 Constants: Temperature = 25°C [Solution 1] = 0.1 M Cu²+ (consider Solution 1 as the concentrated solution and the cathode)

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Zn-Fe (Ecell = 0.20 V)
Anode Equation for Anode Half-Reaction Cathode
Equation for Cathode Half-
Reaction
Table 1.2. Effect of Concentration Changes on Cell Potential
Cu | Cu²*(aq,0.001M) || Cu²*(aq,1M) | Cu
Cell Potential of Concentration Cell: 0.087 V
Equation for Anode Half-Reaction
Equation for Cathode Half-Reaction
Table 1.3. The Nernst Equation and an Unknown Concentration
Ecell measured
Concentration of the
Concentration Cell
(V)
Unknown, M
Solution 1 – Solution 2
Solution 1 – Solution 3
Solution 1 – Solution 4
0.06
0.12
0.18
Constants:
Temperature = 25°C
[Solution 1] = 0.1 M Cu2+ (consider Solution 1 as the concentrated solution and the cathode)
Transcribed Image Text:Zn-Fe (Ecell = 0.20 V) Anode Equation for Anode Half-Reaction Cathode Equation for Cathode Half- Reaction Table 1.2. Effect of Concentration Changes on Cell Potential Cu | Cu²*(aq,0.001M) || Cu²*(aq,1M) | Cu Cell Potential of Concentration Cell: 0.087 V Equation for Anode Half-Reaction Equation for Cathode Half-Reaction Table 1.3. The Nernst Equation and an Unknown Concentration Ecell measured Concentration of the Concentration Cell (V) Unknown, M Solution 1 – Solution 2 Solution 1 – Solution 3 Solution 1 – Solution 4 0.06 0.12 0.18 Constants: Temperature = 25°C [Solution 1] = 0.1 M Cu2+ (consider Solution 1 as the concentrated solution and the cathode)
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