5) Given the data below: Cr207 (aq) ²- + 14 H* + 6 e-→ Cr(aq) ³* + 7 H20(1) E°red = 1.33 V Cu(aq) 2* + 2 e - → Cu(s) E°red = 0.34 V a. Draw the galvanic cell, including labelling the electrodes and the other portions of the cell. b. Write the balanced equation for a galvanic cell (balance using the half-reaction method, then combine the equations). c. State which half reaction is the cathode and which is the anode. d. Calculate the standard cell potential for this cell.

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5) Given the data below:
Cr207 (aq) 2- + 14 H* + 6 e> Cr(aq) 3+ + 7 H20(1) E°red = 1.33 V
Culaq) 2+ + 2 e → Cu(s) E°red = 0.34 V
a. Draw the galvanic cell, including labelling the electrodes and the other portions of the cell.
b. Write the balanced equation for a galvanic cell (balance using the half-reaction method, then combine
the equations).
c. State which half reaction is the cathode and which is the anode.
d. Calculate the standard cell potential for this cell.
e. Determine the Ecell at 25°C, given: [Cr207 (aq) 2 ] = 0. 2500 M, [Cr(aq) 3*] = 0. 2500 M,
[Cu²l=0.2500M, and pH = 5
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Transcribed Image Text:5) Given the data below: Cr207 (aq) 2- + 14 H* + 6 e> Cr(aq) 3+ + 7 H20(1) E°red = 1.33 V Culaq) 2+ + 2 e → Cu(s) E°red = 0.34 V a. Draw the galvanic cell, including labelling the electrodes and the other portions of the cell. b. Write the balanced equation for a galvanic cell (balance using the half-reaction method, then combine the equations). c. State which half reaction is the cathode and which is the anode. d. Calculate the standard cell potential for this cell. e. Determine the Ecell at 25°C, given: [Cr207 (aq) 2 ] = 0. 2500 M, [Cr(aq) 3*] = 0. 2500 M, [Cu²l=0.2500M, and pH = 5 www
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