Cus) A voltaic cell is constructed using the following half-reactions: Cu*(ag) + e E°red = +0.521 V 2(6) + 2e 21 (aq) E°red = +0.536 V The cell is operated at 298 K with [Cu*] = 2.1 M and [I'] = 3.2 M. A. Determine ɛ for the cell at these concentrations. [Select ] B. Which electrode is the anode of the cell? [ Select ] C. Is the answer in B the same as it would be if the cell were operated under standard conditions? [ Select ] D. If [Cu*] = 1.4 M, at what molar concentration of I' would the cell have a zero potential? [ Select ]

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Cus)
A voltaic cell is constructed using the following half-reactions: Cu*(ag) + e –→
E°red = +0.521 V
2(5) + 2e
21 (aq)
E°red = +0.536 V
The cell is operated at 298 K with [Cu*] = 2.1 M and [I] = 3.2 M.
A. Determine ɛ for the cell at these concentrations. [ Select]
B. Which electrode is the anode of the cell? [ Select ]
C. Is the answer in B the same as it would be if the cell were operated under standard
conditions? [ Select ]
D. If [Cu*] = 1.4 M, at what molar concentration of I' would the cell have a zero
potential? [Select ]
Transcribed Image Text:Cus) A voltaic cell is constructed using the following half-reactions: Cu*(ag) + e –→ E°red = +0.521 V 2(5) + 2e 21 (aq) E°red = +0.536 V The cell is operated at 298 K with [Cu*] = 2.1 M and [I] = 3.2 M. A. Determine ɛ for the cell at these concentrations. [ Select] B. Which electrode is the anode of the cell? [ Select ] C. Is the answer in B the same as it would be if the cell were operated under standard conditions? [ Select ] D. If [Cu*] = 1.4 M, at what molar concentration of I' would the cell have a zero potential? [Select ]
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