An electrochemical cell is constructed based on the following balanced equation: Cu(s) + 2 Ag*(aq) → Cu²*(aq) + 2 Ag(s) Half-reactions with standard reduction potentials are given below. Cu2"(aq) + 2 e- → Cu(s); E° = 0.342 V Ag*(aq) + e¯ → Ag(s); E° = 0.800 V i See Periodic Table O Se Calculate Ecell at 298 K for an electrochemical cell based on the overall redox reaction between Cu2+ and Ag if [Ag*] = 2.56 × 10- 3 Mand [Cu2+] = 8.25 × 10-4 M. V
An electrochemical cell is constructed based on the following balanced equation: Cu(s) + 2 Ag*(aq) → Cu²*(aq) + 2 Ag(s) Half-reactions with standard reduction potentials are given below. Cu2"(aq) + 2 e- → Cu(s); E° = 0.342 V Ag*(aq) + e¯ → Ag(s); E° = 0.800 V i See Periodic Table O Se Calculate Ecell at 298 K for an electrochemical cell based on the overall redox reaction between Cu2+ and Ag if [Ag*] = 2.56 × 10- 3 Mand [Cu2+] = 8.25 × 10-4 M. V
Chemistry
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![An electrochemical cell is constructed based on the following balanced equation:
Cu(s) + 2 Ag*(aq) → Cu2*(aq) + 2 Ag(s)
Half-reactions with standard reduction potentials are given below.
Cu2"(aq) + 2 e-- Cu(s); E = 0.342 V
Ag*(aq) +e- - Ag(s); E = 0.800 V
i See Periodic Table O See
Calculate Ecell at 298 K for an electrochemical cell based on the overall redox reaction between Cu2+ and Ag if [Ag*] = 2.56 x 10-
3 Mand [Cu2+] = 8.25 x 10-4 M.
V](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d676b36-a94f-45a4-8d8b-b92a6a7c9eb8%2F6f863e97-66e1-4234-9aee-303ed32376c3%2Fgm812o_processed.png&w=3840&q=75)
Transcribed Image Text:An electrochemical cell is constructed based on the following balanced equation:
Cu(s) + 2 Ag*(aq) → Cu2*(aq) + 2 Ag(s)
Half-reactions with standard reduction potentials are given below.
Cu2"(aq) + 2 e-- Cu(s); E = 0.342 V
Ag*(aq) +e- - Ag(s); E = 0.800 V
i See Periodic Table O See
Calculate Ecell at 298 K for an electrochemical cell based on the overall redox reaction between Cu2+ and Ag if [Ag*] = 2.56 x 10-
3 Mand [Cu2+] = 8.25 x 10-4 M.
V
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