Which of the following cells has the highest standard cell potentials? Cd²"(aq) + 2e¯ → Cd(s) TI'(aq) + e → Tl(s) AgCl(s) + e¯ -→ Ag(s) + Cl (aq) Cu²*(aq) + 2e¯ → Cu(s) E° =-0.40 V E° =-0.34 V E° =+0.22 V E° = +0.34 V a. Cu/Cu2+ at the anode and Cd/Cd+2 at the cathode b. Ti(s)/Ti+ at the anode and AgCl(s)/Ag(s)/Cl- at the cathode c. Cd(s)/Cd2+ at the anode and AgCl(s)/Ag(s)/CI- at the cathode d. Ti(s)/Ti+ at the anode and Cu/Cu2+ at the anode
Which of the following cells has the highest standard cell potentials? Cd²"(aq) + 2e¯ → Cd(s) TI'(aq) + e → Tl(s) AgCl(s) + e¯ -→ Ag(s) + Cl (aq) Cu²*(aq) + 2e¯ → Cu(s) E° =-0.40 V E° =-0.34 V E° =+0.22 V E° = +0.34 V a. Cu/Cu2+ at the anode and Cd/Cd+2 at the cathode b. Ti(s)/Ti+ at the anode and AgCl(s)/Ag(s)/Cl- at the cathode c. Cd(s)/Cd2+ at the anode and AgCl(s)/Ag(s)/CI- at the cathode d. Ti(s)/Ti+ at the anode and Cu/Cu2+ at the anode
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![Which of the following cells has the highest
standard cell potentials?
E° =-0.40 V
Cd*(aq) + 2e¯ → Cd(s)
TI'(aq) + e → Tl(s)
AgCl(s) + e¯ → Ag(s) + Cl (aq) E° =+0.22 V
Cu²*(aq) + 2e¯ → Cu(s)
E° =-0.34 V
E° = +0.34 V
a. Cu/Cu2+ at the anode and Cd/Cd+2 at the
cathode
b. Ti(s)/Ti+ at the anode and AgCl(s)/Ag(s)/Cl- at
the cathode
c. Cd(s)/Cd2+ at the anode and AgCl(s)/Ag(s)/Cl-
at the cathode
d. Ti(s)/Ti+ at the anode and Cu/Cu2+ at the
anode](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F380323b8-2ccb-4767-9fe1-e18882525522%2F4e0d98bc-0fda-43d1-b426-79fe436f397e%2F372j6p_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Which of the following cells has the highest
standard cell potentials?
E° =-0.40 V
Cd*(aq) + 2e¯ → Cd(s)
TI'(aq) + e → Tl(s)
AgCl(s) + e¯ → Ag(s) + Cl (aq) E° =+0.22 V
Cu²*(aq) + 2e¯ → Cu(s)
E° =-0.34 V
E° = +0.34 V
a. Cu/Cu2+ at the anode and Cd/Cd+2 at the
cathode
b. Ti(s)/Ti+ at the anode and AgCl(s)/Ag(s)/Cl- at
the cathode
c. Cd(s)/Cd2+ at the anode and AgCl(s)/Ag(s)/Cl-
at the cathode
d. Ti(s)/Ti+ at the anode and Cu/Cu2+ at the
anode
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