Under standard conditions, the cell potential for a voltaic cell composed of zinc and copper is 1.10 V. Calculate the potential for the cell when only the following deviations from standard conditions are made: low al rilas 2+ 2+ Zn(s) + Cu²+ (aq) → Cu(s) + Zn²+ (aq) a) [Zn²+] = 0.25 M; [Cu²+] = 0.25 M - b) [Zn²+] = 0.25 M; [Cu²+] = 0.50 M c) [Zn²+] = 0.75 M; [Cu²+] = 0.75 M d) [Zn²+] = 0.75 M; [Cu²+] = 0.25 M e) [Zn²+] = 0.25 M; [Cu²+] = 0.75 M d spubol of sester soubol of lesbisH

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19. Under standard conditions, the cell potential for a voltaic cell composed of zinc and copper is
no 1.10 V. Calculate the potential for the cell when only the following deviations from standard
blive conditions are made: U
2+
2+
Zn(s) + Cu²+ (aq) → Cu(s) + Zn²+ (aq)
a) [Zn²+] = 0.25 M; [Cu²+] = 0.25 M
2+
b) [Zn²+] = 0.25 M; [Cu²+] = 0.50 M
53
c) [Zn²+] = 0.75 M; [Cu²+] = 0.75 M
2+
d) [Zn²+] = 0.75 M; [Cu²+] = 0.25 M
Jesien
e) [Zn²+] = 0.25 M; [Cu²+] = 0.75 M
sidst
hod
84
soubolt of desier
soubofl of tesbisH
Transcribed Image Text:19. Under standard conditions, the cell potential for a voltaic cell composed of zinc and copper is no 1.10 V. Calculate the potential for the cell when only the following deviations from standard blive conditions are made: U 2+ 2+ Zn(s) + Cu²+ (aq) → Cu(s) + Zn²+ (aq) a) [Zn²+] = 0.25 M; [Cu²+] = 0.25 M 2+ b) [Zn²+] = 0.25 M; [Cu²+] = 0.50 M 53 c) [Zn²+] = 0.75 M; [Cu²+] = 0.75 M 2+ d) [Zn²+] = 0.75 M; [Cu²+] = 0.25 M Jesien e) [Zn²+] = 0.25 M; [Cu²+] = 0.75 M sidst hod 84 soubolt of desier soubofl of tesbisH
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