For each galvanic cell, give the balanced cell reaction and determine 8°. Standard reduction potentials are found in the Standard Reduction Potentials table. (Use the lowest possible whole number coefficients. Include states-of-matter under the given conditions in your answer.) (a) balanced cell equation I chemPad XX° Au³+ (aq)+3Cu+ (aq) = 3Cu²+ (aq) +Au(s) Au^3+(aq)+3Cu^+(aq)<=>3Cu^2+(aq)+Au(s) Correct. 8⁰ -1.56 ← X V (b) balanced cell equation II Greek Help chemPad XX 2VO₂+ (aq) + 4H+ (aq)+Cd²+ (aq) = Cd(s)+2VO²+ (aq)+2H₂O(S) 2VO_2^+(aq)+4H^+(aq)+Cd^2+(aq)<=>Cd(s)+2VO^2+(aq)+2H_20(s) Greek Help

Chemistry: Principles and Practice
3rd Edition
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter18: Electrochemistry
Section: Chapter Questions
Problem 18.46QE
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For each galvanic cell, give the balanced cell reaction and determine º. Standard reduction potentials are found in the
Standard Reduction Potentials table. (Use the lowest possible whole number coefficients. Include states-of-matter under
the given conditions in your answer.)
(a) balanced cell equation I
chemPad
XX²
Correct.
3+
Au³+ (aq) +3Cu+ (aq) = 3Cu²+(aq)+Au(s)
Au^3+(aq)+3Cu^+(aq)<=>3Cu^2+(aq)+Au(s)
8⁰ -1.56
X V
Greek
(b) balanced cell equation II
Help
Greek
chemPad
XX²
2VO₂+ (aq) + 4H+ (aq)+Cd²+ (aq) = Cd(s)+2VO²+ (aq)+2H₂O(S)
2VO_2^+(aq)+4H^+(aq)+Cd^2+(aq)<=>Cd(s)+2VO^2+(aq)+2H_20(s)
Help
Your answer appears to have inconsistent states-of-matter
Transcribed Image Text:For each galvanic cell, give the balanced cell reaction and determine º. Standard reduction potentials are found in the Standard Reduction Potentials table. (Use the lowest possible whole number coefficients. Include states-of-matter under the given conditions in your answer.) (a) balanced cell equation I chemPad XX² Correct. 3+ Au³+ (aq) +3Cu+ (aq) = 3Cu²+(aq)+Au(s) Au^3+(aq)+3Cu^+(aq)<=>3Cu^2+(aq)+Au(s) 8⁰ -1.56 X V Greek (b) balanced cell equation II Help Greek chemPad XX² 2VO₂+ (aq) + 4H+ (aq)+Cd²+ (aq) = Cd(s)+2VO²+ (aq)+2H₂O(S) 2VO_2^+(aq)+4H^+(aq)+Cd^2+(aq)<=>Cd(s)+2VO^2+(aq)+2H_20(s) Help Your answer appears to have inconsistent states-of-matter
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