1. Calculate the potential of a platinum indicator electrode dipping into a solution that is 0.1M in tin(IV) and 0.01M in tin(II). Sn+ + 2e- Sn2+ E° = 0.14 v
1. Calculate the potential of a platinum indicator electrode dipping into a solution that is 0.1M in tin(IV) and 0.01M in tin(II). Sn+ + 2e- Sn2+ E° = 0.14 v
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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![1. Calculate the potential of a platinum indicator electrode dipping into a solution that is 0.1M in
tin(IV) and 0.01M in tin(II).
Sn+ + 2e- Sn?+
E° = 0.14 v
2. A silver metal indicating electrode and a standard hydrogen reference electrode are dipped into
a solution containing Ag*. From the potentiometric measurement, the potential at the silver
electrode is found to be +0.692 v. Calculate the molarity of silver(I) in the solution.
Ag* + e- Ag(s)
E° = 0.800 v
3. A platinum indicator electrode dipping into a solution containing Fe and Fe2+ is used with a
standard hydrogen reference electrode. If the measured difference in potential is +0.948 v,
calculate the ratio of Fe to Fe2* in the solution.
4. Calculate the potential of a platinum electrode in contact with a solution containing 0.1 M VO2*,
0.1 M VO, and 4M perchloric acid.
Vo* + 2H* + e- vo* + H20
E° = 1.000 v](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F70ecc986-8d95-42bb-a8a1-7c6cfdcdb956%2F023c7169-f0e7-47bb-8a47-31324b2e122c%2Fvmb5qwf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. Calculate the potential of a platinum indicator electrode dipping into a solution that is 0.1M in
tin(IV) and 0.01M in tin(II).
Sn+ + 2e- Sn?+
E° = 0.14 v
2. A silver metal indicating electrode and a standard hydrogen reference electrode are dipped into
a solution containing Ag*. From the potentiometric measurement, the potential at the silver
electrode is found to be +0.692 v. Calculate the molarity of silver(I) in the solution.
Ag* + e- Ag(s)
E° = 0.800 v
3. A platinum indicator electrode dipping into a solution containing Fe and Fe2+ is used with a
standard hydrogen reference electrode. If the measured difference in potential is +0.948 v,
calculate the ratio of Fe to Fe2* in the solution.
4. Calculate the potential of a platinum electrode in contact with a solution containing 0.1 M VO2*,
0.1 M VO, and 4M perchloric acid.
Vo* + 2H* + e- vo* + H20
E° = 1.000 v
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