PART A. Cell Potentials Negative Electrode Electrode E° cell Anode E° anode Cathode E° cathode System Used (volts) Reaction (volts) Reaction (volts) 1 2 3 4 6. Calculations 1. Write the anode reaction in each of the cells in terms of a reduction. Write the cathode reac- tion for each of the cells. 2. Assign a value of 0.00 V for E° systems you used in your cells. Enter this value into the table for all of the silver electrode Ag*, Ag * 3. For all of the remaining half-cell systems, calculate E°, and E°. aпode by recognizing that cathode E°. cell = E° - E° anode" cathode
PART A. Cell Potentials Negative Electrode Electrode E° cell Anode E° anode Cathode E° cathode System Used (volts) Reaction (volts) Reaction (volts) 1 2 3 4 6. Calculations 1. Write the anode reaction in each of the cells in terms of a reduction. Write the cathode reac- tion for each of the cells. 2. Assign a value of 0.00 V for E° systems you used in your cells. Enter this value into the table for all of the silver electrode Ag*, Ag * 3. For all of the remaining half-cell systems, calculate E°, and E°. aпode by recognizing that cathode E°. cell = E° - E° anode" cathode
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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How do I make this table?
![PART A. CelI Potentials
Electrode
E°
Cathode
Negative
Electrode
Anode
E°
E°
cell
anode
cathode
System Used
(volts)
Reaction
(volts)
Reaction
(volts)
1
2
4
5
6
Calculations
1. Write the anode reaction in each of the cells in terms of a reduction. Write the cathode reac-
tion for each of the cells.
2. Assign a value of 0.00 V for E°
Enter this value into the table for all of the silver electrode
Ag*, Ag
systems you used in your cells.
3. For all of the remaining half-cell systems, calculate E°
cathode
and E°
апode
by recognizing that
E°.
= °
– °.
cell
cathode
aпode"
3.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc247cb8d-78ad-4f89-a50f-ab06364ea5f4%2F0a7eb41b-eeb2-40f0-aadf-6cc70fd473ef%2Fq1epy7q_processed.png&w=3840&q=75)
Transcribed Image Text:PART A. CelI Potentials
Electrode
E°
Cathode
Negative
Electrode
Anode
E°
E°
cell
anode
cathode
System Used
(volts)
Reaction
(volts)
Reaction
(volts)
1
2
4
5
6
Calculations
1. Write the anode reaction in each of the cells in terms of a reduction. Write the cathode reac-
tion for each of the cells.
2. Assign a value of 0.00 V for E°
Enter this value into the table for all of the silver electrode
Ag*, Ag
systems you used in your cells.
3. For all of the remaining half-cell systems, calculate E°
cathode
and E°
апode
by recognizing that
E°.
= °
– °.
cell
cathode
aпode"
3.
![Data 7
Para A
Degative electrode
Hgt=paritivc electrode
5421.9 mu
う
2)っFc3t
negative electrode
→ Agt
electrode
%3D
pasitive
254.0 mv
3) 2n2+
→ Agt
Ź Degadive electrode
electrode
pesitive
1510.3
pasitive elecrode
) Agt
-) 676.3
= Degutive
electiode
5) Br Br's positie electrode
negative
electrode
>392,3 m
21,5: 0egatine electrode
27
2 AgiERositive electrode
> 14761 nav
• Baa B
>C?"=negarire elechiode
%3D
→ Agte positivc electrode
D.z4249 my
2 > NH, in c = 659,7 mu
io Agt- l,9 mu](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc247cb8d-78ad-4f89-a50f-ab06364ea5f4%2F0a7eb41b-eeb2-40f0-aadf-6cc70fd473ef%2Fvoodb5n_processed.png&w=3840&q=75)
Transcribed Image Text:Data 7
Para A
Degative electrode
Hgt=paritivc electrode
5421.9 mu
う
2)っFc3t
negative electrode
→ Agt
electrode
%3D
pasitive
254.0 mv
3) 2n2+
→ Agt
Ź Degadive electrode
electrode
pesitive
1510.3
pasitive elecrode
) Agt
-) 676.3
= Degutive
electiode
5) Br Br's positie electrode
negative
electrode
>392,3 m
21,5: 0egatine electrode
27
2 AgiERositive electrode
> 14761 nav
• Baa B
>C?"=negarire elechiode
%3D
→ Agte positivc electrode
D.z4249 my
2 > NH, in c = 659,7 mu
io Agt- l,9 mu
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