[You can attach an image/capture of your hand-written work for this question] In a voltaic cell, one compartment/electrode is a Ag*(0.600 M) | Ag(s) half-cell, the other is a standard hydrogen electrode (saturated hydrogen gas on Pt metal) immersed in a 0.03 M HCI solution. a. ) Write the line notation for the cell, including all concentrations, partial pressures ar states. Write the two half-reactions (clearly indicate if it is the anode or cathode) and the overall reaction of this voltaic cell. b. ) Calculate Eºc C.. d. cell. ) Calculate Ecell at 25 °C. >) Calculate Ecell at 25 °C if the hydrogen electrode is immersed in a buffer solution containing 0.084 M acetic acid, CH3COOH (MM = 60.05 g.mol-¹) and 0.176 M sodium acetate, NaCH3COO (MM = 82.03 g.mol-1). Use pK₂ (CH3COOH) = 4.8.
[You can attach an image/capture of your hand-written work for this question] In a voltaic cell, one compartment/electrode is a Ag*(0.600 M) | Ag(s) half-cell, the other is a standard hydrogen electrode (saturated hydrogen gas on Pt metal) immersed in a 0.03 M HCI solution. a. ) Write the line notation for the cell, including all concentrations, partial pressures ar states. Write the two half-reactions (clearly indicate if it is the anode or cathode) and the overall reaction of this voltaic cell. b. ) Calculate Eºc C.. d. cell. ) Calculate Ecell at 25 °C. >) Calculate Ecell at 25 °C if the hydrogen electrode is immersed in a buffer solution containing 0.084 M acetic acid, CH3COOH (MM = 60.05 g.mol-¹) and 0.176 M sodium acetate, NaCH3COO (MM = 82.03 g.mol-1). Use pK₂ (CH3COOH) = 4.8.
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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![Question 12,
[You can attach an image/capture of your hand-written work for this question]
In a voltaic cell, one compartment/electrode is a Ag*(0.600 M) | Ag(s) half-cell, the other is a
standard hydrogen electrode (saturated hydrogen gas on Pt metal) immersed in a 0.03 M HCI
solution.
) Write the line notation for the cell, including all concentrations, partial pressures and
states. Write the two half-reactions (clearly indicate if it is the anode or cathode) and the overall
reaction of this voltaic cell.
a.
) Calculate Eºcell.
) Calculate Ecell at 25 °C.
$) Calculate Ecell at 25 °C if the hydrogen electrode is immersed in a buffer solution
containing 0.084 M acetic acid, CH3COOH (MM = 60.05 g.mol-¹) and 0.176 M sodium acetate,
NaCH3COO (MM = 82.03 g.mol-1). Use pKa (CH3COOH) = 4.8.
b.
C.
d.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F800ab837-ddf2-45d1-80d2-eda73338a2ae%2F71633388-3fbb-4e09-9738-15b99d484a44%2Frts6lg6_processed.png&w=3840&q=75)
Transcribed Image Text:Question 12,
[You can attach an image/capture of your hand-written work for this question]
In a voltaic cell, one compartment/electrode is a Ag*(0.600 M) | Ag(s) half-cell, the other is a
standard hydrogen electrode (saturated hydrogen gas on Pt metal) immersed in a 0.03 M HCI
solution.
) Write the line notation for the cell, including all concentrations, partial pressures and
states. Write the two half-reactions (clearly indicate if it is the anode or cathode) and the overall
reaction of this voltaic cell.
a.
) Calculate Eºcell.
) Calculate Ecell at 25 °C.
$) Calculate Ecell at 25 °C if the hydrogen electrode is immersed in a buffer solution
containing 0.084 M acetic acid, CH3COOH (MM = 60.05 g.mol-¹) and 0.176 M sodium acetate,
NaCH3COO (MM = 82.03 g.mol-1). Use pKa (CH3COOH) = 4.8.
b.
C.
d.
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