Chemical Principles
Chemical Principles
8th Edition
ISBN: 9781337247269
Author: Steven S. Zumdahl; Donald J. DeCoste
Publisher: Cengage Learning US
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Chapter 11, Problem 23E

(a)

Interpretation Introduction

Interpretation: The standard line notation for the cell having following anode and cathode reactions needs to be determined.

  Cl2+2e-2Cl-E0=1.36VBr2+2e-2Br-E0=1.09V

Concept Introduction : Standard line notation is way to express a reaction a reaction in the electrochemical cell. In this notation, the cathode is separarted from the anode by using a salt bridge. In this cell, the anode is placed on the left and cathode on the right

Oxidation half cell: In this half-cell oxidation of metal occurs at anode

Reduction half cell: In this half-cell reduction of ion occurs at cathode

Flow of electron in the cell is from anode to cathode.

(a)

Expert Solution
Check Mark

Answer to Problem 23E

The cell notation is,

  Pt|Br-(1M)Br2(1atm)||Cl2(1atm)|Cl-(1M)|Pt

Explanation of Solution

First cell is

  Cl2+2e-2Cl-E0=1.36VBr2+2e-2Br-E0=1.09V

From the above reaction it can be seen that Cl2 have more reduction potential hence get reduced and Br2 get oxidized so the cell notation will be,

  Pt|Br-(1M)Br2(1atm)||Cl2(1atm)|Cl-(1M)|Pt

The reaction is occurring at platinum electrode.

Then the oxidation half-cell is:

  2Br-Br2+2e-

And the reduction half-cell is:

  Cl2+2e-2Cl-

(b)

Interpretation Introduction

Interpretation: The standard line notation for the cell having following anode and cathode reactions needs to be determined.

  MnO4-+8H++5e-Mn2++4H2OE0=1.51VIO4-+2H++2e-IO3-+H2OE0=1.60V

Concept Introduction : Standard line notation is way to express a reaction a reaction in the electrochemical cell. In this notation, the cathode is separarted from the anode by using a salt bridge. In this cell, the anode is placed on the left and cathode on the right

Oxidation half cell: In this half-cell oxidation of metal occurs at anode

Reduction half cell: In this half-cell reduction of ion occurs at cathode

(b)

Expert Solution
Check Mark

Answer to Problem 23E

The cell notation is,

  Pt|Mn2+(1M),MnO4-(1M),H+(1M)||IO4-(1M),IO3-(1M),H+(1M)|Pt

Explanation of Solution

The second cell is

  MnO4-+8H++5e-Mn2++4H2OE0=1.51VIO4-+2H++2e-IO3-+H2OE0=1.60V

From the above reaction it can be seen that IO4- have more reduction potential hence get reduced and MnO4- get oxidized so the cell notation will be,

  Pt|Mn2+(1M),MnO4-(1M),H+(1M)||IO4-(1M),IO3-(1M),H+(1M)|Pt

The reaction is occurring at platinum electrode.

Then the oxidation half-cell is:

  Mn2++4H2O  MnO4-+8H++5e

And the reduction half-cell is:

  IO4-+2H++2e-IO3-+H2O

(c)

Interpretation Introduction

Interpretation: The standard line notation for the cell having following anode and cathode reactions needs to be determined.

  H2O2+2H-+2e-2H2OE0=1.78VO2+2H++2e-2H2O2E0=0.68V

Concept Introduction : Standard line notation is way to express a reaction a reaction in the electrochemical cell. In this notation, the cathode is separarted from the anode by using a salt bridge. In this cell, the anode is placed on the left and cathode on the right

Oxidation half cell: In this half-cell oxidation of metal occurs at anode

Reduction half cell: In this half-cell reduction of ion occurs at cathode

(c)

Expert Solution
Check Mark

Answer to Problem 23E

The cell notation is:

  Pt|H2O2(1M),H+(1M)|O2(1atm)||H2O2(1M),H+(1M)|Pt

Explanation of Solution

The third cell is

  H2O2+2H-+2e-2H2OE0=1.78VO2+2H++2e-2H2O2E0=0.68V

From the above reaction it can be seen that H2O2 have more reduction potential hence get reduced easily and in H2O2 ,oxygen is represented as O22 and it gets reduced to O2- so the cell notation will be,

  Pt|H2O2(1M),H+(1M)|O2(1atm)||H2O2(1M),H+(1M)|Pt

The reaction is occurring at platinum electrode.

Then the oxidation half-cell is:

  2H2O2O2+2H++2e-

And the reduction half-cell is:

  H2O2+2H-+2e-2H2O

(d)

Interpretation Introduction

Interpretation: The standard line notation for the cell having following anode and cathode reactions needs to be determined.

  Mn2++2e-MnE0=1.18VFe3++3e-FeE0=0.036V

Concept Introduction:Standard line notation is way to express a reaction a reaction in the electrochemical cell. In this notation, the cathode is separarted from the anode by using a salt bridge. In this cell, the anode is placed on the left and cathode on the right

Oxidation half cell: In this half-cell oxidation of metal occurs at anode

Reduction half cell: In this half-cell reduction of ion occurs at cathode

(d)

Expert Solution
Check Mark

Answer to Problem 23E

The cell notation is,

  Mn|Mn2+(1M)||Fe3+(1M)|Fe

Explanation of Solution

The fourth cell is

  Mn2++2e-MnE0=1.18VFe3++3e-FeE0=0.036V

In the above reaction it can be seen that Fe3+ has negative reduction potential hence get easily reduced and Mn2+ have large negative reduction potential hence get easily oxidized, so the cell notation will be,

  Mn|Mn2+(1M)||Fe3+(1M)|Fe

The reaction is occurring at platinum electrode.

Then the oxidation half-cell is:

  MnMn2++2e-

And the reduction half-cell is:

  Fe3++3e-Fe

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Chapter 11 Solutions

Chemical Principles

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