Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
8th Edition
ISBN: 9780134421377
Author: Charles H Corwin
Publisher: PEARSON
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Chapter 17, Problem 8ST
Interpretation Introduction

(a)

Interpretation:

The oxidation half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated.

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The oxidation half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is shown below.

H2O(l)+NO2(aq)NO3(aq)+2H+(aq)+2e

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the NO2 oxidized to NO3. In an electrochemical cell, oxidation occurs at anode electrode and reduction occurs at cathode electrode.

The oxidation half-reaction is shown below.

NO2(aq)NO3(aq)+2e

The number of atom is balanced by adding H2O molecule on the left hand side and 2H+ on the right hand side. The oxidation half-reaction is shown below.

H2O(l)+NO2(aq)NO3(aq)+2H+(aq)+2e

Conclusion

The oxidation half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is shown below.

H2O(l)+NO2(aq)NO3(aq)+2H+(aq)+2e

Interpretation Introduction

(b)

Interpretation:

The reduction half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated.

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The reduction half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is shown below.

H2O2(aq)+2e+2H+(aq)2H2O(l)

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the H2O2 reduced to H2O. In an electrochemical cell, oxidation occurs at anode electrode and reduction occurs at cathode electrode.

Therefore, the reduction half-reaction is shown below.

H2O2(aq)+2e2H2O(l)

The number of atoms and charge are balanced by adding 2H+ on the left hand side. Therefore, the reduction half-reaction is shown below.

H2O2(aq)+2e+2H+(aq)2H2O(l)

Conclusion

The reduction half-reaction for the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is shown below.

H2O2(aq)+2e+2H+(aq)2H2O(l)

Interpretation Introduction

(c)

Interpretation:

The substance that is oxidized in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated.

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The substance that is oxidized in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is NO2.

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the NO2 oxidized to NO3. Therefore, the substance that is oxidized in the given redox reaction is NO2.

Conclusion

The substance that is oxidized in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is NO2.

Interpretation Introduction

(d)

Interpretation:

The substance that is reduced in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The substance that is reduced in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is H2O2.

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the H2O2 reduced to H2O. Therefore, the substance that is reduced in the given redox reaction is H2O2.

Conclusion

The substance that is reduced in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is H2O2.

Interpretation Introduction

(e)

Interpretation:

The oxidizing agent in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated.

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The oxidizing agent in the reaction H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is H2O2.

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the H2O2 reduced to H2O. Therefore, the H2O2 is an oxidizing agent.

Conclusion

The oxidizing agent in the reaction H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is H2O2.

Interpretation Introduction

(f)

Interpretation:

The reducing agent in the redox reaction

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is to be stated.

Concept introduction:

The study of the conversion of chemical energy to electrical energy and vice versa is known as electrochemistry. In an electrochemical cell, two electrodes are connected by a wire and electrons are free to move between two compartments. Each compartment is known as a half-cell.

Expert Solution
Check Mark

Answer to Problem 8ST

The reducing agent in the reaction H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is NO2.

Explanation of Solution

The given redox reaction is shown below.

H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq)

The reduction is defined as a process in which the gain of electrons takes place, whereas the oxidation is defined as the process in which the loss of electrons occurs. The substance that is oxidized is a reducing agent and the substance that is reduced is an oxidizing agent.

In the above redox reaction, the NO2 oxidized to NO3. Therefore, the NO2 is a reducing agent.

Conclusion

The reducing agent in the reaction H2O2(aq) + NO2(aq)  H2O(l) + NO3(aq) is NO2.

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Chapter 17 Solutions

Introductory Chemistry: Concepts and Critical Thinking (8th Edition)

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