World of Chemistry
World of Chemistry
7th Edition
ISBN: 9780618562763
Author: Steven S. Zumdahl
Publisher: Houghton Mifflin College Div
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Chapter 18, Problem 25A

(a)

Interpretation Introduction

Interpretation: The given half-reaction which take place in acidic solution needs to be balanced.

  O2(g)H2O(l)

Concept Introduction: By a transfer of electrons, oxidation-reduction reactions are characterized. The transfer occurs to form ions. Oxidation reaction is caused by losing electrons and reduction caused by gaining electrons.

(a)

Expert Solution
Check Mark

Answer to Problem 25A

Balanced half-reaction is-

O2(g)+4H++4e2H2O(l)

Explanation of Solution

The given half-reaction is as follows:

O2(g)H2O(l)

The reaction takes place in acidic medium. Balance oxygen by H2O and hydrogen by H+ . To balance, O in reactant side give coefficient 2 to H2O . The equation becomes.

O2(g)+4H+2H2O(l)

Now, add electrons to balance charge. To balance charge on both side, add four electrons to the left. Hence, the balanced equation is-

O2(g)+4H++4e2H2O(l)

(b)

Interpretation Introduction

Interpretation: The given half-reaction which take place in acidic solution needs to be balanced.

Concept Introduction: By transfer of electrons, oxidation-reduction reactions are characterized. The transfer occurs to form ions. Oxidation reaction is caused by losing electrons and reduction caused by gaining electrons.

(b)

Expert Solution
Check Mark

Answer to Problem 25A

Balanced half-reaction is-

2IO3(aq)+12H++12eI2(s)+6H2O(l)

Explanation of Solution

The given half-reaction is as follows:

IO3(aq)I2(s)

First balance Iodine by multiplying reactant side IO3 by 2.

2IO3(aq)I2(s)

The reaction takes place in acidic medium. Balance oxygen by adding H2O and hydrogen by adding H+ . To balance O in reactant side, multiply H2O by 6. The equation becomes.

2IO3(aq)+12H+I2(s)+6H2O(l)

Now, add electrons to balance charge. To balance charge on both sides, add 12 electrons to the left. Hence, the balanced equation is-

2IO3(aq)+12H++12eI2(s)+6H2O(l)

(c)

Interpretation Introduction

Interpretation: The given half-reaction which take place in acidic solution needs to be balanced.

Concept Introduction: By transfer of electrons, oxidation-reduction reactions are characterized. The transfer occurs to form ions. Oxidation reaction is caused by losing electrons and reduction caused by gaining electrons.

(c)

Expert Solution
Check Mark

Answer to Problem 25A

Balanced half-reaction is-

VO2+(aq)+2H++eV3+(aq)+H2O

Explanation of Solution

The given half-reaction is as follows:

VO2+(aq)V3+(aq)

The reaction takes place in acidic medium. Balance oxygen by H2O and hydrogen by H+ . To balance, O in reactant side, multiply H2O by 1. The equation becomes.

VO2+(aq)+2H+V3+(aq)+H2O

Now, add electrons to balance charge. To balance charge on both sides, add 1 electron to the left. Hence, the balanced equation is-

VO2+(aq)+2H++eV3+(aq)+H2O

(d)

Interpretation Introduction

Interpretation: The given half-reaction which take place in acidic solution needs to be balanced.

Concept Introduction: By transfer of electrons, oxidation-reduction reactions are characterized. The transfer occurs to form ions. Oxidation reaction is caused by losing electrons and reduction caused by gaining electrons.

(d)

Expert Solution
Check Mark

Answer to Problem 25A

Balanced half-reaction is-

BiO+(aq)+2H++2eBi(s)+H2O

Explanation of Solution

The given half-reaction is as follows:

BiO+(aq)Bi(s)

The reaction takes place in acidic medium. Balance oxygen by H2O and hydrogen by H+ . To balance, O in reactant side, multiply H2O , by 1. The equation becomes.

BiO+(aq)+2H+Bi(s)+H2O

Now, add electrons to balance charge. To balance charge on both sides, add two electrons to the left. Hence, the balanced equation is-

BiO+(aq)+2H++2eBi(s)+H2O

Chapter 18 Solutions

World of Chemistry

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Balancing Redox Reactions in Acidic and Basic Conditions; Author: Professor Dave Explains;https://www.youtube.com/watch?v=N6ivvu6xlog;License: Standard YouTube License, CC-BY