
Balance the following oxidation–reduction reactions that occur in acidic solution using the half–reaction method.
a.
b.
c.
d.
(a)

Interpretation:
The four oxidation-reduction reactions are given. The balancing of all the reactions in acidic media using the half-reaction method is to be done.
Concept introduction:
The reaction in which both oxidation and reduction reaction occur simultaneously is called a redox reaction. According to the law of conservation of mass, the mass of all the species in a reaction must be balanced. Therefore, balancing is necessary to conserve the mass and even the charge must be balanced to maintain the overall charge of the reaction.
To determine: The steps involved in the balancing of the given equation (a).
Answer to Problem 29E
The balanced equations are as follows,
Explanation of Solution
The balanced equation is defined as follows,
The reduction half cell reaction is,
The change in the oxidation number of chlorine is from
The oxidation half reaction is,
The change in oxidation number of iodine is from
As the atoms other than hydrogen and oxygen are already balanced, so directly balance the oxygen atom in the reduction half reaction by adding water to right hand side,
Balance the hydrogen atoms in the reduction half reaction by adding
Balance the charge by adding appropriate number of electrons to the left hand side,
Balance the oxidation half reaction as,
Balance the charge by adding electrons at the appropriate side,
Add the oxidation and reduction half reaction to get the final equation,
Cancel similar terms on both the sides. The final equation is,
(b)

Interpretation:
The four oxidation-reduction reactions are given. The balancing of all the reactions in acidic media using the half-reaction method is to be done.
Concept introduction:
The reaction in which both oxidation and reduction reaction occur simultaneously is called a redox reaction. According to the law of conservation of mass, the mass of all the species in a reaction must be balanced. Therefore, balancing is necessary to conserve the mass and even the charge must be balanced to maintain the overall charge of the reaction.
To determine: The steps involved in the balancing of the given equation (b).
Answer to Problem 29E
The balanced equations are as follows,
Explanation of Solution
The balanced equation is defined as follows,
The reduction half cell reaction is,
The change in the oxidation number of nitrogen is from
The oxidation half reaction is,
The change in oxidation number of arsenic is from
Elements except hydrogen and oxygen are already balanced, therefore, directly balance the oxygen in the reduction half reaction by adding water to right hand side,
Balance the hydrogen atoms in the reduction half reaction by adding
Balance the charge by adding appropriate number of electrons to the left hand side,
Balance the oxidation half reaction as,
Balance the oxygen in the reduction half reaction by adding water to left hand side,
Balance the hydrogen atoms in the reduction half reaction by adding
Balance the charge by adding electrons at the appropriate side,
Multiply equation (3) by
Cancel similar terms on both the sides to get the final equation as,
(c)

Interpretation:
The four oxidation-reduction reactions are given. The balancing of all the reactions in acidic media using the half-reaction method is to be done.
Concept introduction:
The reaction in which both oxidation and reduction reaction occur simultaneously is called a redox reaction. According to the law of conservation of mass, the mass of all the species in a reaction must be balanced. Therefore, balancing is necessary to conserve the mass and even the charge must be balanced to maintain the overall charge of the reaction.
To determine: The steps involved in the balancing of the given equation (c).
Answer to Problem 29E
The balanced equations are as follows,
Explanation of Solution
The balanced equation is defined as follows,
The reduction half cell reaction is,
The change in the oxidation number of manganese is from
The oxidation half reaction is,
The change in oxidation number of bromine is from
All the elements except hydrogen and oxygen are already balanced so directly balance the oxygen in the reduction half reaction by adding water to right hand side,
Balance the hydrogen atoms in the reduction half reaction by adding
Balance the charge by adding appropriate number of electrons to the left hand side,
Balance the oxidation half reaction as,
As there are no atoms of hydrogen or oxygen, so directly balance the charge by adding electrons at the appropriate side,
Multiply equation
Cancel similar terms on both the sides. The final equation is,
(d)

Interpretation:
The four oxidation-reduction reactions are given. The balancing of all the reactions in acidic media using the half-reaction method is to be done.
Concept introduction:
The reaction in which both oxidation and reduction reaction occur simultaneously is called a redox reaction. According to the law of conservation of mass, the mass of all the species in a reaction must be balanced. Therefore, balancing is necessary to conserve the mass and even the charge must be balanced to maintain the overall charge of the reaction.
To determine: The steps involved in the balancing of the given equation (d).
Answer to Problem 29E
The balanced equations are as follows,
Explanation of Solution
The balanced equation is defined as follows,
The reduction half cell reaction is,
The change in the oxidation number of chromium is from
The oxidation half reaction is,
The change in oxidation number of carbon is from
Balance all the atoms except hydrogen and oxygen in the reduction half cell,
Balance the oxygen in the reduction half reaction by adding water to right hand side,
Balance the hydrogen atoms in the reduction half reaction by adding
Balance the charge by adding appropriate number of electrons to the left hand side,
As all the atoms except hydrogen are already balanced so directly balance the oxidation half reaction as,
Balance the charge by adding electrons at the appropriate side,
Multiply equation (8) by
Cancel similar terms on both the sides. The final equation is,
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