
(a)
Interpretation:
The balanced half-reaction in basic solution for the reaction,
Concept introduction:
The oxidizer is the species whose oxidation state falls during the course of reaction and reducer is the species whose oxidation number increases. Oxidized product is the oxidation product of the reducer and reduced product is the reduction product of the oxidizer.

Answer to Problem 24E
The balanced half-reaction following in basic solution is shown below.
Explanation of Solution
The given half reaction equation to be balanced is shown below.
The oxidation state of the central metal atom is calculated by knowing the standard oxidation states of few elements.
The oxidation state of Nickel in
Step-1: Write down the oxidation number of every element and for unknown take “n”.
Step-2: Multiply the oxidation state with the number of atoms of the element.
Step-3: Add the oxidation numbers and set them equal to the charge of the species.
Calculate the value of n by simplifying the equation as shown below.
The oxidation state of nickel in
The oxidation state of oxygen in
Step-1: Write down the oxidation number of every element and for unknown take “n”.
Step-2: Multiply the oxidation state with their number of atoms of an element.
Step-3: Add the oxidation numbers and set them equal to the charge of the species.
Calculate the value of n by simplifying the equation as shown below.
The oxidation state of nickel in
The oxidation number of nickel is increased therefore, it is an oxidation half-reaction.
The balancing of the half-reactions is done by the following the steps shown below.
Step-1: Identify and balance the element getting oxidized or reduced.
The nickel is getting oxidized and the number of atoms of that is balanced on both sides.
Step-2: Balance elements other than oxygen and hydrogen if any.
Step-3: Balance oxygen atoms by adding water on the appropriate side.
Oxygen atoms are already balanced on both sides.
Step-4: Balance the hydrogen atoms by adding
Add two
Step-5: Balance the charge by adding electrons to the appropriate side.
Two electrons are added to the right-hand side in order to balance the charge.
Step-6: Neutralize all
Two hydroxide ions are added to both sides of equation.
Step-7: Recheck the equation to be sure that it is perfectly balanced.
The equation is completely balanced and is shown below.
The balanced half-reaction is shown below.
(b)
Interpretation:
The balanced half-reaction in basic solution for the reaction,
Concept introduction:
The oxidizer is the species whose oxidation state falls during the course of reaction and reducer is the species whose oxidation number increases. Oxidized product is the oxidation product of the reducer and reduced product is the reduction product of the oxidizer.

Answer to Problem 24E
The balanced half-reaction following in basic solution is shown below.
Explanation of Solution
The given half-reaction equation to be balanced is shown below.
The oxidation state of the central metal atom is calculated by knowing the standard oxidation states of few elements.
The oxidation state of nitrogen in
Step-1: Write down the oxidation number of every element and for unknown take “n”.
Step-2: Multiply the oxidation state with the number of atoms of the element.
Step-3: Add the oxidation numbers and set them equal to the charge of the species.
Calculate the value of n by simplifying the equation as shown below.
The oxidation state of nitrogen in
The oxidation state of nitrogen in
Step-1: Write down the oxidation number of every element and for unknown take “n”.
Step-2: Multiply the oxidation state with their number of atoms of an element.
Step-3: Add the oxidation numbers and set them equal to the charge of the species.
Calculate the value of n by simplifying the equation as shown below.
Divide the equation by two on both sides and simplify as shown below.
The oxidation state of nitrogen in
The oxidation number of nitrogen is decreased therefore, it is an reduction half-reaction.
The balancing of the half-reactions is done by the following the steps shown below.
Step-1: Identify and balance the element getting oxidized or reduced.
The nitrogen is getting reduced and the number of atoms of that is not balanced on both sides. Balance them by multiplying
Step-2: Balance elements other than oxygen and hydrogen if any.
Step-3: Balance oxygen atoms by adding water on the appropriate side.
Oxygen atoms are already balanced on both sides.
Step-4: Balance the hydrogen atoms by adding
Add six
Step-5: Balance the charge by adding electrons to the appropriate side.
Four electrons are added to the left-hand side in order to balance the charge.
Step-6: Neutralize the all
Two hydroxide ions are added to both sides of equation.
Simplify above equation by making water of neutralized protons and balance out water molecules.
Step-7: Recheck the equation to be sure that it is perfectly balanced.
The equation is completely balanced and is shown below.
The balanced half-reaction is shown below.
Want to see more full solutions like this?
Chapter 17 Solutions
Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
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- Calculating the pH at equivalence of a titration 3/5 Izabella A chemist titrates 120.0 mL of a 0.7191M dimethylamine ((CH3)2NH) solution with 0.5501 M HBr solution at 25 °C. Calculate the pH at equivalence. The pk of dimethylamine is 3.27. Round your answer to 2 decimal places. Note for advanced students: you may assume the total volume of the solution equals the initial volume plus the volume of HBr solution added. pH = ☐ ✓ 18 Ar Boarrow_forwardAlcohols can be synthesized using an acid-catalyzed hydration of an alkene. An alkene is combined with aqueous acid (e.. sulfuric acid in water). The reaction mechanism typically involves a carbocation intermediate. > 3rd attempt 3343 10 8 Draw arrows to show the reaction between the alkene and hydronium ion. that 2nd attempt Feedback 1st attempt تعمال Ju See Periodic Table See Hint F D Ju See Periodic Table See Hintarrow_forwardDraw the simplified curved arrow mechanism for the reaction of acetone and CHgLi to give the major product. 4th attempt Π Draw the simplified curved arrow mechanism T 3rd attempt Feedback Ju See Periodic Table See Hint H -H H -I H F See Periodic Table See Hintarrow_forward
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