
Concept explainers
(a)
Interpretation:
The given
Concept Introduction:
The oxidation-reduction reaction is also known as a redox reaction. In this reaction, one reactant is oxidized and other is reduced. In balancing an oxidation-reduction reaction, they must be first divided into two half reactions: one is oxidation reaction and other is reduction reaction.
The balancing of redox reaction is complicated as compared to simple balancing. It is necessary to determine the half reactions of reactants undergoing oxidation and reduction. On adding the two half-reactions, net total equation can be obtained. This method of
The following rules must be followed in balancing redox reaction by half equation method:
- Initially, redox reaction is separated into two half equations; oxidation and reduction.
- Atoms other than hydrogen and oxygen are balanced first in the unbalanced half equations.
- Oxygen atoms are balanced by addition of water on either side of the reaction.
- Hydrogen ion/s is added to balance the hydrogen atom.
- Electrons are added to balance the charge.
- Half reactions are added to get the net total equation.
- The further addition of hydroxide ion takes place on both side of the reaction, if the solution is basic in nature to neutralise the hydrogen ion present in the solution.

Answer to Problem 101AP
Explanation of Solution
The given reaction is as follows:
The above reaction can be separated into two half reactions as follows:
And,
In reaction (1), give coefficient 2 to
Add two electrons to the right to balance the charge thus,
In reaction (2), add 4 water molecules to right side of the reaction to balance the number of oxygen atom,
Now, add 8 hydrogen ions to the left, to balance the hydrogen atoms.
Last step is to balance the charge, the net charge on left side is + 7 and that on right side is + 2 thus, add 5 electrons to the left to balance the charge,
To get the overall reaction, add reaction (3) and (4)
Thus, the balance oxidation-reduction reaction is as follows:
(b)
Interpretation:
The given oxidation-reduction reaction should be balanced
Concept Introduction:
The oxidation-reduction reaction is also known as a redox reaction. In this reaction, one reactant is oxidized and other is reduced. In balancing an oxidation-reduction reaction, they must be first divided into two half reactions: one is oxidation reaction and other is reduction reaction.
The balancing of redox reaction is complicated as compared to simple balancing. It is necessary to determine the half reactions of reactants undergoing oxidation and reduction. On adding the two half-reactions, net total equation can be obtained. This method of balancing redox reaction is known as half equation method.
The following rules must be followed in balancing redox reaction by half equation method:
- Initially, redox reaction is separated into two half equations; oxidation and reduction.
- Atoms other than hydrogen and oxygen are balanced first in the unbalanced half equations.
- Oxygen atoms are balanced by addition of water on either side of the reaction.
- Hydrogen ion/s is added to balance the hydrogen atom.
- Electrons are added to balance the charge.
- Half reactions are added to get the net total equation.
- The further addition of hydroxide ion takes place on both side of the reaction, if the solution is basic in nature to neutralise the hydrogen ion present in the solution.

Answer to Problem 101AP
Explanation of Solution
The given reaction is as follows:
The above reaction can be separated into two half reactions as follows:
And,
In reaction (1), give coefficient 2 to
Add 4 electrons to the left to balance the charge thus,
In reaction (2), give coefficient 2 to
Add 7 water molecules to left side of the reaction to balance the number of oxygen atom,
Balance the hydrogen atoms to add 14 hydrogen ions to the right:
Last step is to balance the charge, the net charge on left side is + 6 and that on right side is + 12 thus, add 6 electrons to the right to balance the charge,
To get the overall reaction, add reaction (3) and (4)
Thus, the balance oxidation-reduction reaction is as follows:
(c)
Interpretation:
The given oxidation-reduction reaction should be balanced
Concept Introduction:
The oxidation-reduction reaction is also known as a redox reaction. In this reaction, one reactant is oxidized and other is reduced. In balancing an oxidation-reduction reaction, they must be first divided into two half reactions: one is oxidation reaction and other is reduction reaction.
The balancing of redox reaction is complicated as compared to simple balancing. It is necessary to determine the half reactions of reactants undergoing oxidation and reduction. On adding the two half-reactions, net total equation can be obtained. This method of balancing redox reaction is known as half equation method.
The following rules must be followed in balancing redox reaction by half equation method:
- Initially, redox reaction is separated into two half equations; oxidation and reduction.
- Atoms other than hydrogen and oxygen are balanced first in the unbalanced half equations.
- Oxygen atoms are balanced by addition of water on either side of the reaction.
- Hydrogen ion/s is added to balance the hydrogen atom.
- Electrons are added to balance the charge.
- Half reactions are added to get the net total equation.
- The further addition of hydroxide ion takes place on both side of the reaction, if the solution is basic in nature to neutralise the hydrogen ion present in the solution.

Answer to Problem 101AP
Explanation of Solution
The given reaction is as follows:
The above reaction can be separated into two half reactions as follows:
And,
In reaction (1), add 3 water molecules on right side to balance the number of oxygen atoms,
To balance the hydrogen atom, add 6 hydrogen ions to the left thus,
Now, balance the charge by adding 2 electrons to the left
In reaction (2), add 4 water molecules on left to balance the oxygen atoms.
Hydrogen atoms can be balanced by adding 8 hydrogen ions on the right:
Last step is to balance the charge, add 5 electrons to the right:
To get the overall reaction, add reaction (3) and (4)
Thus, the balance oxidation-reduction reaction is as follows:
Want to see more full solutions like this?
Chapter 18 Solutions
Bundle: Introductory Chemistry: A Foundation, 8th + OWLv2 6-Months Printed Access Card
- Consider two elements, X and Z. Both have cubic-based unit cells with the same edge lengths. X has a bcc unit cell while Z has a fcc unit cell. Which of the following statements is TRUE? Group of answer choices Z has a larger density than X X has more particles in its unit cell than Z does X has a larger density than Z Z has a larger unit cell volume than Xarrow_forwardHow many particles does a face-centered cubic (fcc) unit cell contain? Group of answer choices 2 14 8 4arrow_forwardV Highlight all of the carbon atoms that have at least one beta (B) hydrogen, using red for one ẞ hydrogen, blue for two ẞ hydrogens, and green for three ẞ hydrogens. If none of the carbon atoms have ẞ hydrogens, check the box underneath the molecule. ED X None of the carbon atoms have ẞ hydrogens. Explanation esc 2 Check * F1 F2 1 2 80 # 3 Q W tab A caps lock shift fn control F3 N S option O 694 $ F4 F5 F6 005 % E R D F LL 6 olo 18 Ar B © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility A DII F7 F8 87 & * 8 T Y U G H 4 F9 F10 ( 9 0 E F11 F12 உ J K L + || X C V B N M H H command option commandarrow_forward
- Consider the reaction below and answer the following questions. Part 1 of 4 Br NaOCH2CH3 Identify the mechanisms involved. Check all that apply. SN 1 SN 2 E1 E2 None of the above Part 2 of 4 Skip Part Check esc F1 F2 lock 1 2 Q W A S #3 80 F3 F4 F5 F6 Save For © 2025 McGraw Hill LLC. All Rights Reserved. Terms ˇˇ % & 4 5 6 89 7 IK A 分 བ F7 F8 F9 F * E R T Y U 8 9 D F G H K V B N M 0 Oarrow_forwardWhat kind of holes are not generated when solid-state particles adopt a close packing pattern? Group of answer choices tetrahedral cubic octahedral None of the other choices are correctarrow_forwardFor the reaction below: 1. Draw all reasonable elimination products to the right of the arrow. 2. In the box below the reaction, redraw any product you expect to be a major product. 田 Major Product: Check ☐ + I Na OH esc F1 F2 2 1 @ 2 Q W tab A caps lock S #3 80 F3 69 4 σ F4 % 95 S Click and drag to sta drawing a structure mm Save For Later 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use GO DII F5 F6 F7 F8 F9 F10 6 CO 89 & 7 LU E R T Y U 8* 9 0 D F G H J K L Z X C V B N M 36arrow_forward
- Problem 7 of 10 Draw the major product of this reaction. Ignore inorganic byproducts. S' S 1. BuLi 2. ethylene oxide (C2H4O) Select to Draw a Submitarrow_forwardFeedback (4/10) 30% Retry Curved arrows are used to illustrate the flow of electrons. Use the reaction conditions provided and follow the arrows to draw the reactant and missing intermediates involved in this reaction. Include all lone pairs and charges as appropriate. Ignore inorganic byproducts. Incorrect, 6 attempts remaining :0: Draw the Reactant H H3CO H- HIO: Ö-CH3 CH3OH2* protonation H. a H (+) H Ο CH3OH2 O: H3C protonation CH3OH deprotonation > CH3OH nucleophilic addition H. HO 0:0 Draw Intermediate a Xarrow_forwardCan I please get the blank spaces answered/answers?arrow_forward
- 1. Identify the following alkenes as E or Z NH₂ Br 2. Draw the structures based on the IUPAC names (3R,4R)-3-bromo-4-fluoro- 1-hexene (Z)-4-bromo-2-iodo-3-ethyl- 3-heptene تر 3. For the following, predict all possible elimination product(s) and circle the major product. HO H₂SO4 Heat 80 F4 OH H2SO4 Heat 어요 F5 F6 1 A DII 4 F7 F8 F9 % & 5 6 7 * ∞ 8 BAB 3 E R T Y U 9 F D G H J K O A F11 F10arrow_forwardDraw the major product of this reaction. Ignore inorganic byproducts. ○ O 1. H₂O, pyridine 2. neutralizing work-up a N W X 人 Parrow_forward✓ Check the box under each molecule that has a total of five ẞ hydrogens. If none of the molecules fit this description, check the box underneath the table. tab OH CI 0 Br xx Br None of these molecules have a total of five ẞ hydrogens. esc Explanation Check caps lock shift 1 fn control 02 F2 W Q A N #3 S 80 F3 E $ t 01 205 % 5 F5 & 7 © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center | Accessibility FT * 8 R T Y U כ F6 9 FIG F11 F D G H J K L C X V B < N M H option command P H + F12 commandarrow_forward
- Chemistry & Chemical ReactivityChemistryISBN:9781337399074Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningChemistry & Chemical ReactivityChemistryISBN:9781133949640Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage Learning
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistry: An Atoms First ApproachChemistryISBN:9781305079243Author:Steven S. Zumdahl, Susan A. ZumdahlPublisher:Cengage Learning





