
(a)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(a)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is oxidation state of
Case 3: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
The oxidation state of
(b)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(b)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
(c)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(c)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
The oxidation state of
(d)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(d)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
(e)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(e)

Answer to Problem 84E
Answer:
Explanation of Solution
Explanation:
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
Case 3: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
The oxidation state of
(f)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(f)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
The oxidation states of
(g)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(g)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
Case 3: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
The oxidation state of
(h)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(h)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
The oxidation state of
(i)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(i)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
Case 3: To find the oxidation state of
Here x is oxidation state of
The oxidation state of
The oxidation state of
(j)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(j)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
The oxidation state of
(k)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(k)

Answer to Problem 84E
Explanation of Solution
Ammonium ion has a
Therefore, the oxidation state of cerium must be
Case 1: To find the oxidation state of
Here x is the oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
Case 3: To find the oxidation state of
Here x is the oxidation state of
Case 4: To find the oxidation state of
Here x is the oxidation state of
Case 5: To find the oxidation state of
Here x is the oxidation state of
The oxidation state of
(l)
Interpretation: The oxidation state of given atom in the given molecule has to be calculated.
Concept introduction: The oxidation state is the distinction between the numbers of electrons connected by an atom in a composite as compared with the number of electrons in an atom of the element. The oxidation state is also called oxidation number
Rule 1: The oxidation numeral of an element in its open (uncombined) state is zero.
Rule 2: The oxidation numeral of a monatomic (one-atom) ion is the similar as the indict on the ion.
(l)

Answer to Problem 84E
Explanation of Solution
Case 1: To find the oxidation state of
Here x is oxidation state of
Case 2: To find the oxidation state of
Here x is the oxidation state of
The oxidation state of
Want to see more full solutions like this?
Chapter 6 Solutions
EBK CHEMISTRY: AN ATOMS FIRST APPROACH
- Question 4 Determine the rate order and rate constant for sucrose hydrolysis. Time (hours) [C6H12O6] 0 0.501 0.500 0.451 1.00 0.404 1.50 0.363 3.00 0.267 First-order, k = 0.210 hour 1 First-order, k = 0.0912 hour 1 O Second-order, k = 0.590 M1 hour 1 O Zero-order, k = 0.0770 M/hour O Zero-order, k = 0.4896 M/hour O Second-order, k = 1.93 M-1-hour 1 10 ptsarrow_forwardDetermine the rate order and rate constant for sucrose hydrolysis. Time (hours) [C6H12O6] 0 0.501 0.500 0.451 1.00 0.404 1.50 0.363 3.00 0.267arrow_forwardDraw the products of the reaction shown below. Use wedge and dash bonds to indicate stereochemistry. Ignore inorganic byproducts. OSO4 (cat) (CH3)3COOH Select to Draw ઘarrow_forward
- Calculate the reaction rate for selenious acid, H2SeO3, if 0.1150 M I-1 decreases to 0.0770 M in 12.0 minutes. H2SeO3(aq) + 6I-1(aq) + 4H+1(aq) ⟶ Se(s) + 2I3-1(aq) + 3H2O(l)arrow_forwardProblem 5-31 Which of the following objects are chiral? (a) A basketball (d) A golf club (b) A fork (c) A wine glass (e) A spiral staircase (f) A snowflake Problem 5-32 Which of the following compounds are chiral? Draw them, and label the chirality centers. (a) 2,4-Dimethylheptane (b) 5-Ethyl-3,3-dimethylheptane (c) cis-1,4-Dichlorocyclohexane Problem 5-33 Draw chiral molecules that meet the following descriptions: (a) A chloroalkane, C5H11Cl (c) An alkene, C6H12 (b) An alcohol, C6H140 (d) An alkane, C8H18 Problem 5-36 Erythronolide B is the biological precursor of erythromycin, a broad-spectrum antibiotic. How H3C CH3 many chirality centers does erythronolide B have? OH Identify them. H3C -CH3 OH Erythronolide B H3C. H3C. OH OH CH3arrow_forwardPLEASE HELP! URGENT! PLEASE RESPOND!arrow_forward
- 2. Propose a mechanism for this reaction. ہلی سے ملی N H (excess)arrow_forwardSteps and explanationn please.arrow_forwardProblem 5-48 Assign R or S configurations to the chirality centers in ascorbic acid (vitamin C). OH H OH HO CH2OH Ascorbic acid O H Problem 5-49 Assign R or S stereochemistry to the chirality centers in the following Newman projections: H Cl H CH3 H3C. OH H3C (a) H H H3C (b) CH3 H Problem 5-52 Draw the meso form of each of the following molecules, and indicate the plane of symmetry in each: OH OH (a) CH3CHCH2CH2CHCH3 CH3 H3C. -OH (c) H3C CH3 (b) Problem 5-66 Assign R or S configurations to the chiral centers in cephalexin, trade-named Keflex, the most widely prescribed antibiotic in the United States. H2N H IHH S Cephalexin N. CH3 CO₂Harrow_forward
- Introductory Chemistry: A FoundationChemistryISBN:9781337399425Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage LearningGeneral Chemistry - Standalone book (MindTap Cour...ChemistryISBN:9781305580343Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; DarrellPublisher:Cengage LearningChemistry by OpenStax (2015-05-04)ChemistryISBN:9781938168390Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark BlaserPublisher:OpenStax
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry & 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





