Concept explainers
(a)
Interpretation: Themolecular structure and the bond angle for HCN needs to be determined.
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(a)

Answer to Problem 95E
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in HCN:
Hence the best Lewis structure for HCN must be:
With linear stricture the bond angle must be 180°.
(b)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(b)

Answer to Problem 95E
Bond angle will be less than 120° and approximately it will be 93°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
Bond angle will be less than 120° and approximately it will be 93°.
(c)
Interpretation: Interpret the molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(c)

Answer to Problem 95E
The bond angle will be 109°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 109° with tetrahedral geometry.
(d)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(d)

Answer to Problem 95E
The bond angle will be 109°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 109° with tetrahedral geometry.
(e)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(e)

Answer to Problem 95E
The bond angle will be 120°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 120° with trigonal planar geometry.
(f)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(f)

Answer to Problem 95E
The bond angle will be approximately 104°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 104° with bent geometry.
(g)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that existing on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(g)

Answer to Problem 95E
The bond angle will be 180°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 180° with linear geometry.
(h)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that existing on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(h)

Answer to Problem 95E
The bond angle will be 180°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 180° with linear geometry.
(i)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(i)

Answer to Problem 95E
The bond angle will be 180°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
The bond angle will be 180° with linear geometry.
(j)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(j)

Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
(k)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(k)

Answer to Problem 95E
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
For all the above structures, bond angle will be less than 120o.
(l)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(l)

Answer to Problem 95E
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
Total number of valence electrons in
Hence the best Lewis structure for
(m)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(m)

Answer to Problem 95E
For all the above, the bond angle is approximately 120°.
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
According to the given molecular formula, the structure of
Hence the best Lewis structure for
According to the given molecular formula, the structure of
Hence the best Lewis structure for
According to the given molecular formula, the structure of
Hence the best Lewis structure for
(n)
Interpretation: The molecular structure and the bond angle for
Concept Introduction:
Lewis dot structure is the representation which shows the bonding between atoms present in a molecule. It shows lone pairs and bond pairs that exist on each bonded atom. Lewis dot structure is also known as Lewis dot formula or electron dot structure.
The shape or geometry of molecule can be predicted with the help of hybridization and VSEPR theory. It can be checked with the below formula:
(n)

Answer to Problem 95E
Explanation of Solution
The bond formation between the atoms takes place due to the sharing of valence electrons of bonded atoms while the remaining electrons present in outer shell represented as lone pair of electrons. To draw the Lewis structure, calculate the total number of valence electrons in each atom and draw the structure in such a way that each atom gets its octet configuration.
According to the given molecular formula, the structure of
Hence the best Lewis structure for
According to the given molecular formula, the structure of
Hence the best Lewis structure for
According to the given molecular formula, the structure of
Hence the best Lewis structure for
Since all are linear ions therefore the bond angle must be 180°.
Want to see more full solutions like this?
Chapter 13 Solutions
WebAssign for Zumdahl's Chemical Principles, 8th Edition [Instant Access], Single-Term
- Part 1. Draw monomer units of the following products and draw their reaction mechanism 1) Bakelite like polymer Using: Resorcinol + NaOH + Formalin 2) Polyester fiber Using a) pthalic anhydride + anhydrous sodium acetate + ethylene glycol B)pthalic anhydride + anhydrous sodium acetate + glycerol 3) Temporary cross-linked polymer Using: 4% polyvinyl alcohol+ methyl red + 4% sodium boratearrow_forwardUsing the table of Reactants and Products provided provide the correct letter that corresponds with the Carboxylic acid that is formed in the reaction below. 6 M NaOH Acid-workup WRITE THE CORRECT LETTER ONLY DO NOT WRITE EXTRA WORDS OR PHRASES A) Pool of Reagents for Part B CI B) OH C) E) CI J) racemic F) K) OH N) OH P) G) OH D) HO H) L) M) HO Q) R) CI Aarrow_forwardIn the table below, the exact chemical structures for Methyl salicylate can be represented by the letter WRITE THE CORRECT LETTER ONLY DO NOT WRITE EXTRA WORDS OR PHRASES CI B) A) E) Cl racemic F) J) CI K) N) OH P) Pool of Reagents for Part B OH OH G) L) OH D) HO H) M) HO Q) R) CIarrow_forward
- Draw the stepwise mechanism for the reactionsarrow_forwardPart I. a) Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone b) Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone (3,3-dimethyl-2-butanone) and 2, 3-dimethyl - 1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forward3. The explosive decomposition of 2 mole of TNT (2,4,6-trinitrotoluene) is shown below: Assume the C(s) is soot-basically atomic carbon (although it isn't actually atomic carbon in real life). 2 CH3 H NO2 NO2 3N2 (g)+7CO (g) + 5H₂O (g) + 7C (s) H a. Use bond dissociation energies to calculate how much AU is for this reaction in kJ/mol.arrow_forward
- Part I. Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone and answer the ff: Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone and (3,3-dimethyl-2-butanone) 2,3-dimethyl-1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forwardShow the mechanism for these reactionsarrow_forwardDraw the stepwise mechanismarrow_forward
- Draw a structural formula of the principal product formed when benzonitrile is treated with each reagent. (a) H₂O (one equivalent), H₂SO₄, heat (b) H₂O (excess), H₂SO₄, heat (c) NaOH, H₂O, heat (d) LiAlH4, then H₂Oarrow_forwardDraw the stepwise mechanism for the reactionsarrow_forwardDraw stepwise mechanismarrow_forward
- Introductory Chemistry: A FoundationChemistryISBN:9781337399425Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage LearningPrinciples of Modern ChemistryChemistryISBN:9781305079113Author:David W. Oxtoby, H. Pat Gillis, Laurie J. ButlerPublisher:Cengage LearningGeneral, Organic, and Biological ChemistryChemistryISBN:9781285853918Author:H. Stephen StokerPublisher:Cengage Learning
- World of Chemistry, 3rd editionChemistryISBN:9781133109655Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCostePublisher:Brooks / Cole / Cengage LearningChemistry: An Atoms First ApproachChemistryISBN:9781305079243Author:Steven S. Zumdahl, Susan A. ZumdahlPublisher:Cengage LearningIntroductory Chemistry: An Active Learning Approa...ChemistryISBN:9781305079250Author:Mark S. Cracolice, Ed PetersPublisher:Cengage Learning





