Chemical Principles
Chemical Principles
8th Edition
ISBN: 9781305581982
Author: Steven S. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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Chapter 13, Problem 95E

(a)

Interpretation Introduction

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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(a)

Expert Solution
Check Mark

Answer to Problem 95E

  sp = Linear and bond angle 180o.

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:

  (1×1)+(4×1)+(5×1)=10

Hence the best Lewis structure for HCN must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  1

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

  Hybridization of C = 2 + 0 = 2  = sp = Linear

With linear stricture the bond angle must be 180°.

(b)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for PH3 that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(b)

Expert Solution
Check Mark

Answer to Problem 95E

  sp= Pyramidal shape

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 PH3 :

  (3×1)+(5×1)=8

Hence the best Lewis structure for PH3 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  2

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 1  =  4 Hybridization = sp= Pyramidal shape

Bond angle will be less than 120° and approximately it will be 93°.

(c)

Interpretation Introduction

Interpretation: Interpret the molecular structure and the bond angle for CHCl3 that obey the octet rule.

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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(c)

Expert Solution
Check Mark

Answer to Problem 95E

  sp3= tetrahedral

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 CHCl3 :

  (1×4)+(3×1)+(7×1)=14

Hence the best Lewis structure for CHCl3 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  3

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

The bond angle will be 109° with tetrahedral geometry.

(d)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for NH4+ that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(d)

Expert Solution
Check Mark

Answer to Problem 95E

  sp3 = tetrahedral

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 NH4+ :

  (1×5)+(4×1)1=8

Hence the best Lewis structure for NH4+ must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  4

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4+ 0Hybridization = 4 = sp3 = tetrahedral

The bond angle will be 109° with tetrahedral geometry.

(e)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for H2CO that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(e)

Expert Solution
Check Mark

Answer to Problem 95E

  sp2= trigonal planar

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 H2CO :

  (2×1)+(1×4)+(1×6)=12

Hence the best Lewis structure for H2CO must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  5

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 0Hybridization =3= sp2= trigonal planar

The bond angle will be 120° with trigonal planar geometry.

(f)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for SeF2 that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(f)

Expert Solution
Check Mark

Answer to Problem 95E

   sp3 = bent structure

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 SeF2 :

  (1×6)+(2×7)=20

Hence the best Lewis structure for SeF2 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  6

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2+ 2Hybridization =4= sp3 = bent structure(as 2 lone pairs Se)

The bond angle will be 104° with bent geometry.

(g)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for CO2 that obey the octet rule 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 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(g)

Expert Solution
Check Mark

Answer to Problem 95E

  sp = linear

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 CO2 :

  (1×4)+(2×6)=16

Hence the best Lewis structure for CO2 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  7

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2+ 0Hybridization = sp = linear

The bond angle will be 180° with linear geometry.

(h)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for O2 that obey the octet rule 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 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(h)

Expert Solution
Check Mark

Answer to Problem 95E

  sp2= linear ( due to 2 lone pairs)

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 O2 :

  (2×6)=12

Hence the best Lewis structure for O2 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  8

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 1 + 2 Hybridization = 3=sp2= linear ( due to 2 lone pairs)

The bond angle will be 180° with linear geometry.

(i)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for HBr that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(i)

Expert Solution
Check Mark

Answer to Problem 95E

  sp= linear

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 HBr :

  (1×1)+(1×7)=8

Hence the best Lewis structure for HBr must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  9

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 1 + 3Hybridization = 4 = sp= linear

The bond angle will be 180° with linear geometry.

(j)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for POCl3, SO42-, XeO4, PO43-, ClO4- structureneeds 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(j)

Expert Solution
Check Mark

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 POCl3 :

  (1×5)+(1×6)+(3×7)=32

Hence the best Lewis structure for POCl3 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  10

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

Total number of valence electrons in SO42- :

  (1×6)+(4×6)+2=32

Hence the best Lewis structure for SO42- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  11

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

Total number of valence electrons in XeO4 :

  (1×8)+(4×6)=32

Hence the best Lewis structure for XeO4 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  12

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

Total number of valence electrons in PO43- :

  (1×5)+(4×6)+3=32

Hence the best Lewis structure for PO43- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  13

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

Total number of valence electrons in ClO4- :

  (1×7)+(4×6)+1=32

Hence the best Lewis structure for ClO4- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  14

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 4 + 0Hybridization =sp3= tetrahedral

(k)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for NF3, SO32-, PO33-, ClO3- that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(k)

Expert Solution
Check Mark

Answer to Problem 95E

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  15sp3=  pyramid ; 107°

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  16sp3=  pyramid ; <120°

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  17sp3=  pyramid ;120°

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  18sp3=  pyramid ;<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 NF3 :

  (1×5)+(3×7)=26

Hence the best Lewis structure for NF3 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  19

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 1Hybridization = sp3=  pyramid

Total number of valence electrons in SO32- :

  (1×6)+(3×6)+2=26

Hence the best Lewis structure for SO32- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  20

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 1Hybridization = sp3=  pyramid

Total number of valence electrons in PO33- :

  (1×5)+(3×6)+3=26

Hence the best Lewis structure for PO33- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  21

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 1Hybridization = sp3=  pyramid

Total number of valence electrons in ClO3- :

  (1×7)+(3×6)+1=26

Hence the best Lewis structure for ClO3- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  22

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 1Hybridization = sp3=  pyramid

For all the above structures, bond angle will be less than 120o.

(l)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for ClO2-, SCl2, PCl2- that obey the octet rule 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(l)

Expert Solution
Check Mark

Answer to Problem 95E

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  23sp3 =  bent  ; < 120°

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  24sp3 =  bent  ;120°

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  25sp3 =  bent  ;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 ClO2- :

  (1×7)+(2×6)+1=20

Hence the best Lewis structure for ClO2- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  26

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2 + 2Hybridization = 4 =  sp3 =  bent 

Total number of valence electrons in SCl2 :

  (1×6)+(2×7)=20

Hence the best Lewis structure for SCl2 must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  27

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2 + 2Hybridization = 4 =  sp3 =  bent 

Total number of valence electrons in PCl2- :

  (1×5)+(2×7)+1=20

Hence the best Lewis structure for PCl2- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  28

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2 + 2Hybridization = 4 =  sp3 =  bent 

(m)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for N2O4,NO2-,NO3- 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(m)

Expert Solution
Check Mark

Answer to Problem 95E

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  29sp2 =V shape

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  30sp2 =  trigonal planar

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  31sp2 =  trigonal planar

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 NO2- must be:

  (1×5)+(2×6)+1=18

Hence the best Lewis structure for NO2- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  32

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 2 + 1Hybridization = 3 =  sp2 =  V shaped

According to the given molecular formula, the structure of NO3- must be:

  (1×5)+(3×6)+1=24

Hence the best Lewis structure for NO3- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  33

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 0Hybridization = 3 =  sp2 =  trigonal planar

According to the given molecular formula, the structure of N2O4  must be:

  (2×5)+(4×6)=34

Hence the best Lewis structure for N2O4  must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  34

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.Hybridization = 3 + 0Hybridization = 3 =  sp2 =  trigonal planar

(n)

Interpretation Introduction

Interpretation: The molecular structure and the bond angle for OCN-,SCN-,N3- 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:

  Hybridization = Number of sigma bonds + Number of lone pairs on bonded atoms.

(n)

Expert Solution
Check Mark

Answer to Problem 95E

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  35

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  36

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  37

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 OCN-  must be:

  (1×6)+(1×4)+(1×5)+1=16

Hence the best Lewis structure for OCN-  must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  38

According to the given molecular formula, the structure of SCN- must be:

  (1×6)+(1×4)+(1×5)+1=16

Hence the best Lewis structure for SCN- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  39

According to the given molecular formula, the structure of N3- must be:

  (3×5)+1=16

Hence the best Lewis structure for N3- must be:

  Chemical Principles, Chapter 13, Problem 95E , additional homework tip  40

Since all are linear ions therefore the bond angle must be 180°.

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Chapter 13 Solutions

Chemical Principles

Ch. 13 - Prob. 11DQCh. 13 - Prob. 12DQCh. 13 - Prob. 13ECh. 13 - Prob. 14ECh. 13 - An alternative definition of electronegativity...Ch. 13 - Prob. 16ECh. 13 - Without using Fig. 13.3, predict the order of...Ch. 13 - Without using Fig. 13.3, predict which bond in...Ch. 13 - Prob. 19ECh. 13 - Prob. 20ECh. 13 - Indicate the bond polarity (show the partial...Ch. 13 - Prob. 22ECh. 13 - Prob. 23ECh. 13 - Prob. 24ECh. 13 - Prob. 25ECh. 13 - Prob. 26ECh. 13 - Prob. 27ECh. 13 - Prob. 28ECh. 13 - Prob. 29ECh. 13 - Prob. 30ECh. 13 - Prob. 31ECh. 13 - Give an example of an ionic compound where both...Ch. 13 - What noble gas has the same electron configuration...Ch. 13 - Which of the following ions have noble gas...Ch. 13 - Give three ions that are isoelectronic with...Ch. 13 - Prob. 36ECh. 13 - Predict the empirical formulas of the ionic...Ch. 13 - Which compound in each of the following pairs of...Ch. 13 - Use the following data to estimate Hf for...Ch. 13 - Use the following data to estimate Hf for...Ch. 13 - Consider the following:...Ch. 13 - In general, the higher the charge on the ions in...Ch. 13 - Consider the following energy changes: a....Ch. 13 - Prob. 44ECh. 13 - Prob. 45ECh. 13 - The lattice energies of FeCl3,FeCl2,andFe2O3 are...Ch. 13 - Prob. 47ECh. 13 - Prob. 48ECh. 13 - Prob. 49ECh. 13 - Prob. 50ECh. 13 - Prob. 51ECh. 13 - Prob. 52ECh. 13 - Prob. 53ECh. 13 - Prob. 54ECh. 13 - Prob. 55ECh. 13 - Prob. 56ECh. 13 - Prob. 57ECh. 13 - Prob. 58ECh. 13 - Prob. 59ECh. 13 - Prob. 60ECh. 13 - Prob. 61ECh. 13 - Prob. 62ECh. 13 - Prob. 63ECh. 13 - Prob. 64ECh. 13 - Prob. 65ECh. 13 - Prob. 66ECh. 13 - Prob. 67ECh. 13 - Prob. 68ECh. 13 - Prob. 69ECh. 13 - Prob. 70ECh. 13 - Prob. 71ECh. 13 - Prob. 72ECh. 13 - Prob. 73ECh. 13 - Prob. 74ECh. 13 - Prob. 75ECh. 13 - Prob. 76ECh. 13 - Prob. 77ECh. 13 - Prob. 78ECh. 13 - Prob. 79ECh. 13 - Prob. 80ECh. 13 - Prob. 81ECh. 13 - Prob. 82ECh. 13 - Prob. 83ECh. 13 - Prob. 84ECh. 13 - Prob. 85ECh. 13 - Prob. 86ECh. 13 - Prob. 87ECh. 13 - Prob. 88ECh. 13 - Prob. 89ECh. 13 - Prob. 90ECh. 13 - Prob. 91ECh. 13 - Prob. 92ECh. 13 - Prob. 93ECh. 13 - Prob. 94ECh. 13 - Prob. 95ECh. 13 - Predict the molecular structure and the bond...Ch. 13 - Prob. 97ECh. 13 - Two variations of the octahedral geometry are...Ch. 13 - Prob. 99ECh. 13 - Predict the molecular structure and the bond...Ch. 13 - Which of the molecules in Exercise 96 have net...Ch. 13 - Prob. 102ECh. 13 - Give two requirements that should be satisfied for...Ch. 13 - What do each of the following sets of...Ch. 13 - Prob. 105ECh. 13 - Consider the following Lewis structure, where E is...Ch. 13 - Consider the following Lewis structure, where E is...Ch. 13 - Prob. 108ECh. 13 - Prob. 109ECh. 13 - Which of the following molecules have net dipole...Ch. 13 - Prob. 111AECh. 13 - Prob. 112AECh. 13 - Prob. 113AECh. 13 - Prob. 114AECh. 13 - Prob. 115AECh. 13 - There are two possible structures of XeF2Cl2 ,...Ch. 13 - Prob. 117AECh. 13 - Prob. 118AECh. 13 - Prob. 119AECh. 13 - Prob. 120AECh. 13 - Prob. 121AECh. 13 - Prob. 122AECh. 13 - Prob. 123AECh. 13 - Prob. 124AECh. 13 - Prob. 125AECh. 13 - Prob. 126AECh. 13 - Prob. 127AECh. 13 - Prob. 128AECh. 13 - Prob. 129AECh. 13 - Prob. 130AECh. 13 - Prob. 131AECh. 13 - Prob. 132AECh. 13 - Prob. 133CPCh. 13 - Prob. 134CPCh. 13 - Given the following information: Heat of...Ch. 13 - Prob. 136CPCh. 13 - A promising new material with great potential as...Ch. 13 - Think of forming an ionic compound as three steps...Ch. 13 - Prob. 139CPCh. 13 - Prob. 140CPCh. 13 - Calculate the standard heat of formation of the...Ch. 13 - Prob. 142CPCh. 13 - Prob. 143MP
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