Chemistry: Atoms First V1
Chemistry: Atoms First V1
1st Edition
ISBN: 9781259383120
Author: Burdge
Publisher: McGraw Hill Custom
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Chapter 7, Problem 7.103QP

Predict the bond angles for the following molecules: (a) BeCl2, (b) BCl3, (c) CCl4, (d) CH3Cl, (e) Hg2Cl2 (arrangement of atoms: ClHgHgCl), (f) SnCl2, (g) H2O2, (h) SnH4.

(a)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of BeCl2 is 1800

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

BeCl2.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  1

BeCl2 is a triatomic molecule . Here the central atom beryllium atom does not have any lone pair of electrons whereas both terminal chlorine atoms have 3 pairs of electron. It is a AB2 type molecule. Since there are only two bonds, there is only one bond angle. Since there is no lone pair on the central atom, to minimize the repulsion, they form a linear geometry. So the bond angle between two atoms is 1800.

(b)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of BCl3 is 1200

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

BCl3.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  2

BCl3 contains four atoms. Here the central atom boron atom does not have any lone pair of electrons whereas the terminal chlorine atoms have 3 pairs of electron. It is a AB3 type molecule. Since there are only three bonds, there are  two bond angle. Since there is no lone pair on the central atom, to minimize the repulsion, they form a trigonal planar geometry. So the bond angle between two atoms is 1200.

(c)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of CCl4 is 109.50

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

CCl4.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  3

CCl4 contains five atoms. Here the central atom carbon atom does not have any lone pair of electrons whereas the terminal chlorine atoms have 3 pairs of electron. It is a AB4 type molecule. Since there is no lone pair on the central atom, to minimize the repulsion, they form a tetrahedral geometry. So the bond angle between two atoms is 109.50.

(d)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of CH3Cl is 109.50

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

CH3Cl.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  4

CH3Cl contains five atoms. Here the central atom carbon atom does not have any lone pair of electrons whereas the terminal chlorine atom has 3 pairs of electron. It is a AB4 type molecule. Since there is no lone pair on the central atom, to minimize the repulsion, they form a distorted tetrahedral geometry because of the size difference of terminal chlorine and hydrogen atoms. So the bond angle between two atoms is 109.50.

(e)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of Hg2Cl2 is 1800

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

Hg2Cl2.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  5

In the case of Hg2Cl2, both mercury atom does not have any lone pair of electrons whereas the terminal chlorine atoms have 3 pairs of electron. Both the mercury atom is of AB2 type molecule. . Since there is no lone pair on the central atom, to minimize the repulsion, they form a linear geometry. So the bond angle between two atoms is 1800.

(f)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of SnCl2 is 1200

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

SnCl2.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  6

In the case of SnCl2, the central atom tin atom have a lone pair of electron whereas the terminal chlorine atoms have 3 pairs of electron and is a AB2 with one lone pair of electron type molecule. There are only two bonds so there is only one bond angle. Since there is one lone pair on the central atom, to minimize the repulsion, they form a bent geometry. So the bond angle between two atoms is 1200.

(g)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of H2O2 is 109.50

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

H2O2.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  7

In the case of H2O2, both oxygen atom have any two lone pair of electrons and is a AB2 with two lone pair of electron type molecule.. Since there is two lone pair on each oxygen atom, to minimize the repulsion, they form a tetrahedral geometry. So the bond angle between two atoms is 109.50.

(h)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation: The bond angle of the given molecule should be found.

Concept Introduction:

  • Bond angle measured that made between two nearby bonds. The angles between two adjacent bonds are known as bond angle.
  • Using VSEPR theory and Lewis structure, the exact geometry of a molecule can be obtained.
  • In VSEPR, the geometry of the molecule is explained based on minimizing electrostatic repulsion between the molecules’ valence electrons around a central atom
  • Lewis structures is also known as Lewis dot structures which represents the bonding between atoms of a molecule and the lone pairs of electrons that may exist in the molecule.

Answer to Problem 7.103QP

The bond angle of SnH4 is 109.50

Explanation of Solution

To find: The bond angle of the given molecule

Given molecule is

SnH4.

Lewis structure of the given molecule is drawn below.

Chemistry: Atoms First V1, Chapter 7, Problem 7.103QP , additional homework tip  8

SnH4 contains five atoms. Here the central atom tin atom does not have any lone pair of electrons. It is a AB4 type molecule. Since there is no lone pair on the central atom, to minimize the repulsion, they form a tetrahedral geometry. So the bond angle between two atoms is 109.50.

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Chapter 7 Solutions

Chemistry: Atoms First V1

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