CHEMISTRY IN CONTEXT
CHEMISTRY IN CONTEXT
9th Edition
ISBN: 9781260364026
Author: VALUE EDITION
Publisher: MCG
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Chapter 5, Problem 21Q

Use the bond energies in Table 5.1 to calculate the energy changes associated with each of these reactions. Label each reaction as endothermic or exothermic.

  1. a. N2(g) + 3 H2(g) → 2 NH3(g)
  2. b. H2(g) + Cl2(g) → 2 HCl3(g)

Hint: Draw Lewis structures of the reactants and products to determine the number and kinds of bonds.

Chapter 5, Problem 21Q, Use the bond energies in Table 5.1 to calculate the energy changes associated with each of these

(a)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation:

The energy changes have to be calculated.

Concept introduction:

Endothermic reaction: When the heat energy was absorbed by the system from the surrounding is called endothermic reaction.

Exothermic reaction: When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.

Net energy change is calculated from the difference between the total energy absorbed in breaking bonds and total energy released in forming bonds.

Explanation of Solution

The given reaction is shown below,

N2(g) + 3H2(g)2NH3(g)

Bonds broken in the reactants are given below:

1 mol NN triple bonds = 946 kJ1 mol H–H single bonds = 436 kJ Therefore, 1 mol NN triple bonds = 1(946 kJ) = 946 kJ3 mol H–H single bonds = 3(436 kJ) = 1308 kJTotal energy absorbed in bond breaking = 2254 kJ

Bonds formed in the products are given below:

1 mol N–H single bonds = 391 kJ6 mol N–H single bonds = 6(391 kJ) = 2346 kJTherefore, Total energy released in forming bonds = 2346 kJ

Net energy change=totalenergyabsorbedinthebondbreaking-totalenergyreleased inthebondformingNet energy change is (+2254 kJ) + (-2346 kJ) = -92 kJ

The overall energy change is negative, therefore, the reaction is an exothermic reaction.

(b)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation:

The energy changes have to be calculated.

Concept introduction:

Endothermic reaction: When the heat energy was absorbed by the system from the surrounding is called endothermic reaction

Exothermic reaction: When heat energy or light energy was unconfined to the surrounding from the system is called exothermic reaction.

Net energy change is calculated from the difference between the total energy absorbed in breaking bonds and total energy released in forming bonds.

Explanation of Solution

The given reaction is shown below,

H2(g) + Cl2(g)2HCl(g)

Bonds broken in the reactants are given below:

1 mol Cl–Cl single bonds = 242 kJ1 mol H–H single bonds = 436 kJ Therefore, 1 mol Cl–Cl single bonds = 1(242 kJ) = 242 kJ1 mol H–H single bonds = 1(436 kJ) = 436 kJTotal energy absorbed in bond breaking = 678 kJ

Bonds formed in the products are given below:

1 mol H–Cl single bonds = 431 kJ2 mol H–Cl single bonds = 2(431 kJ) = 862 kJTherefore, Total energy released in forming bonds = 862 kJ

Net energy change=totalenergyabsorbedinthebondbreaking-totalenergyreleased inthebondformingNet energy change is (+678 kJ) + (-862 kJ) = -184 kJ

The overall energy change is negative, therefore, the reaction is an exothermic reaction.

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Chapter 5 Solutions

CHEMISTRY IN CONTEXT

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