General, Organic, & Biological Chemistry
General, Organic, & Biological Chemistry
3rd Edition
ISBN: 9780073511245
Author: Janice Gorzynski Smith Dr.
Publisher: McGraw-Hill Education
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Chapter 6, Problem 6.61P
Interpretation Introduction

(a)

Interpretation:

Whether the given reversible reaction is at equilibrium or not needs to be determined.

Concept introduction:

For a reversible reaction, equilibrium constant ( Keq ) is defined as the ratio of the product of the concentrations of the products to the product of concentrations of reactants at equilibrium. The coefficients of each chemical component in a balanced equation should be taken as the power of its concentration in the equation.

  aA+bBcC+dDequilibrium constant = Keq= [C]c× [D]d [A]a× [B]b

By comparing the magnitude of K of a reaction at a given instance with its equilibrium constant ( Keq ), the progress of a reaction can be determined.

  When K=Keq, reaction is at equilibriumWhen K>Keq, the backward reaction is in progress to achieve equilibriumWhen K<Keq, the forward reaction is in progress to achieve equilibrium

Expert Solution
Check Mark

Answer to Problem 6.61P

The system is not at equilibrium.

Explanation of Solution

For the given reaction,

  A+BC+Dequilibrium constant = Keq=[C]×[D][A]×[B]

Let's calculate the K of the above reaction instance:

  A+BC+DNo of A atoms in the system: 5No of B atoms in the system: 6No of C atoms in the system: 1No of D atoms in the system: 2

Therefore,

  K = [C]×[D][A]×[B]=1×25×6=0.067

K of the reaction at the given instance is smaller than Keq value ( K<Keq ), thus the reaction is not at equilibrium.

Interpretation Introduction

(a)

Interpretation:

If the reaction is not in the equilibrium, the direction of reaction needs to be explained.

Concept introduction:

For a reversible reaction, equilibrium constant ( Keq ) is defined as the ratio of the product of the concentrations of the products to the product of concentrations of reactants at equilibrium. The coefficients of each chemical component in a balanced equation should be taken as the power of its concentration in the equation.

  aA+bBcC+dDequilibrium constant = Keq= [C]c× [D]d [A]a× [B]b

By comparing the magnitude of K of a reaction at a given instance with its equilibrium constant ( Keq ), the progress of a reaction can be determined.

  When K=Keq, reaction is at equilibriumWhen K>Keq, the backward reaction is in progress to achieve equilibriumWhen K<Keq, the forward reaction is in progress to achieve equilibrium

Expert Solution
Check Mark

Answer to Problem 6.61P

The reaction should proceed to the right (forward reaction) to achieve the equilibrium

Explanation of Solution

For the given reaction,

  A+BC+Dequilibrium constant = Keq=[C]×[D][A]×[B]

Here,

  K = [C]×[D][A]×[B]=1×25×6=0.067

Thus, ( K<Keq ), the forward reaction is in progress to achieve the equilibrium. In other words, more and more products should be formed in order to reach K=Keq=4

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Chapter 6 Solutions

General, Organic, & Biological Chemistry

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