CHEMISTRY:MOLECULAR NATURE...-ALEKS 360
CHEMISTRY:MOLECULAR NATURE...-ALEKS 360
8th Edition
ISBN: 9781259916083
Author: SILBERBERG
Publisher: MCG
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Chapter 17, Problem 17.59P
Interpretation Introduction

Interpretation:

Equilibrium position and equilibrium constant of a reaction has to be compared. Also, the effect of change in reactant concentration on equilibrium position and equilibrium constant has to be discussed.

Concept Introduction:

At equilibrium rate of forward reaction is equal to the rate of backward reaction. So concentration of reactant and products are constant at equilibrium.

Consider a reaction, a moles of A gives b moles of B as follows,

a A  b B

At equilibrium, rate of formation of B will be equal to rate of decomposition of A. So, rate can be written as follows,

kfwd[A]eqa = krev[B]eqb

Where,

    kfwd = rate of forward reactionkrev  = rate of backward reaction[A]eq= equilibrium concentration of A[B]eq = equilibrium concentration of B   a    = stoichiometric co-efficient of A   b    = stoichiometric co-efficient of A

On rearranging the ratio of rate constant becomes equal to ratio of concentration which is equal to a constant called equilibrium constant K.

Equilibrium constant K can be written as follows,

K = kfwdkrev = [B]eqb[A]eqa

So equilibrium constant K can be defined as the ratio of equilibrium concentration of product to reactant at a particular temperature.

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