EP INTRODUCTORY CHEM.-MOD.MASTERINGCHEM
EP INTRODUCTORY CHEM.-MOD.MASTERINGCHEM
8th Edition
ISBN: 9780134554433
Author: CORWIN
Publisher: PEARSON CO
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Chapter 16, Problem 45E
Interpretation Introduction

(a)

Interpretation:

The direction of the equilibrium with the increase in the concentration of [H+] is to be stated.

Concept introduction:

In a chemical reaction, when the rate of both forward and reverse reaction are equal. Then the chemical reaction is in equilibrium. In other words, their concentration does not vary with the time change. They are reversible in nature.

It is represented as between the chemical reaction. It is denoted as Keq. It is known as equilibrium constant. Mathematically, it is represented as the ratio of product concentration to reactant concentration raised to their stoichiometric coefficients as shown below.

Keq=[Productconcentration]a[Reactantconcentration]b

Also, the concentration of liquid and solid is not considered in the equilibrium constant expression.

Interpretation Introduction

(b)

Interpretation:

The direction of the equilibrium with the decrease in the concentration of [OH] is to be stated.

Concept introduction:

In a chemical reaction, when the rate of both forward and reverse reaction are equal. Then the chemical reaction is in equilibrium. In other words, their concentration does not vary with the time change. They are reversible in nature.

It is represented as between the chemical reaction. It is denoted as Keq. It is known as equilibrium constant. Mathematically, it is represented as the ratio of product concentration to reactant concentration raised to their stoichiometric coefficients as shown below.

Keq=[Productconcentration]a[Reactantconcentration]b

Also, the concentration of liquid and solid is not considered in the equilibrium constant expression.

Interpretation Introduction

(c)

Interpretation:

The direction of the equilibrium with the increase in the pH is to be stated.

Concept introduction:

In a chemical reaction, when the rate of both forward and reverse reaction are equal. Then the chemical reaction is in equilibrium. In other words, their concentration does not vary with the time change. They are reversible in nature.

It is represented as between the chemical reaction. It is denoted as Keq. It is known as equilibrium constant. Mathematically, it is represented as the ratio of product concentration to reactant concentration raised to their stoichiometric coefficients as shown below.

Keq=[Productconcentration]a[Reactantconcentration]b

Also, the concentration of liquid and solid is not considered in the equilibrium constant expression.

Interpretation Introduction

(d)

Interpretation:

The direction of the equilibrium with the decrease in the pH is to be stated.

Concept introduction:

In a chemical reaction, when the rate of both forward and reverse reaction are equal. Then the chemical reaction is in equilibrium. In other words, their concentration does not vary with the time change. They are reversible in nature.

It is represented as between the chemical reaction. It is denoted as Keq. It is known as equilibrium constant. Mathematically, it is represented as the ratio of product concentration to reactant concentration raised to their stoichiometric coefficients as shown below.

Keq=[Productconcentration]a[Reactantconcentration]b

Also, the concentration of liquid and solid is not considered in the equilibrium constant expression.

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Chapter 16 Solutions

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