Chemistry for Today: General, Organic, and Biochemistry
Chemistry for Today: General, Organic, and Biochemistry
9th Edition
ISBN: 9781305960060
Author: Spencer L. Seager, Michael R. Slabaugh, Maren S. Hansen
Publisher: Cengage Learning
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Chapter 9, Problem 9.1E

Write the dissociation equations for the following that emphasize their behavior as Arrhenius acids:

a. HI

b. HBrO

c. HCN

d. HClO 2

Expert Solution
Check Mark
Interpretation Introduction

(a)

Interpretation:

The dissociation equation for the given species emphasizing on its behavior as Arrhenius acid is to be stated.

Concept introduction:

According to Arrhenius theory, a substance that dissociates to give hydrogen ions (H+) in the solution is known as an acid. On the other hand, a substance that dissociates to give hydroxide ions (OH) in the solution is known as base.

Answer to Problem 9.1E

The dissociation equation for the given species, HI, emphasizing on its behavior as Arrhenius acid is given below as,

HI(aq)H+(aq)+Cl(aq).

Explanation of Solution

The given species is HI. On dissolving HI in water, it dissociates into its ions. The equation for its dissociation in the solution is given as follows.

HI(aq)H+(aq)+Cl(aq)

In the above reaction, HI dissociates to give hydrogen ions (H+) in the solution. Therefore, according to Arrhenius theory, it is an acid.

Conclusion

The dissociation equation for the given species, HI, emphasizing on its behavior as Arrhenius acid is given below as,

HI(aq)H+(aq)+Cl(aq).

Expert Solution
Check Mark
Interpretation Introduction

(b)

Interpretation:

The dissociation equation for the given species emphasizing on its behavior as Arrhenius acid is to be stated.

Concept introduction:

According to Arrhenius theory, a substance that dissociates to give hydrogen ions (H+) in the solution is known as an acid. On the other hand, a substance that dissociates to give hydroxide ions (OH) in the solution is known as base.

Answer to Problem 9.1E

The dissociation equation for the given species, HBrO, emphasizing on its behavior as Arrhenius acid is given below as,

HBrO(aq)H+(aq)+BrO(aq).

Explanation of Solution

The given species is HBrO. On dissolving HBrO in water, it dissociates into its ions. The equation for its dissociation in the solution is given as follows.

HBrO(aq)H+(aq)+BrO(aq)

In the above reaction, HBrO dissociates to give hydrogen ions (H+) in the solution. Therefore, according to Arrhenius theory, it is an acid.

Conclusion

The dissociation equation for the given species, HBrO, emphasizing on its behavior as Arrhenius acid is given below as,

HBrO(aq)H+(aq)+BrO(aq).

Expert Solution
Check Mark
Interpretation Introduction

(c)

Interpretation:

The dissociation equation for the given species emphasizing on its behavior as Arrhenius acid is to be stated.

Concept introduction:

According to Arrhenius theory, a substance that dissociates to give hydrogen ions (H+) in the solution is known as an acid. On the other hand, a substance that dissociates to give hydroxide ions (OH) in the solution is known as base.

Answer to Problem 9.1E

The dissociation equation for the given species, HCN, emphasizing on its behavior as Arrhenius acid is given below as,

HCN(aq)H+(aq)+CN(aq).

Explanation of Solution

The given species is HCN. On dissolving HCN in water, it dissociates into its ions. The equation for its dissociation in the solution is given as follows.

HCN(aq)H+(aq)+CN(aq)

In the above reaction, HCN dissociates to give hydrogen ions (H+) in the solution. Therefore, according to Arrhenius theory, it is an acid.

Conclusion

The dissociation equation for the given species, HCN, emphasizing on its behavior as Arrhenius acid is given below as,

HCN(aq)H+(aq)+CN(aq).

Expert Solution
Check Mark
Interpretation Introduction

(d)

Interpretation:

The dissociation equation for the given species emphasizing on its behavior as Arrhenius acid is to be stated.

Concept introduction:

According to Arrhenius theory, a substance that dissociates to give hydrogen ions (H+) in the solution is known as an acid. On the other hand, a substance that dissociates to give hydroxide ions (OH) in the solution is known as base.

Answer to Problem 9.1E

The dissociation equation for the given species, HClO2, emphasizing on its behavior as Arrhenius acid is given below as,

HClO2(aq)H+(aq)+ClO2(aq).

Explanation of Solution

The given species is HClO2. On dissolving HClO2 in water, it dissociates into its ions. The equation for its dissociation in the solution is given as follows.

HClO2(aq)H+(aq)+ClO2(aq)

In the above reaction, HClO2 dissociates to give hydrogen ions (H+) in the solution. Therefore, according to Arrhenius theory, it is an acid.

Conclusion

The dissociation equation for the given species, HClO2, emphasizing on its behavior as Arrhenius acid is given below as,

HClO2(aq)H+(aq)+ClO2(aq).

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Chapter 9 Solutions

Chemistry for Today: General, Organic, and Biochemistry

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