Chemistry for Today: General  Organic  and Biochemistry
Chemistry for Today: General Organic and Biochemistry
9th Edition
ISBN: 9781337514576
Author: Seager
Publisher: Cengage
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Chapter 9, Problem 9.83E
Interpretation Introduction

(a)

Interpretation:

The dissociation reactions and Ka expressions for the given weak acids are to be stated.

Concept introduction:

The strength of acids and bases can be determined on the basis of their dissociation reactions and their dissociation constants. Those acids or bases which dissociate almost completely are strong acids or strong bases and those which dissociate to smaller extents are weak or moderately weak acids or weak bases.

Expert Solution
Check Mark

Answer to Problem 9.83E

The dissociation reaction for the given weak acid, HBrO is,

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

The dissociation constant for the given reaction is,

Ka=[H+][BrO][HBrO]

Conclusion

The dissociation reaction for the given weak acid, HBrO is,

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

The dissociation constant for the given reaction is,

Ka=[H+][BrO][HBrO]

Interpretation Introduction

(b)

Interpretation:

The dissociation reactions and Ka expressions for the given weak acids are to be stated.

Concept introduction:

The strength of acids and bases can be determined on the basis of their dissociation reactions and their dissociation constants. Those acids or bases which dissociate almost completely are strong acids or strong bases and those which dissociate to smaller extents are weak or moderately weak acids or weak bases.

Expert Solution
Check Mark

Answer to Problem 9.83E

The dissociation reaction for the given weak acid, H2SO3 (1st H only) is,

H2SO3(aq)H+(aq)+HSO3(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSO3][H2SO3]

Explanation of Solution

The dissociation reaction for the given weak acid, H2SO3 (1st H only) is,

H2SO3(aq)H+(aq)+HSO3(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSO3][H2SO3]

The [H+] and [HSO3] are the equilibrium concentrations of proton and conjugate base of the given acid respectively and [H2SO3] represents the equilibrium concentration of acid. For weak acids, the values of the concentrations of proton and conjugate base is smaller than that of value of the concentration of acid, such that the value of Ka, that is, the dissociation constant is smaller.

Conclusion

The dissociation reaction for the given weak acid, H2SO3 (1st H only) is,

H2SO3(aq)H+(aq)+HSO3(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSO3][H2SO3]

Interpretation Introduction

(c)

Interpretation:

The dissociation reactions and Ka expressions for the given weak acids are to be stated.

Concept introduction:

The strength of acids and bases can be determined on the basis of their dissociation reactions and their dissociation constants. Those acids or bases which dissociate almost completely are strong acids or strong bases and those which dissociate to smaller extents are weak or moderately weak acids or weak bases.

Expert Solution
Check Mark

Answer to Problem 9.83E

The dissociation reaction for the given weak acid, HSO3 is,

HSO3(aq)H+(aq)+SO32(aq)

The dissociation constant for the given reaction is,

Ka=[H+][SO32][HSO3]

Explanation of Solution

The dissociation reaction for the given weak acid, HSO3 is,

HSO3(aq)H+(aq)+SO32(aq)

The dissociation constant for the given reaction is,

Ka=[H+][SO32][HSO3]

The [H+] and [SO32] are the equilibrium concentrations of proton and conjugate base of the given acid respectively and [HSO3] represents the equilibrium concentration of acid. For weak acids, the values of the concentrations of proton and conjugate base is smaller than that of value of the concentration of acid, such that the value of Ka, that is, the dissociation constant is smaller.

Conclusion

The dissociation reaction for the given weak acid, HSO3 is,

HSO3(aq)H+(aq)+SO32(aq)

The dissociation constant for the given reaction is,

Ka=[H+][SO32][HSO3]

Interpretation Introduction

(d)

Interpretation:

The dissociation reactions and Ka expressions for the given weak acids are to be stated.

Concept introduction:

The strength of acids and bases can be determined on the basis of their dissociation reactions and their dissociation constants. Those acids or bases which dissociate almost completely are strong acids or strong bases and those which dissociate to smaller extents are weak or moderately weak acids or weak bases.

Expert Solution
Check Mark

Answer to Problem 9.83E

The dissociation reaction for the given weak acid, H2Se is,

H2Se(aq)H+(aq)+HSe(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSe][H2Se]

Explanation of Solution

The dissociation reaction for the given weak acid, H2Se is,

H2Se(aq)H+(aq)+HSe(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSe][H2Se]

The [H+] and [HSe] are the equilibrium concentrations of proton and conjugate base of the given acid respectively and [H2Se] represents the equilibrium concentration of acid. For weak acids, the values of the concentrations of proton and conjugate base is smaller than that of value of the concentration of acid, such that the value of Ka, that is, the dissociation constant is smaller.

Conclusion

The dissociation reaction for the given weak acid, H2Se is,

H2Se(aq)H+(aq)+HSe(aq)

The dissociation constant for the given reaction is,

Ka=[H+][HSe][H2Se]

Interpretation Introduction

(e)

Interpretation:

The dissociation reactions and Ka expressions for the given weak acids are to be stated.

Concept introduction:

The strength of acids and bases can be determined on the basis of their dissociation reactions and their dissociation constants. Those acids or bases which dissociate almost completely are strong acids or strong bases and those which dissociate to smaller extents are weak or moderately weak acids or weak bases.

Expert Solution
Check Mark

Answer to Problem 9.83E

The dissociation reaction for the given weak acid, H3AsO4 is,

H3AsO4(aq)H+(aq)+H2AsO4(aq)

The dissociation constant for the given reaction is,

Ka=[H+][H2AsO4][H3AsO4]

Explanation of Solution

The dissociation reaction for the given weak acid, H3AsO4 is,

H3AsO4(aq)H+(aq)+H2AsO4(aq)

The dissociation constant for the given reaction is,

Ka=[H+][H2AsO4][H3AsO4]

The [H+] and [H2AsO4] are the equilibrium concentrations of proton and conjugate base of the given acid respectively and [H3AsO4] represents the equilibrium concentration of acid. For weak acids, the values of the concentrations of proton and conjugate base is smaller than that of value of the concentration of acid, such that the value of Ka, that is, the dissociation constant is smaller.

Conclusion

The dissociation reaction for the given weak acid, H3AsO4 is,

H3AsO4(aq)H+(aq)+H2AsO4(aq)

The dissociation constant for the given reaction is,

Ka=[H+][H2AsO4][H3AsO4]

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Chapter 9 Solutions

Chemistry for Today: General Organic and Biochemistry

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