Chemistry: Atoms First
Chemistry: Atoms First
2nd Edition
ISBN: 9780073511184
Author: Julia Burdge, Jason Overby Professor
Publisher: McGraw-Hill Education
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Chapter 16, Problem 16.20QP

(a)

Interpretation Introduction

Interpretation: From the given concentration of H3O+ ion in aqueous solution at 50 °C , the concentration of OH- has to be calculated.

Concept Introduction:

Autoionization of water is the reaction in which the water undergoes ionization to give a proton and a hydroxide ion.  Water is a very weak electrolyte and hence it does not completely dissociate into the ions.  The ionization happens to a very less extent only.  The ionization of water is an equilibrium reaction and hence this has equilibrium rate constant.

Kw=[H3O+][OH]=1.0×1014

To calculate the concentration of OH-

(a)

Expert Solution
Check Mark

Answer to Problem 16.20QP

Answer

The concentration of OH- in (a) is 4.85×1010M

Explanation of Solution

Given

Concentration of H3O+ = 1.13×104M

Formula

Kw=[H3O+][OH]=5.84×1014at 50 °C [OH]=5.84×1014[H3O+]

Where,

[OH-] is concentration of OH-

[H3O+] is concentration of H3O+

Substitute the given concentration of H3O+ in the above formula,

[OH]=5.84×10141.13×104 =4.85×1010M

Thus the concentration of OH- is 4.85×1010M

(b)

Interpretation Introduction

Interpretation: From the given concentration of H3O+ ion in aqueous solution at 50 °C , the concentration of OH- has to be calculated.

Concept Introduction:

Autoionization of water is the reaction in which the water undergoes ionization to give a proton and a hydroxide ion.  Water is a very weak electrolyte and hence it does not completely dissociate into the ions.  The ionization happens to a very less extent only.  The ionization of water is an equilibrium reaction and hence this has equilibrium rate constant.

Kw=[H3O+][OH]=1.0×1014

To calculate the concentration of OH-

(b)

Expert Solution
Check Mark

Answer to Problem 16.20QP

Answer

The concentration of OH- in (b) is 1.2×106M

Explanation of Solution

Given

Concentration of H3O+ = 4.55×108M

Formula

Kw=[H3O+][OH]=5.84×1014at 50 °C [OH]=5.84×1014[H3O+]

Where,

[OH-] is concentration of OH-

[H3O+] is concentration of H3O+

Substitute the given concentration of H3O+ in the above formula,

[OH]=5.84×10144.55×108 =1.20×106M

Thus the concentration of OH- is 1.20×106M

(c)

Interpretation Introduction

Interpretation: From the given concentration of H3O+ ion in aqueous solution at 50 °C , the concentration of OH- has to be calculated.

Concept Introduction:

Autoionization of water is the reaction in which the water undergoes ionization to give a proton and a hydroxide ion.  Water is a very weak electrolyte and hence it does not completely dissociate into the ions.  The ionization happens to a very less extent only.  The ionization of water is an equilibrium reaction and hence this has equilibrium rate constant.

Kw=[H3O+][OH]=1.0×1014

To calculate the concentration of OH-

(c)

Expert Solution
Check Mark

Answer to Problem 16.20QP

Answer

The concentration of OH- in (c) is 7.77×104M

Explanation of Solution

Given

Concentration of H3O+ = 7.05×1011M

Formula

Kw=[H3O+][OH]=5.84×1014at 50 °C [OH]=5.84×1014[H3O+]

Where,

[OH-] is concentration of OH-

[H3O+] is concentration of H3O+

Substitute the given concentration of H3O+ in the above formula,

[OH]=5.84×10147.05×1011 =7.77×104M

Thus the concentration of OH- is 7.77×104M

(d)

Interpretation Introduction

Interpretation: From the given concentration of H3O+ ion in aqueous solution at 50 °C , the concentration of OH- has to be calculated.

Concept Introduction:

Autoionization of water is the reaction in which the water undergoes ionization to give a proton and a hydroxide ion.  Water is a very weak electrolyte and hence it does not completely dissociate into the ions.  The ionization happens to a very less extent only.  The ionization of water is an equilibrium reaction and hence this has equilibrium rate constant.

Kw=[H3O+][OH]=1.0×1014

To calculate the concentration of OH-

(d)

Expert Solution
Check Mark

Answer to Problem 16.20QP

Answer

The concentration of OH- in (d) is 1.75×1012M

Explanation of Solution

Given

Concentration of H3O+ = 3.13×102M

Formula

Kw=[H3O+][OH]=5.84×1014at 50 °C [OH]=5.84×1014[H3O+]

Where,

[OH-] is concentration of OH-

[H3O+] is concentration of H3O+

Substitute the given concentration of H3O+ in the above formula,

[OH]=5.84×10143.13×102 =1.75×1012M

Thus the concentration of OH- is 1.75×1012M

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Chapter 16 Solutions

Chemistry: Atoms First

Ch. 16.2 - Predict the relative strengths of the oxoacids in...Ch. 16.2 - Prob. 3PPACh. 16.2 - Based on the information in this section, which is...Ch. 16.2 - Prob. 3PPCCh. 16.2 - Prob. 16.2.1SRCh. 16.2 - Prob. 16.2.2SRCh. 16.2 - Prob. 16.2.3SRCh. 16.3 - Prob. 16.4WECh. 16.3 - The concentration of hydroxide ions in the antacid...Ch. 16.3 - The value of Kw at normal body temperature (37C)...Ch. 16.3 - Prob. 4PPCCh. 16.3 - Prob. 16.3.1SRCh. 16.3 - Prob. 16.3.2SRCh. 16.4 - Determine the pOH of a solution at 25C in which...Ch. 16.4 - Determine the pOH of a solution at 25C in which...Ch. 16.4 - Determine the pOH of a solution at 25C in which...Ch. 16.4 - Prob. 5PPCCh. 16.4 - Calculate the hydroxide ion concentration in a...Ch. 16.4 - Prob. 6PPACh. 16.4 - Prob. 6PPBCh. 16.4 - Prob. 6PPCCh. 16.4 - Prob. 16.4.1SRCh. 16.4 - Prob. 16.4.2SRCh. 16.4 - Prob. 16.4.3SRCh. 16.4 - Prob. 16.4.4SRCh. 16.5 - Calculate the pH of an aqueous solution at 25C...Ch. 16.5 - Prob. 7PPACh. 16.5 - Prob. 7PPBCh. 16.5 - 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