Introduction To General, Organic, And Biochemistry
Introduction To General, Organic, And Biochemistry
12th Edition
ISBN: 9781337571357
Author: Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher: Cengage Learning
bartleby

Concept explainers

bartleby

Videos

Question
Book Icon
Chapter 17, Problem 30P
Interpretation Introduction

(a)

Interpretation:

The ratio of A- to [HA] with the help of pH and pKa values should be calculated.

Concept Introduction:

The pH of a solution indicates the number of H3 O+ ions in the solution. The mathematical relation between pH and H3 O+ is as given below;.

pH =  log [H3O+][H3O+] = 10pH

Acid dissociation constant Ka is related to pKa as;.

pKa =  log KaKa = 10pKa.

Expert Solution
Check Mark

Answer to Problem 30P

103.

Explanation of Solution

Given Information:

pKa = 5.0.

pH = 2.0.

Calculation:

From pH of solution, concentration of hydroxide ion can be calculated as follows:

[H3O+] = 10pH= 102  = 0.01 

Also,

 Ka = 10pKa= 105 

Since,

[A][HA]=Ka[H3O+]

Thus, by putting the values, the ratio [A][HA] can be calculated as follows:

[A][HA]=105102=103.

Interpretation Introduction

(b)

Interpretation:

The ratio of A- to [HA] with the help of pH and pKa values should be calculated.

Concept Introduction:

The pH of a solution indicates the number of H3 O+ ions in the solution. The mathematical relation between pH and H3 O+ is as given below;.

pH =  log [H3O+][H3O+] = 10pH

Acid dissociation constant Ka is related to pKa as;.

pKa =  log KaKa = 10pKa.

Expert Solution
Check Mark

Answer to Problem 30P

Given:

pKa = 5.0.

pH = 5.0.

Hence [H3 O+ ] = 10-pH = 10-5.

And Ka = 10-pKa = 10-5.

Since Introduction To General, Organic, And Biochemistry, Chapter 17, Problem 30P

Plug the values of Ka and H3 O+ ions to calculate the ratio of [A- ] to [HA].

[A- ] / [HA] = 10-5 / 10-5 = 1.

Explanation of Solution

Given Information:

pKa = 5.0.

pH = 5.0.

Calculation:

From pH of solution, concentration of hydroxide ion can be calculated as follows:

[H3O+] = 10pH= 105  = 1.0×105  

Also,

 Ka = 10pKa= 105 

Since,

[A][HA]=Ka[H3O+]

Thus, by putting the values, the ratio [A][HA] can be calculated as follows:

[A][HA]=105105=1.

Interpretation Introduction

(c)

Interpretation:

The ratio of A- to [HA] with the help of pH and pKa values should be calculated.

Concept Introduction:

The pH of a solution indicates the number of H3 O+ ions in the solution. The mathematical relation between pH and H3 O+ is as given below;.

pH =  log [H3O+][H3O+] = 10pH

Acid dissociation constant Ka is related to pKa as;.

pKa =  log KaKa = 10pKa.

Expert Solution
Check Mark

Answer to Problem 30P

102.

Explanation of Solution

Given Information:

pKa = 5.0.

pH = 7.0.

Calculation:

From pH of solution, concentration of hydroxide ion can be calculated as follows:

[H3O+] = 10pH= 107  = 1.0× 107  

Also,

 Ka = 10pKa= 105 

Since,

[A][HA]=Ka[H3O+]

Thus, by putting the values, the ratio [A][HA] can be calculated as follows:

[A][HA]=1051.0× 107  =102.

Interpretation Introduction

(d)

Interpretation:

The ratio of A- to [HA] with the help of pH and pKa values should be calculated.

Concept Introduction:

The pH of a solution indicates the number of H3 O+ ions in the solution. The mathematical relation between pH and H3 O+ is as given below;.

pH =  log [H3O+][H3O+] = 10pH

Acid dissociation constant Ka is related to pKa as;.

pKa =  log KaKa = 10pKa.

Expert Solution
Check Mark

Answer to Problem 30P

104.

Explanation of Solution

Given Information:

pKa = 5.0.

pH = 9.0.

Calculation:

From pH of solution, concentration of hydroxide ion can be calculated as follows:

[H3O+] = 10pH= 109  = 1.0× 109 

Also,

 Ka = 10pKa= 105 

Since,

[A][HA]=Ka[H3O+]

Thus, by putting the values, the ratio [A][HA] can be calculated as follows:

[A][HA]=1051.0× 109  =104.

Interpretation Introduction

(e)

Interpretation:

The ratio of A- to [HA] with the help of pH and pKa values should be calculated.

Concept Introduction:

The pH of a solution indicates the number of H3 O+ ions in the solution. The mathematical relation between pH and H3 O+ is as given below;.

pH =  log [H3O+][H3O+] = 10pH

Acid dissociation constant Ka is related to pKa as;.

pKa =  log KaKa = 10pKa.

Expert Solution
Check Mark

Answer to Problem 30P

106.

Explanation of Solution

Given Information:

pKa = 5.0.

pH = 11.0.

Calculation:

From pH of solution, concentration of hydroxide ion can be calculated as follows:

[H3O+] = 10pH= 1011  = 1.0× 1011 

Also,

 Ka = 10pKa= 105 

Since,

[A][HA]=Ka[H3O+]

Thus, by putting the values, the ratio [A][HA] can be calculated as follows:

[A][HA]=1051.0× 1011  =106.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Phenolphthalein has a pKa of 9.7. It is colorless in its acid form and pink in its basic form. For each of the values of pH, calculate [In-]>[HIn] and predict the color of a phenolphthalein solution. a. pH = 2.0 b. pH = 5.0 c. pH = 8.0 d. pH = 11.0
LiF has a pKsp of 2.77. HF has a pKa of 3.17. LiF is dissolved at 0.250 F after addition of strong acid. What is the pH of the 0.250 F LiF solution?
please help me answer all 4 a. In the laboratory a student measures the percent ionization of a 0.537 M solution of formic acid , HCOOH to be 1.89 %. Calculate value of Ka =_______ from this experimental data.  b. Calculate the percent ionization of a 0.580 M solution of hypochlorous acid. % Ionization = _______ c. In the laboratory, a general chemistry student measured the pH of a 0.537 M aqueous solution of trimethylamine, (CH3)3N to be 11.781. Use the information she obtained to determine the Kb for this base. Kb(experiment) =____________ d. In the laboratory, a general chemistry student measured the pH of a 0.586 M aqueous solution of triethanolamine, C6H15O3N to be 10.780. Use the information she obtained to determine the Kb for this base. Kb(experiment) = ________________

Chapter 17 Solutions

Introduction To General, Organic, And Biochemistry

Knowledge Booster
Background pattern image
Chemistry
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Introduction to General, Organic and Biochemistry
Chemistry
ISBN:9781285869759
Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher:Cengage Learning
Acid-Base Titration | Acids, Bases & Alkalis | Chemistry | FuseSchool; Author: FuseSchool - Global Education;https://www.youtube.com/watch?v=yFqx6_Y6c2M;License: Standard YouTube License, CC-BY