EBK LEHNINGER PRINCIPLES OF BIOCHEMISTR
EBK LEHNINGER PRINCIPLES OF BIOCHEMISTR
7th Edition
ISBN: 8220103662253
Author: nelson
Publisher: MAC HIGHER
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Chapter 2, Problem 4P

(a)

Summary Introduction

To determine: The pH of a solution having H+ concentration (1.75×105 mol/L) .

Introduction:

The splitting of water results in the formation of two ionic species hydrogen ion and hydroxide ion. The hydrogen ions and hydroxide ions are released in equal number when the water is dissociated. The alkalinity or acidity of the solution is determined by the pH (potential of hydrogen) of a solution. The negative logarithm of the molar ion hydrogen (H+) ion concentration is called pH. It is calculated by the formula pH=log [H+] .

(a)

Expert Solution
Check Mark

Explanation of Solution

Explanation:

The given solution has [H+]=1.75×105 mol/L

The pH of the solution is calculated by the formula,

pH=log [H+]

Substitute the values of [H+] in the above expression:

pH=log[H+]=log(1.75×105 mol/L)=4.76 

Therefore, the pH of the solution is 4.76  .

Conclusion

Conclusion:

The pH of solution having H+ concentration ( 1.75×105 mol/L ) is 4.76_.

(b)

Summary Introduction

To determine: The pH of a solution having H+ concentration (6.50×1010 mol/L) .

Introduction:

The splitting of water results in the formation of two ionic species hydrogen ion and hydroxide ion. The hydrogen ions and hydroxide ions are released in equal number when the water is dissociated. The hydrogen ion concentration is calculated by the given pH of the solution. The pH of a solution is in the range of 0 to 14.

(b)

Expert Solution
Check Mark

Explanation of Solution

Explanation:

The given solution has [H+]=6.50×1010 mol/L

The pH of the solution is calculated by the formula,

pH=log [H+]

Substitute the values of [H+] in the above expression:

pH=log[H+]=log(6.50×1010 mol/L)=9.19  

Therefore, the pH of the solution is 9.19  .

Conclusion

Conclusion:

The pH of solution having H+ concentration ( 6.50×1010 mol/L ) is 9.19_.

(c)

Summary Introduction

To determine: The pH of a solution having H+ concentration (1.00×104 mol/L) .

Introduction:

The splitting of water results in the formation of two ionic species hydrogen ion and hydroxide ion. The hydrogen ions and hydroxide ions are released in equal number when the water is dissociated. The alkalinity or acidity of the solution is determined by the pH (potential of hydrogen) of a solution. The negative logarithm of the molar ion hydrogen (H+) ion concentration is called pH. It is calculated by the formula pH=log [H+] . The hydrogen ion concentration is calculated by the given pH of the solution. The pH of a solution is in the range of 0 to 14.

(c)

Expert Solution
Check Mark

Explanation of Solution

Explanation:

The given solution has [H+]=1.00×104 mol/L

The pH of the solution is calculated by the formula,

pH=log [H+]

Substitute the values of [H+] in the above expression:

pH=log[H+]=log(1.00×104 mol/L)=4.00

Therefore, the pH of the solution is 4.00 .

Conclusion

Conclusion:

The pH of solution having H+ concentration ( 1.00×104 mol/L ) is 4.00_.

(d)

Summary Introduction

To determine: The pH of a solution having H+ concentration (1.50×105 mol/L) .

Introduction:

The pH of a solution is defined as the negative logarithm of the molar ion hydrogen (H+) ion concentration. It is calculated by the formula pH=log [H+] . The hydrogen ion concentration is calculated by the given pH of the solution. The pH of a solution is in the range of 0 to 14.

(d)

Expert Solution
Check Mark

Explanation of Solution

Explanation:

The given solution has [H+]=1.50×105 mol/L

The pH of the solution is calculated by the formula,

pH=log [H+]

Substitute the values of [H+] in the above expression:

pH=log[H+]=log(1.50×105 mol/L)=4.82

Therefore, the pH of the solution is 4.76  .

Conclusion

Conclusion:

The pH of solution having H+ concentration ( 1.50×105 mol/L ) is 4.82_.

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