EBK CHEMISTRY: THE SCIENCE IN CONTEXT,
EBK CHEMISTRY: THE SCIENCE IN CONTEXT,
5th Edition
ISBN: 9780393661385
Author: Davies
Publisher: VST
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Chapter 10, Problem 10.59QP

(a)

Interpretation Introduction

Interpretation: The solubility of O2 in the blood of a climber on Mt. Everest and a scuba diver at 100 feet is to be calculated.

Concept introduction: The Henry’s law states that “the amount of gas dissolved in given liquid is directly proportional to the partial pressure of that gas in equilibrium with that liquid.”

To determine: The solubility of O2 in the blood of a climber on Mt. Everest.

(a)

Expert Solution
Check Mark

Answer to Problem 10.59QP

Solution

The solubility of O2 in the blood of a climber on Mt. Everest is 0.0027mol/L_ .

Explanation of Solution

Explanation

Given

Refer Problem 10.57

The Henry’s law constant for O2 dissolved in arterial blood is 0.037mol/Latm .

Atmospheric pressure is 0.35atm .

The concentration of O2 in blood is calculated by the formula,

C=KH×p (1)

Where,

  • KH is the Henry’s law constant.
  • p partial pressure of O2 .

Partial pressure of the O2 gas is calculated by the formula,

p=m×P

Where,

  • m is the mole fraction of oxygen.
  • P is the atmospheric pressure.

The mole fraction of oxygen is 0.209.

Substitute the value of mole fraction and atmospheric pressure in above formula.

p=0.209×0.35atm=0.0731atm

Partial pressure of O2 gas is 0.0731atm .

Substitute the value of partial pressure and Henry’s law constant in equation (1).

C=0.037mol/Latm×0.0731atm=0.0027mol/L_

Therefore, the solubility of O2 in the blood of a climber on Mt. Everest is 0.0027mol/L_ .

(b)

Interpretation Introduction

To determine: The solubility of O2 in the blood of a scuba diver at 100 feet.

(b)

Expert Solution
Check Mark

Answer to Problem 10.59QP

Solution

The solubility of O2 in the blood of a scuba diver at 100 feet is 0.0231mol/L_ .

Explanation of Solution

Explanation

Refer Problem 10.57

The Henry’s law constant for O2 dissolved in arterial blood is 0.037mol/Latm .

Total pressure is 0.35atm .

The concentration of O2 in blood is calculated by the formula,

C=KH×p (1)

Where,

  • KH is the Henry’s law constant.
  • p partial pressure of O2 .

Partial pressure of the O2 gas is calculated by the formula,

p=m×P

Where,

  • m is the mole fraction of oxygen.
  • P is the atmospheric pressure.

The mole fraction of oxygen is 0.209.

Substitute the value of mole fraction and total pressure in above formula.

p=0.209×3atm=0.627atm

Partial pressure of O2 gas is 0.627atm .

Substitute the value of partial pressure and Henry’s law constant in equation (1).

C=0.037mol/Latm×0.627atm=0.0231mol/L_

Therefore, the solubility of O2 in the blood of a scuba diver at 100 feet is 0.0231mol/L_ .

Conclusion

  1. a. The solubility of O2 in the blood of a climber on Mt. Everest is 0.0027mol/L_ .
  2. b. The solubility of O2 in the blood of a scuba diver at 100 feet is 0.0231mol/L_ .

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Chapter 10 Solutions

EBK CHEMISTRY: THE SCIENCE IN CONTEXT,

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