Name Kassidy Loftin -Partial -mole Fraction Calculate the volume required to dissolve 62.3 mg of oxygen dissolved in water exposed to a pressure of 1.43 atm of air. Assume the mole fraction of oxygen in air to be 0.27 and the Henry's law constant for oxygen in water at this temperature to be 1.14 x 10-3 M/atm. 77 x 1.43
Name Kassidy Loftin -Partial -mole Fraction Calculate the volume required to dissolve 62.3 mg of oxygen dissolved in water exposed to a pressure of 1.43 atm of air. Assume the mole fraction of oxygen in air to be 0.27 and the Henry's law constant for oxygen in water at this temperature to be 1.14 x 10-3 M/atm. 77 x 1.43
Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter13: Solutions And Their Behavior
Section13.5: Colloids
Problem 2.3ACP
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![Name
Kassidy Loftin
-Partial
-mole
Fraction
Calculate the volume required to dissolve 62.3 mg of oxygen dissolved in water exposed to a pressure of 1.43
atm of air. Assume the mole fraction of oxygen in air to be 0.27 and the Henry's law constant for oxygen in
water at this temperature to be 1.14 x 10-3 M/atm.
77 x 1.43](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F303ae104-4701-4319-af20-d62f1765d783%2F5860375c-41a7-4650-b3cc-024722311c36%2Fp0cao5t_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Name
Kassidy Loftin
-Partial
-mole
Fraction
Calculate the volume required to dissolve 62.3 mg of oxygen dissolved in water exposed to a pressure of 1.43
atm of air. Assume the mole fraction of oxygen in air to be 0.27 and the Henry's law constant for oxygen in
water at this temperature to be 1.14 x 10-3 M/atm.
77 x 1.43
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