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Henry's Law states that the quantity of a gas that will dissolve in a liquid is...

Henry's Law states that the quantity of a gas that will dissolve in a liquid is proportional to the partial pressure of the gas and its solubility coefficient (its physical or chemical attraction for water), at a given temperature. Henry's Law: The volume of a gas (Vx) dissolved in a liter of water is Vx = (pX)*(SC), where pX is the partial pressure in atmospheres and SC is the solubility coefficient.

a) At 1 atm and 37 degrees Celsius, the solubility coefficient for oxygen is 0.024 ml O2/ml H2O. How much oxygen can dissolve in a liter of water at 37 degrees Celsius if the partial pressure of oxygen is 85 mm Hg =

b) At 1 atm and 20 degrees Celsius, the solubility coefficient for Carbon dioxide is 0.88 ml CO2/ml H2O at one atmosphere. How much CO2 can dissolve in a liter of water at 20 degrees Celsius if the partial pressure of CO2 is 38 mm Hg?


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Answer #1

a)

Partial pressure 85 mm Hg - = 0.1118 atm Po2 = 760 mm Hg

Voz = Poz x SC

0.024 ml 02 Vo2 = 0.1118 atm x ml H2O

0.002684 ml 02 Vo2 = ml H2O

For 1 L (1000 mL of water)

Vo2 = 7 0.002684 ml O2 ml H2O 1000 mL H2O 1 LH2O

Vo2=1 2.68 ml 02 L H2O

b)

Partial pressure 38 mm Hg Pco2 = 760 mm Hg = 0.05 atm

Vco2 = Pco2 X SC

Vco2 = 0.05 atm x 0.88 ml CO2 ml H.O

0.044 ml CO2 Vc02= ml H2O

For 1 L (1000 mL of water)

Vco2= 0.044 ml CO2 1000 mL H2O ml H.O 1 LHO

44 ml CO2 Vco2 = LH2O

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