In order to find the molecular weight of hemoglobin 0.500 g was dissolved in enough water in a volumetric flask to give 100.0 mL solution. The osmotic pressure of this solution was then measured at 25 °C and found to be 1.35 mmHg. Calculate the molecular weight of hemoglobin and determine the boiling point of the solution.

Chemistry & Chemical Reactivity
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Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter13: Solutions And Their Behavior
Section13.4: Colligative Properties
Problem 13.9CYU: A 1.40-g sample of polyethylene, a common plastic, is dissolved in enough organic solvent to give...
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5) In order to find the molecular weight of hemoglobin 0.500 g was dissolved in enough water
in a volumetric flask to give 100.0 mL solution. The osmotic pressure of this solution was
then measured at 25 °C and found to be 1.35 mmHg. Calculate the molecular weight of
hemoglobin and determine the boiling point of the solution.
Transcribed Image Text:5) In order to find the molecular weight of hemoglobin 0.500 g was dissolved in enough water in a volumetric flask to give 100.0 mL solution. The osmotic pressure of this solution was then measured at 25 °C and found to be 1.35 mmHg. Calculate the molecular weight of hemoglobin and determine the boiling point of the solution.
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