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Which of the following colligative property can provide molar mass of proteins (or polymers or colloids) with greatest precision?
  • a)
    Osmotic pressure
  • b)
    Elevation of boiling point
  • c)
    Depression of freezing point
  • d)
    Relative lowering of vapour pressure
Correct answer is option 'A'. Can you explain this answer?
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Which of the following colligative property can provide molar mass of ...
A since the term molarity can be used to Calcutta molecular mass of polymer
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Which of the following colligative property can provide molar mass of ...
Osmotic Pressure for Determining Molar Mass of Proteins
Understanding the concept of osmotic pressure is crucial in determining the molar mass of proteins with the highest precision. Here's why:

Osmotic Pressure
- Osmotic pressure is a colligative property that depends on the concentration of solute particles in a solution.
- For proteins, which are large molecules and cannot pass through a semipermeable membrane, osmotic pressure can be used to measure their molar mass accurately.
- By comparing the osmotic pressure of a protein solution to that of a known concentration of a small molecule, such as glucose, the molar mass of the protein can be calculated using the Van't Hoff equation.
- This method provides a precise measurement of the molar mass of proteins, polymers, or colloids due to the direct correlation between osmotic pressure and the number of solute particles in the solution.
In conclusion, osmotic pressure is the colligative property that can provide the molar mass of proteins with the greatest precision. Its ability to measure the concentration of solute particles accurately makes it a valuable tool in determining the molar mass of large molecules like proteins.
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Which of the following colligative property can provide molar mass of proteins (or polymers or colloids) with greatest precision?a)Osmotic pressureb)Elevation of boiling pointc)Depression of freezing pointd)Relative lowering of vapour pressureCorrect answer is option 'A'. Can you explain this answer?
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