The average molecular mass of colloids can be determined by:
(a)- Tyndall effect
(b)- Brownian movement
(c)- Osmotic pressure
(d)- Flocculation
Answer
621k+ views
Hint: The average molecular mass of the colloids can be calculated by the formula $M=\dfrac{wRT}{\pi V}$ where, w is the colloid particles, R is the solution constant, T is the temperature of colloidal solution, V is the volume, and $\pi $ is the pressure.
Complete answer:
We can calculate the molecular mass of the colloid by osmotic pressure.
The osmotic pressure ($\pi $) of the colloidal solution is directly proportional to the concentration of the solution (C) and its temperature (T). Mathematically,
$\pi \propto C$
$\pi \propto T$
$\pi =\text{ R x T x C}$
Where R is a constant (solution constant) and its value is found to be the same as that of the Gas constant.
$\pi =CRT$
But, $C=\dfrac{n}{V}$
Where n is the number of moles of sol, and Vis the volume of the solution.
$\pi =\dfrac{n}{V}RT\ \text{ or }\pi V=nRT$
If w grams of sol are dissolved in V liter of the solution and M is the average molecular mass of the sol then,
$n=\dfrac{w}{M}$
Substituting this value in the equation, we get
$\pi V=\dfrac{w}{M}RT$
$M=\dfrac{wRT}{\pi V}$
So, with osmotic pressure, we can calculate the average molecular mass.
This method is not usually preferred over the determination of molecular masses because of many experimental difficulties involved. However, for the determination of molecular masses of proteins, polymers, and other macromolecules like the colloidal solution, it is considered as one of the most suitable methods.
Hence the correct answer is an option (c)- Osmotic pressure.
Note:
The particles of a colloidal solution are simple molecules, but a physical aggregation of molecules. Their osmotic pressure will be low because their numbers of particles are very small.
Complete answer:
We can calculate the molecular mass of the colloid by osmotic pressure.
The osmotic pressure ($\pi $) of the colloidal solution is directly proportional to the concentration of the solution (C) and its temperature (T). Mathematically,
$\pi \propto C$
$\pi \propto T$
$\pi =\text{ R x T x C}$
Where R is a constant (solution constant) and its value is found to be the same as that of the Gas constant.
$\pi =CRT$
But, $C=\dfrac{n}{V}$
Where n is the number of moles of sol, and Vis the volume of the solution.
$\pi =\dfrac{n}{V}RT\ \text{ or }\pi V=nRT$
If w grams of sol are dissolved in V liter of the solution and M is the average molecular mass of the sol then,
$n=\dfrac{w}{M}$
Substituting this value in the equation, we get
$\pi V=\dfrac{w}{M}RT$
$M=\dfrac{wRT}{\pi V}$
So, with osmotic pressure, we can calculate the average molecular mass.
This method is not usually preferred over the determination of molecular masses because of many experimental difficulties involved. However, for the determination of molecular masses of proteins, polymers, and other macromolecules like the colloidal solution, it is considered as one of the most suitable methods.
Hence the correct answer is an option (c)- Osmotic pressure.
Note:
The particles of a colloidal solution are simple molecules, but a physical aggregation of molecules. Their osmotic pressure will be low because their numbers of particles are very small.
Recently Updated Pages
Master Class 12 Economics: Engaging Questions & Answers for Success

Master Class 12 English: Engaging Questions & Answers for Success

Master Class 12 Social Science: Engaging Questions & Answers for Success

Master Class 12 Maths: Engaging Questions & Answers for Success

Master Class 12 Physics: Engaging Questions & Answers for Success

Master Class 9 General Knowledge: Engaging Questions & Answers for Success

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Difference Between Prokaryotic Cells and Eukaryotic Cells

Two of the body parts which do not appear in MRI are class 11 biology CBSE

1 ton equals to A 100 kg B 1000 kg C 10 kg D 10000 class 11 physics CBSE

10 examples of friction in our daily life

Name the Largest and the Smallest Cell in the Human Body ?

