Micelles are:
A) Emulsion-cum gel
B) Adsorbed catalyst
C) Associated colloids
D) Ideal solutions
Answer
585.9k+ views
Hint:Micelles are formed when soaps are dissolved in water. Soaps are sodium or potassium salts of long chain carboxylic acids. Soaps are represented as ${\text{RCOONa}}$. At high concentration, soap forms an ionic micelle.
Complete step by step answer:
We know that when soaps are dissolved in water at low concentration, soaps dissociate into carboxylate ion \[\left( {{\text{RCO}}{{\text{O}}^ - }} \right)\] and sodium ion $\left( {{\text{N}}{{\text{a}}^ + }} \right)$. The dissociation reaction of soap is as follows:
${\text{RCOONa}} \to {\text{RCO}}{{\text{O}}^ - } + {\text{N}}{{\text{a}}^ + }$
Thus, at low concentration, soap behaves as an electrolyte.
The carboxylate ion \[\left( {{\text{RCO}}{{\text{O}}^ - }} \right)\] has two parts. One is the polar hydrophilic group \[\left( {{\text{CO}}{{\text{O}}^ - }} \right)\] which is a water loving group and the non-polar hydrophobic group $\left( {\text{R}} \right)$ which is water hating.
The polar hydrophilic group \[\left( {{\text{CO}}{{\text{O}}^ - }} \right)\] is called the head while the non-polar hydrophobic group $\left( {\text{R}} \right)$ is called the tail.
When the concentration of soap is increased, the soap molecules arrange themselves in a typical manner which is known as micelle.
Micelles are spherical structures in which the hydrophilic end is on the outer side of the sphere and the hydrophobic end is on the inner side of the sphere. The hydrocarbon chains of soap are hydrophobic and the ionic ends are hydrophilic.
Thus, at high concentration, soap molecules aggregate to form micellar particles.
We know that the substances which act as electrolytes at lower concentration and aggregate to form particles at higher concentration are known as associated colloids.
Thus, micelles are associated colloids.
Thus, the correct option is (C) false.
Note: Do not confuse between hydrophobic and hydrophilic end of soap. Remember that the hydrocarbon group of soap is responsible for the formation of micelle. Hydrophilic means water loving and hydrophobic means water hating.
Complete step by step answer:
We know that when soaps are dissolved in water at low concentration, soaps dissociate into carboxylate ion \[\left( {{\text{RCO}}{{\text{O}}^ - }} \right)\] and sodium ion $\left( {{\text{N}}{{\text{a}}^ + }} \right)$. The dissociation reaction of soap is as follows:
${\text{RCOONa}} \to {\text{RCO}}{{\text{O}}^ - } + {\text{N}}{{\text{a}}^ + }$
Thus, at low concentration, soap behaves as an electrolyte.
The carboxylate ion \[\left( {{\text{RCO}}{{\text{O}}^ - }} \right)\] has two parts. One is the polar hydrophilic group \[\left( {{\text{CO}}{{\text{O}}^ - }} \right)\] which is a water loving group and the non-polar hydrophobic group $\left( {\text{R}} \right)$ which is water hating.
The polar hydrophilic group \[\left( {{\text{CO}}{{\text{O}}^ - }} \right)\] is called the head while the non-polar hydrophobic group $\left( {\text{R}} \right)$ is called the tail.
When the concentration of soap is increased, the soap molecules arrange themselves in a typical manner which is known as micelle.
Micelles are spherical structures in which the hydrophilic end is on the outer side of the sphere and the hydrophobic end is on the inner side of the sphere. The hydrocarbon chains of soap are hydrophobic and the ionic ends are hydrophilic.
Thus, at high concentration, soap molecules aggregate to form micellar particles.
We know that the substances which act as electrolytes at lower concentration and aggregate to form particles at higher concentration are known as associated colloids.
Thus, micelles are associated colloids.
Thus, the correct option is (C) false.
Note: Do not confuse between hydrophobic and hydrophilic end of soap. Remember that the hydrocarbon group of soap is responsible for the formation of micelle. Hydrophilic means water loving and hydrophobic means water hating.
Recently Updated Pages
Three beakers labelled as A B and C each containing 25 mL of water were taken A small amount of NaOH anhydrous CuSO4 and NaCl were added to the beakers A B and C respectively It was observed that there was an increase in the temperature of the solutions contained in beakers A and B whereas in case of beaker C the temperature of the solution falls Which one of the following statements isarecorrect i In beakers A and B exothermic process has occurred ii In beakers A and B endothermic process has occurred iii In beaker C exothermic process has occurred iv In beaker C endothermic process has occurred

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

Master Class 12 Physics: Engaging Questions & Answers for Success

Master Class 12 Maths: Engaging Questions & Answers for Success

Master Class 12 Economics: Engaging Questions & Answers for Success

Master Class 12 Chemistry: Engaging Questions & Answers for Success

Trending doubts
Which are the Top 10 Largest Countries of the World?

Draw a labelled sketch of the human eye class 12 physics CBSE

What are the major means of transport Explain each class 12 social science CBSE

Differentiate between homogeneous and heterogeneous class 12 chemistry CBSE

Sulphuric acid is known as the king of acids State class 12 chemistry CBSE

Why should a magnesium ribbon be cleaned before burning class 12 chemistry CBSE

