CBSE Class 12 Chemistry Chapter 15: Polymers NCERT Solutions
This resource provides detailed NCERT Solutions for Chapter 15 on Polymers, designed for CBSE Class 12 Chemistry students. It covers fundamental concepts such as the definitions of polymers and monomers, distinguishing between natural and synthetic polymers with examples, and explaining the functionality of monomers. The solutions also clarify the process of polymerization and differentiate between homopolymers and copolymers. Furthermore, it details the classification of polymers based on intermolecular forces, including elastomers, fibres, and thermoplastic polymers. These solutions offer step-by-step explanations to help students grasp complex topics, aiding in effective exam preparation and revision by reinforcing key concepts and problem-solving techniques.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 12 |
| Subject | Chemiry |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 15: Polymers - NCERT Exercises Solutions |
Chapter summary
This chapter focuses on the fundamental concepts of polymers. The NCERT Solutions cover definitions of polymers and monomers, classification based on origin (natural/synthetic) and structure (homopolymer/copolymer), and the concept of monomer functionality. It also explains the polymerization process and classifies polymers based on intermolecular forces into elastomers, fibres, and thermoplastics. The exercises are designed to build a strong understanding of polymer chemistry.
Learning outcomes
- Understand the definitions of polymer and monomer.
- Differentiate between natural and synthetic polymers.
- Distinguish between homopolymers and copolymers with examples.
- Explain the concept of monomer functionality.
- Define the polymerization process.
- Classify polymers based on intermolecular forces.
Topics covered
Paper topics
- Polymer definition
- Monomer definition
- Natural polymers
- Synthetic polymers
- Homopolymers
- Copolymers
- Monomer functionality
- Polymerization
- Classification of polymers
- Intermolecular forces in polymers
- Elastomers
- Fibres
- Thermoplastic polymers
Important topics
- Definitions of Polymer and Monomer
- Classification of Polymers (Natural/Synthetic, Homopolymer/Copolymer)
- Monomer Functionality
- Polymerization Process
- Classification based on Intermolecular Forces
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Questions and Solutions
Question 15.1
Question 15.2
- Proteins: Found in hair, wool, silk, and enzymes.
- Cellulose: A major structural component of plant cell walls.
- Starch: A carbohydrate used for energy storage in plants.
- Natural rubber: Obtained from the latex of rubber trees.
- Plastics: Such as polythene (polyethylene), PVC (polyvinyl chloride).
- Synthetic fibres: Like nylon 6,6 and polyester.
- Synthetic rubbers: Such as Buna-S (styrene-butadiene rubber) and neoprene.
Question 15.3
Question 15.4
- Monomers like ethene () and propene () have a functionality of one. This is because they typically react through their double bond, which acts as a single reactive site for addition polymerization.
- Monomers like 1,3-butadiene () and adipic acid () have a functionality of two. 1,3-butadiene can react at its double bonds, and adipic acid has two carboxyl groups () that can react, allowing them to form linear polymer chains by linking at two points.
Question 15.5
Question 15.6
Question 15.7
- Elastomers: These polymers have weak intermolecular forces between their chains, allowing them to be stretched considerably and return to their original shape upon release of the stress. Examples include natural rubber and Buna-S.
- Fibres: These polymers possess strong intermolecular forces, such as hydrogen bonds or dipole-dipole interactions, which hold the chains tightly together. This results in a high tensile strength and a thread-like structure. Examples include nylon and silk.
- Thermoplastic polymers: These polymers have intermediate intermolecular forces. They soften upon heating and can be molded into different shapes, and they solidify upon cooling. This process can be repeated. Examples include polythene and polystyrene.
Common mistakes
- Confusing homopolymers with copolymers.
- Misunderstanding the concept of monomer functionality.
- Incorrectly classifying polymers based on intermolecular forces.
Revision tips
- Clearly define and differentiate between polymers and monomers.
- Memorize examples of natural, synthetic, homopolymers, and copolymers.
- Understand the basis for classifying polymers (origin, structure, intermolecular forces).
- Review the concept of monomer functionality and its role in polymerization.
Practice MCQs
Q1. What is a polymer?
Explanation: Polymers are macromolecules composed of many repeating structural units, known as monomers, linked together.
Q2. Which of the following is an example of a natural polymer?
Explanation: Proteins are natural polymers formed by animals and plants, unlike polythene, nylon 6,6, and Buna-S which are synthetic.
Q3. A polymer formed from only one type of monomer is called a:
Explanation: Homopolymers are characterized by having repeating units derived from a single type of monomer.
Q4. What does the functionality of a monomer refer to?
Explanation: The functionality of a monomer is defined by the number of reactive sites or binding sites it has, which determine how it can link with other monomers.
Q5. Which class of polymers exhibits strong intermolecular forces and can be drawn into long threads?
Explanation: Fibres are polymers classified by strong intermolecular forces, allowing them to be spun into threads.
Frequently asked questions
What is the difference between a polymer and a monomer?
A monomer is a small, simple molecule that can react with other monomers. A polymer is a large molecule, or macromolecule, formed by the chemical combination of many monomers.
Can you give examples of natural and synthetic polymers?
Natural polymers include proteins, cellulose, and starch. Synthetic polymers are man-made, such as polythene, nylon 6,6, and synthetic rubber (Buna-S).
What is a homopolymer versus a copolymer?
A homopolymer is made from only one type of monomer, like polythene from ethene. A copolymer is made from two or more different types of monomers, such as Buna-S from butadiene and styrene.
How are polymers classified based on intermolecular forces?
Polymers are classified into elastomers (weak forces, rubber-like elasticity), fibres (strong forces, thread-like structure), and thermoplastic polymers (intermediate forces, soften on heating).
What is monomer functionality?
Monomer functionality refers to the number of binding or reactive sites a monomer has, which dictates how it can link with other monomers to form a polymer chain.
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