CBSE Class 12 Chemistry Chapter 16: Chemistry in Everyday Life NCERT Solutions
This chapter delves into the fascinating world of 'Chemistry in Everyday Life' for CBSE Class 12 Chemistry students. The NCERT Solutions provide clear explanations and detailed answers to in-text questions, covering essential topics such as the classification of drugs, the importance of artificial sweetening agents, and the chemical processes involved in soap preparation. It also explores the structure and function of detergents, differentiating between their hydrophilic and hydrophobic components. These solutions are designed to help students grasp the fundamental chemical principles that impact our daily lives, making complex concepts accessible and aiding in effective exam revision.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 12 |
| Subject | Chemistry |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 31 |
Chapter summary
Chapter 16 of the CBSE Class 12 Chemistry syllabus focuses on 'Chemistry in Everyday Life'. The NCERT Solutions for this chapter address key concepts like the safe usage of medicines, the role of antacids and artificial sweeteners, and the chemistry behind soap and detergent manufacturing. It clarifies the structural components of detergents and explains the saponification process for making soaps. This chapter highlights the practical applications of chemistry in common products and daily routines.
Learning outcomes
- Understand the importance of consulting doctors for medication dosages.
- Identify the pharmacological classification of drugs like antacids.
- Explain the necessity and examples of artificial sweetening agents.
- Write chemical equations for soap preparation (saponification).
- Identify hydrophilic and hydrophobic parts in detergent molecules.
- Recognize functional groups in common chemical compounds.
Topics covered
Paper topics
- Medicines and their classification
- Antacids
- Artificial Sweeteners
- Soaps
- Detergents
- Hydrophilic and Hydrophobic parts
- Saponification
- Chemical equations for soap preparation
- Functional groups in detergents
Important topics
- Safe usage of medicines
- Role of antacids and artificial sweeteners
- Chemistry of soap preparation (Saponification)
- Structure and function of detergents
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Questions and Solutions
Question 16.1
Medicines, including sleeping pills, are designed to have specific effects on the body when taken in prescribed doses. However, if taken in doses higher than recommended, most drugs can produce harmful side effects. In some cases, an overdose can be extremely dangerous and may even lead to death. Therefore, it is crucial to consult a doctor before taking any medication to ensure the correct dosage and avoid potential risks.
Question 16.2
The statement "ranitidine is an antacid" refers to the classification of drugs based on their pharmacological effect. An antacid is a type of drug that works by counteracting the effects of excess acid in the stomach. Ranitidine falls into this category because it reduces stomach acidity.
Question 16.3
Artificial sweetening agents are required primarily for individuals who need to control their sugar and calorie intake. Many people suffer from health conditions such as diabetes or obesity, where consuming normal sugar (sucrose) can be detrimental. Artificial sweeteners provide a sweet taste without adding significant calories to the diet, making them a suitable alternative for these individuals. Examples include saccharin, aspartame, and alitame.
Question 16.4
- – Glyceryl palmitate
- - Glyceryl oleate
The preparation of sodium soap from fats or oils is known as saponification. This process involves the hydrolysis of esters of fatty acids (triglycerides) with a strong alkali, such as sodium hydroxide (NaOH), to produce soap (sodium salts of fatty acids) and glycerol.
(i) Preparation of Sodium Palmitate from Glyceryl Palmitate:
Glyceryl palmitate is a triglyceride of palmitic acid. The reaction with sodium hydroxide yields sodium palmitate (soap) and glycerol.
CH_2 - O - \stackrel{||}{C} - C_{15}H_{31} | CH - O - \stackrel{||}{C} - C_{15}H_{31} | CH_2 - O - \stackrel{||}{C} - C_{15}H_{31} + 3NaOH
→Heat
3C_{15}H_{31}COONa
(Sodium Palmitate - Soap) +
CH_2OH | CHOH | CH_2OH (Glycerol)
(ii) Preparation of Sodium Oleate from Glyceryl Oleate:
Glyceryl oleate is a triglyceride of oleic acid. The reaction with sodium hydroxide produces sodium oleate (soap) and glycerol.
CH_2 - O - \stackrel{||}{C} - C_{17}H_{33} | CH - O - \stackrel{||}{C} - C_{17}H_{33} | CH_2 - O - \stackrel{||}{C} - C_{17}H_{33} + 3NaOH
→Heat
3C_{17}H_{33}COONa
(Sodium Oleate - Soap) +
CH_2OH | CHOH | CH_2OH (Glycerol)
Question 16.5
Detergents are surfactants that have a hydrophilic (water-loving) head and a hydrophobic (water-fearing) tail. In the given non-ionic detergent molecule:
- The hydrophobic part is the long hydrocarbon chain (e.g., ). This part is non-polar and repels water, but it can dissolve in oils and grease.
- The hydrophilic part is the polyoxyethylene chain (e.g., ). This part is polar and is attracted to water molecules, allowing the detergent to dissolve in water.
The functional groups present in this molecule are:
- Ether linkages () within the polyoxyethylene chain.
- A terminal hydroxyl group () at the end of the hydrophilic chain.
- The molecule also contains an alkyl chain, which is characteristic of detergents.
Common mistakes
- Not understanding the basis of drug classification (pharmacological effects).
- Confusing the purpose of artificial sweeteners with regular sugar.
- Errors in writing or balancing chemical equations for saponification.
- Difficulty in identifying the polar (hydrophilic) and non-polar (hydrophobic) regions of detergent molecules.
Revision tips
- Focus on understanding the 'why' behind drug usage and precautions.
- Memorize examples of artificial sweeteners and their advantages.
- Practice writing the saponification reaction for different fats/oils.
- Draw and label detergent molecules to clearly identify their parts.
Practice MCQs
Q1. What is the primary reason for consulting a doctor before taking sleeping pills?
Explanation: Medicines, including sleeping pills, can cause adverse effects or even be lethal if taken in doses higher than recommended, necessitating medical consultation.
Q2. Ranitidine is classified as an antacid based on its:
Explanation: Ranitidine is classified as an antacid because it counteracts the effects of excess acid in the stomach, which relates to its therapeutic use.
Q3. Why are artificial sweetening agents needed?
Explanation: Artificial sweeteners are used by individuals like diabetics and the obese, as they provide sweetness without adding calories from sugar.
Q4. The reaction of an ester of a fatty acid with sodium hydroxide to produce soap is called:
Explanation: The process of making soap by reacting fats or oils (esters of fatty acids) with a strong base like sodium hydroxide is known as saponification.
Q5. In a non-ionic detergent molecule, the hydrophobic part is typically:
Explanation: The hydrophobic part of a detergent molecule is the long hydrocarbon chain, which repels water and interacts with oils and grease.
Frequently asked questions
What is the main concern with taking sleeping pills without a doctor's advice?
Taking sleeping pills without medical consultation is risky because higher doses than recommended can lead to harmful effects, potentially even death.
How are drugs classified based on their effects?
Drugs can be classified based on their pharmacological effects, meaning how they affect the body. For example, ranitidine is classified as an antacid because it counteracts stomach acid.
Why are artificial sweeteners beneficial for certain individuals?
Artificial sweeteners are beneficial for people with conditions like diabetes or obesity because they provide sweetness without contributing calories, unlike regular sugar (sucrose).
What is the chemical process for making soap from fats?
Soap is made through a process called saponification, where an ester of a fatty acid (like glyceryl oleate or palmitate) reacts with a strong base, such as sodium hydroxide, to produce soap and glycerol.
What are the two key parts of a detergent molecule?
A detergent molecule has two parts: a hydrophilic part (attracted to water) and a hydrophobic part (repelled by water, attracted to oil/grease).
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