CBSE Class 12 Chemistry Chapter 6: General Principles and Processes of Isolation of Elements NCERT Solutions
This chapter delves into the fundamental principles and various processes involved in the isolation of elements from their naturally occurring sources. The NCERT Solutions for Class 12 Chemistry, Chapter 6, cover key concepts such as the abundance of elements, the role of thermodynamics and chemical kinetics in extraction, and different methods like hydrometallurgy, pyrometallurgy, and electrometallurgy. It also explains specific extraction processes for metals like aluminium, copper, and iron, along with purification techniques like distillation, liquation, electrolysis, and zone refining. These solutions provide clear explanations and step-by-step problem-solving, crucial for understanding the complex metallurgical processes and preparing effectively for exams.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 12 |
| Subject | Chemistry Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 6 |
Chapter summary
Chapter 6 of the NCERT Class 12 Chemistry textbook focuses on the general principles and processes used for isolating elements. The NCERT Solutions cover the abundance of elements in the Earth's crust, thermodynamic principles of metal extraction (like Ellingham diagrams), and kinetic considerations. It details various methods including extraction by chemical reduction, electrolysis, and specific processes for obtaining metals like copper, aluminium, and iron. Purification techniques are also discussed, offering a comprehensive overview of metallurgy.
Learning outcomes
- Understand the abundance of elements in the Earth's crust.
- Explain the thermodynamic and kinetic principles governing metal extraction.
- Describe various methods of metal extraction, including reduction and electrolysis.
- Illustrate specific extraction processes for common metals.
- Identify and explain purification techniques for metals.
Topics covered
Paper topics
- Abundance of Elements
- Thermodynamic Principles of Metallurgy
- Ellingham Diagrams
- Kinetic Considerations in Metallurgy
- Extraction by Chemical Reduction
- Extraction by Electrolytic Reduction
- Hydrometallurgy
- Pyrometallurgy
- Electrometallurgy
- Purification of Metals
- Distillation
- Zone Refining
Important topics
- Thermodynamic Principles of Metallurgy
- Ellingham Diagrams
- Extraction by Chemical Reduction
- Extraction by Electrolytic Reduction
- Purification of Metals
- Zone Refining
PDF preview
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Questions and Solutions
Multiple Choice Questions (MCQs) - Question 1
- Oxidation of Cl⁻ ion to chlorine gas occurs.
- Reduction of Cl⁻ ion to chlorine gas occurs.
- For the overall reaction, ΔG° has a negative value.
- A displacement reaction takes place.
Multiple Choice Questions - Question 2
- Sulphides of copper (II) and iron (II)
- Sulphides of copper (II) and iron (III)
- Sulphides of copper (I) and iron (II)
- Sulphides of copper (I) and iron (III)
Multiple Choice Questions - Question 3
Multiple Choice Questions - Question 4
- Al and Fe
- Al and Cu
- Fe and Cu
- Cu and Ag
Multiple Choice Questions - Question 5
- Impurities of low boiling metals can be separated by distillation.
- Impurities are more soluble in molten metal than in solid metal.
- Different components of a mixture are differently adsorbed on an adsorbent.
- Vapours of volatile compound can be decomposed into pure metal.
Common mistakes
- Confusing oxidation and reduction steps in electrolysis.
- Incorrectly applying thermodynamic feasibility to practical extraction.
- Misidentifying the composition of intermediate products like copper matte.
- Confusing different purification methods and their underlying principles.
Revision tips
- Focus on understanding the core principles behind each extraction method.
- Memorize the key reactions and conditions for isolating common metals.
- Pay close attention to the role of thermodynamics (e.g., Ellingham diagrams) and kinetics.
- Review the purification techniques and the specific impurities they remove.
Practice MCQs
Q1. In the electrolytic extraction of chlorine from brine, which process occurs?
Explanation: During the electrolysis of brine, chloride ions (Cl⁻) are oxidized at the anode to form chlorine gas (Cl₂). The overall reaction is not thermodynamically spontaneous, requiring external energy.
Q2. What is the primary composition of copper matte produced when copper ore is mixed with silica in a reverberatory furnace?
Explanation: Copper matte, a product of smelting copper ore with silica, primarily contains sulphides of copper(I) (Cu₂S) and iron(II) (FeS).
Q3. Which of the following reactions is an example of autoreduction?
Explanation: The reaction Cu₂O + ½ Cu₂S → 3Cu + ½ SO₂ is an autoreduction process where copper(I) oxide is reduced by copper(I) sulphide, leading to the formation of pure copper.
Q4. Which are the two most abundant elements in the Earth's crust among the given options?
Explanation: Aluminium (8.3% by weight) and Iron (4.2% by weight) are among the most abundant elements in the Earth's crust, significantly more so than copper or silver.
Q5. The principle behind zone refining is based on which property?
Explanation: Zone refining works on the principle that impurities have a greater solubility in the molten phase of a metal than in its solid phase, allowing them to be swept away with the molten zone.
Frequently asked questions
What is the main focus of Chapter 6 in CBSE Class 12 Chemistry?
Chapter 6 focuses on the general principles and processes involved in the isolation and purification of elements from their natural sources, covering metallurgical concepts.
What are the key principles behind metal extraction discussed in these solutions?
The solutions explain extraction based on thermodynamic feasibility (using Ellingham diagrams) and kinetic factors, as well as various chemical and electrochemical reduction methods.
How do these NCERT Solutions help in exam preparation?
These solutions provide clear, step-by-step explanations for complex metallurgical processes and MCQs, helping students understand concepts and practice problem-solving for exams.
What is autoreduction, and can you give an example?
Autoreduction is a process where a metal oxide is reduced by its corresponding sulphide. An example is the reaction of copper(I) oxide with copper(I) sulphide to produce copper.
What is the principle of zone refining?
Zone refining is based on the principle that impurities are more soluble in the molten state of a metal than in its solid state. This allows impurities to be concentrated in a molten zone that moves through the metal rod.
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