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Class 10 Science Chapter 4 - Carbon and its Compounds Complete Revision Notes

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This document provides comprehensive and well-structured study notes for Class 10 Science, Chapter 4: "Carbon and its Compounds." It details critical concepts such as covalent bonding in carbon, its versatile nature (catenation and tetravalency), allotropes of carbon (diamond and graphite), homologous series, functional groups, and IUPAC nomenclature. It also covers the chemical properties of carbon compounds, ethanol, ethanoic acid, and the cleansing action of soaps and detergents. Ideal for quick revision and maximizing scores in board exams.

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Class 10 Science — Chapter 4
Carbon and its Compounds (Complete Ultra-Detailed Revision Notes)

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SECTION 1: INTRODUCTION TO CARBON & COVALENT BONDING
====================================================================

* Occurrence of Carbon:
- Carbon is a versatile element found in very small amounts but holds immense importance.
- In the Earth's crust, it is present as minerals (0.02% like carbonates, coal, petroleum).
- In the atmosphere, it is present as Carbon Dioxide gas (0.03%).
- All living structures (plants, animals, humans) are carbon-based organic matter.

* Versatility of Carbon (Atomic Number = 6):
- Electronic Configuration of Carbon is 2, 4. It has 4 valence electrons.
- To attain a stable noble gas configuration, it needs to either gain 4 electrons or lose 4
electrons.
- Why Carbon cannot form C4+ or C4- ions?
1. It cannot gain 4 electrons (C4-) because it would be difficult for 6 protons in the nucleus
to hold 10 electrons.
2. It cannot lose 4 electrons (C4+) because it requires a huge amount of energy to remove

👉
4 electrons from the atom.
Solution: Carbon shares its valence electrons with other atoms.

* 🤝 Covalent Bond (सहसंयोजक बंध):
- The chemical bond formed by the sharing of electrons between two atoms is called a
Covalent Bond.
- Examples of Single Covalent Bonds: Hydrogen molecule (H₂), Water (H₂O), Ammonia
(NH₃), Methane (CH₄).
- Example of Double Covalent Bond: Oxygen molecule (O₂), Carbon Dioxide (CO₂).
- Example of Triple Covalent Bond: Nitrogen molecule (N₂).

* Properties of Covalent Compounds:
1. Low Melting and Boiling Points: Because the intermolecular forces between the
molecules are very weak.
2. Poor Conductors of Electricity: As electrons are shared, no charged particles or free ions
are formed to conduct current.

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SECTION 2: VERSATILE NATURE OF CARBON & HYDROCARBONS
====================================================================

Carbon forms millions of compounds due to two unique chemical properties:
1. Catenation (श्रख
ं ृ लन): Carbon has the unique ability to form strong covalent bonds with
other carbon atoms, giving rise to long straight chains, branched chains, or closed rings.
2. Tetravalency (चतःु संयोजकता): Since carbon has a valency of 4, it can bond with four other
carbon atoms or atoms of elements like Oxygen, Hydrogen, Nitrogen, and Sulphur.

, * HYDROCARBONS (यौगिक जो केवल कार्बन और हाइड्रोजन से बने हैं):
1. Saturated Hydrocarbons (संतप्ृ त - Alkanes): Contains only Single bonds between carbon
atoms.
- General Formula: CnH2n+2 (Examples: Methane CH₄, Ethane C₂H₆).
2. Unsaturated Hydrocarbons (असंतप्ृ त - Alkenes & Alkynes): Contains Double or Triple
bonds.
- Alkenes (Double bond): General Formula is CnH2n (Example: Ethene C₂H₄).
- Alkynes (Triple bond): General Formula is CnH2n-2 (Example: Ethyne C₂H₂).

* Allotropes of Carbon (कार्बन के विभिन्न रूप):
The same element existing in different physical forms with similar chemical properties.
1. Diamond: Three-dimensional rigid network. It is the hardest known natural substance.
Poor conductor.
2. Graphite: Layered, hexagonal structure. It is soft, slippery, and an excellent conductor of
electricity due to free electrons.
3. Fullerenes: Carbon atoms arranged in the shape of a football (Example: C-60).

====================================================================
SECTION 3: HOMOLOGOUS SERIES & NOMENCLATURE
====================================================================

* Homologous Series (समजातीय श्रेणी):
A series of carbon compounds having the same functional group, where successive
members differ by a "-CH₂-" group and 14 mass units.
- Example of Alkane Series: CH₄ (Methane), C₂H₆ (Ethane), C₃H₈ (Propane).
- Properties: Members show similar chemical properties, but physical properties (like
melting point) change gradually with increasing molecular mass.

* Functional Groups (प्रकार्यात्मक समह
ू ):
An atom or a group of atoms that decides the chemical properties of a carbon compound.
1. Alcohol: -OH (Suffix: -ol)
2. Aldehyde: -CHO (Suffix: -al)
3. Ketone: -CO- (Suffix: -one)
4. Carboxylic Acid: -COOH (Suffix: -oic acid)
5. Halogens: -Cl, -Br (Prefix: Chloro-, Bromo-)

====================================================================
SECTION 4: CHEMICAL PROPERTIES OF CARBON COMPOUNDS
====================================================================

1. Combustion (दहन):
- Burning carbon compounds in the presence of oxygen releases Carbon Dioxide, Water,

👉
Heat, and Light.
CH₄ + 2O₂ → CO₂ + 2H₂O + Heat + Light
- Saturated hydrocarbons burn with a clean blue flame. Unsaturated hydrocarbons burn
with a yellow smoky flame.

2. Oxidation (ऑक्सीकरण):

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