Chapter 7 • Class 8 Science
⚗️ Particulate Nature of Matter
Curiosity — Textbook of Science for Grade 8
📋 Table of Contents
🔬
7.1 What Is Matter Composed Of?
Fig: Chalk → powder
still chalk!
still chalk!
Break chalk → grind → still chalk! Sugar dissolves in water — you can't see it but you can taste it. What does this tell us?
- All matter is made of extremely small particles
- These particles are too small to see even with a microscope!
- Sugar breaks into particles → occupies spaces between water particles
📌 Key Definitions
Constituent Particle = The basic unit that makes up a substance/material (cannot be broken further by physical means).
Interparticle Spaces = The spaces (gaps) that exist between particles of matter. Sugar particles fit into spaces between water particles when dissolved!
Interparticle Spaces = The spaces (gaps) that exist between particles of matter. Sugar particles fit into spaces between water particles when dissolved!
🏛️
Acharya Kanad — India's Ancient Genius!
Ancient Indian philosopher Acharya Kanad first proposed the idea of Parmanu (atom) — tiny, indivisible, eternal particles that make up matter. Written in his work Vaisheshika Sutras. 🇮🇳✨
Fig: Dissolving sugar
in water
in water
When sugar dissolves in water, the water remains sweet throughout even in the top layer. Why?
- Sugar breaks into constituent particles
- Particles occupy interparticle spaces between water particles
- Particles are present everywhere → top tastes sweet too!
- This is why ocean water tastes salty even though we can't see salt
📌 Interparticle Attraction
Constituent particles are held together by attractive forces called interparticle attractions. The strength of these forces determines the physical state of a substance (solid/liquid/gas).
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🧱
7.2.1 Solid State
Fig: Solid objects —
nail, salt, stone, wood
nail, salt, stone, wood
- Particles tightly packed in fixed positions
- Interparticle attraction MAXIMUM 💪
- Particles only vibrate — cannot move past each other
- Definite shape AND volume
- Cannot be compressed easily
- Interparticle space is minimum
Fig: Solid → vibration
increases → Liquid
increases → Liquid
What happens when a solid is heated?
- Particles vibrate more vigorously
- Vibrations become so strong → particles leave fixed positions
- Interparticle attraction weakens → solid becomes liquid!
📌 Key Definition
Melting Point = The minimum temperature at which a solid melts to become a liquid at atmospheric pressure.
Ice = 0°C | Urea = 133°C | Iron = 1538°C
Ice = 0°C | Urea = 133°C | Iron = 1538°C
| Material | Melting Point | Why? |
|---|---|---|
| 🧊 Ice | 0°C | Weak interparticle forces |
| 🧪 Urea | 133°C | Moderate forces |
| 🔩 Iron | 1538°C | Very strong interparticle forces |
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💧
7.2.2 Liquid State
Fig: Water takes shape
of any container!
of any container!
- Particles loosely packed — free to move
- Interparticle attraction slightly weaker than solids
- NO fixed shape — takes shape of container
- Definite volume — 200 mL stays 200 mL in any container!
- Particles move within limited space
- Liquids and gases = Fluids (both flow!)
Fig: Finger moves
through water easily
through water easily
You can move your finger through water but NOT through a solid. Why?
- Liquid particles are free to move → they temporarily separate for the finger
- As finger moves out → particles return → no permanent cut
- This proves liquid interparticle forces are weaker than in solids
📌 Key Definition
Boiling Point = The temperature at which a liquid boils and turns into vapour at atmospheric pressure.
Evaporation = Slow vapour formation at ALL temperatures (only at surface). Happens even below boiling point!
Evaporation = Slow vapour formation at ALL temperatures (only at surface). Happens even below boiling point!
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💨
7.2.3 Gaseous State
- Particles completely free to move in all directions
- Interparticle attraction is negligible (nearly zero)
- NO fixed shape AND NO fixed volume
- Gas fills up the entire available space
- Interparticle spacing is MAXIMUM
- Gases are easily compressible (unlike liquids and solids)
💡
Smoke Experiment Proves It!
Fill smoke in jar A → place jar B on top → remove glass plate → smoke fills ENTIRE jar B! Gas particles move freely and occupy all available space. 🫙→🌫️
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📐
7.3 Interparticle Spacing in Three States
Fig: Air compresses
in syringe!
in syringe!
Syringe experiment proves gases are compressible:
- Block syringe opening → push plunger → air compresses!
- Gas particles are far apart → can be pushed together
- Release plunger → gas expands back
- Try with water → water is incompressible!
Fig: Sugar dissolves →
water level drops!
water level drops!
Sugar + Water → after dissolving, water level is BELOW original mark!
- Sugar particles fit into spaces between water particles
- Volume of solution < Volume of water + Volume of sugar
- Proves: there ARE spaces between liquid particles!
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🌀
7.4 How Particles Move in Different States
Fig: Fragrance spreads
in whole room!
in whole room!
Drop potassium permanganate in water → pink colour spreads throughout! 🩷 Burn incense → fragrance fills entire room! Why?
- Particles of matter are in constant motion
- They spread out on their own — called Diffusion
- Hot water → KMnO₄ spreads fastest
- Room temp water → spreads slower
- Ice cold water → spreads slowest
- More heat = faster particle movement!
📌 Key Concept
The movement of particles increases with increase in temperature (heat energy).
Thermal energy determines how fast particles move → which determines the physical state of matter!
Thermal energy determines how fast particles move → which determines the physical state of matter!
🧼
Why Does Soap Clean Oil?
Soap particles have two ends: one attaches to oil, other mixes with water. Soap particles surround oil particles on fabric and help lift the oil away. The particulate nature of matter at work! 🫧
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📊
States of Matter — Full Comparison
🧱
SOLID
- ✅ Fixed shape
- ✅ Fixed volume
- 🔒 Particles tightly packed
- 💪 Max attraction
- 📦 Min spacing
- 🔄 Only vibrate
- ❌ Incompressible
💧
LIQUID
- ❌ No fixed shape
- ✅ Fixed volume
- 🔓 Loosely packed
- ↕️ Weaker attraction
- 📐 More spacing
- 🏃 Move (limited)
- ❌ Incompressible
💨
GAS
- ❌ No fixed shape
- ❌ No fixed volume
- 🆓 Completely free
- ≈0 Negligible
- 🌌 Max spacing
- 🚀 Move freely
- ✅ Compressible
Fig: Particle arrangement in Solid, Liquid & Gas
| Property | 🧱 Solid | 💧 Liquid | 💨 Gas |
|---|---|---|---|
| Shape | Fixed ✅ | Not fixed ❌ | Not fixed ❌ |
| Volume | Fixed ✅ | Fixed ✅ | Not fixed ❌ |
| Interparticle Space | Minimum | Medium | Maximum |
| Attraction | Maximum 💪 | Medium | Negligible ≈0 |
| Movement | Only vibrate | Limited | Freely everywhere |
| Compressibility | ❌ No | ❌ No | ✅ Yes |
🔮
Thermal Energy = Key to States!
It is the thermal (heat) energy of particles that determines the physical state of matter. More heat → faster particles → weaker attraction → changes state from solid → liquid → gas!
⚛️
What are constituent particles made of?
The tiny constituent particles of matter are atoms and molecules. Iron → iron atoms. Water → H₂O molecules (2 hydrogen + 1 oxygen atoms). You'll learn more in higher grades!
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📸 Quick Revision Snapshots
⚗️Matter is made of extremely small constituent particles that cannot be seen even through ordinary microscopes.
🔗Particles are held by interparticle attractive forces. Strength of forces determines the physical state.
🧱Solid = tightly packed, max attraction, fixed shape & volume, only vibrate, min spacing.
💧Liquid = loosely packed, weaker attraction, no fixed shape but fixed volume, moves in limited space.
💨Gas = negligible attraction, no fixed shape or volume, max spacing, moves freely everywhere. Compressible!
🌡️Melting point = solid → liquid. Boiling point = liquid → gas. Evaporation = slow conversion at all temperatures.
🌀Particles are in constant motion. More heat = faster movement. Gas particles spread fastest (diffusion).
💦Sugar dissolves in water → fits into interparticle spaces. Water level drops after dissolving = proves spaces exist!
✨ Notes by @edugrown — Happy Learning! ✨