Chapter 6: Materials Around Us Class 6th Science (CURIOSITY) NCERT Solution

Materials Around Us — Chapter 6 Solutions
● Curiosity — Grade 6 Science  ·  Chapter 6

Materials Around Us

Complete, step-by-step solutions to every in-text question, activity and exercise in the chapter — explained clearly, with the original textbook figures.

17 In-text Q&A groups 10 Exercise Questions Word games Diagrams included
Part 1

In-text Questions & Activities

Every activity, “Do you know?” prompt and speech-bubble question that appears through the chapter, answered in the order it appears — grouped by the textbook’s own sub-sections.

6.1 Observing Objects Around Us

1Activity 6.1 — Let us identify: Make a list of objects around you and write the materials they are made up of (Table 6.1).
Sample Answer
I observeMaterial(s) they are made up of
PencilWood and graphite
Water bottlePlastic
School bagCloth (fabric) and plastic
Steel spoonMetal (steel)
NotebookPaper
Window paneGlass

This shows that everyday objects are made from many different materials such as wood, metal, plastic, paper, glass and cloth — and the same object can even use more than one material.

6.2 How to Group Materials?

2Activity 6.2 — Group the objects in Fig. 6.1 based on a common property (shape, colour, hardness, softness, shine, dullness or material).
Fig 6.1: Objects around us used for grouping activity
Fig. 6.1 — Objects around us (as given in the textbook)
Answer

The objects can be grouped in several valid ways, for example:

  • By material: metal (spoon, key, lock, pliers), wood (pencil, wooden stand), plastic (comb-like items), glass (glass bowl), paper (books, notebook)
  • By hardness: hard (stone, key, lock) vs soft (nothing very soft here, but a marble/ball is compressible compared to stone)
  • By lustre: shiny/lustrous (spoon, keys, lock, pliers) vs dull/non-lustrous (notebook, pencil, diya, stone)

Which property did you use? Any one of shape, colour, material or lustre can be used — students commonly use “material” or “shine” as it is the easiest to observe.

Did your friends group objects the same way? Not necessarily — different students often pick different properties, so their groupings look different even though the objects are the same.

What did you learn? The same set of objects can be classified in more than one way, depending on which property is chosen. This is the basic idea behind classification.

3Observe Fig. 6.4 (cones, cubes, prisms in different colours) and group the objects in as many ways as possible.
Answer

These shapes can be grouped:

  • By shape: all cubes together, all cones together, all triangular prisms together
  • By colour: all pink shapes together, all blue shapes together, all purple shapes together, all orange/yellow shapes together

This confirms that objects can be grouped either by their shape or by their colour — both are valid common properties.

6.3.1 — Choosing Materials for a Purpose

4Activity 6.3 — Fill in the materials that can be used to make a tumbler (Fig. 6.2).
Answer

A tumbler can be made using: Plastic, Steel (metal), Glass, and Clay (ceramic) — all of these materials are capable of holding water without letting it pass through.

5Would it be a good idea to use paper-like materials for making cooking utensils?
Answer

No. Paper-like materials catch fire easily, become weak and soggy on contact with water, and cannot withstand the heat used in cooking. Cooking utensils need materials like metal that can bear high temperatures without burning or breaking down.

6Why cannot a tumbler made of cloth be used for storing water?
Answer

Cloth is a porous material — it has tiny gaps between its fibres that let water soak through and leak out. Since it cannot hold water without letting it pass, cloth is unsuitable for making a tumbler.

7Activity 6.4 — Drop a tennis ball, cricket ball and hand exercise ball from the same height and record how high each bounces (Table 6.2).
Fig 6.3: Tennis ball, cricket ball and hand exercise ball
Fig. 6.3 — Different types of balls used for various purposes
Answer
BallBounce (high / medium / low)
Tennis ballMedium — has a rubber core with a felt cover
Cricket ballLow — hard leather cover over a cork centre, made for durability, not bounce
Hand exercise ball (rubber)High — solid rubber bounces back the most energy

Ball with the highest bounce: The rubber hand-exercise ball, because rubber is highly elastic and returns most of the energy of the fall.

8Can a cricket ball be used to play tennis?
Answer

No. A cricket ball is much harder and heavier than a tennis ball. It does not bounce the way a tennis game needs, and its hardness could injure players, so it is unsuitable for tennis.

9Why are different materials used for making balls for various sports?
Answer

Every sport needs a ball with specific properties — the right hardness, weight, bounce and grip — for fair play and player safety. Since no single material gives all sports the properties they need, different materials (rubber, leather+cork, synthetic fibre, etc.) are chosen to match each game.

6.3.1 Appearance of Materials — Lustrous & Non-lustrous

10Are all lustrous materials metals?
Answer

No. While most lustrous (shiny) materials are metals, some non-metal materials can also be made to shine by polishing them or coating them with a thin layer of plastic, wax, or paint. As the saying goes, “All that glitters is not gold” — shine alone does not confirm that a material is a metal.

Lustrous: iron, copper, gold, aluminium Non-lustrous: paper, wood, rubber, jute

6.3.2 Which Materials are Hard?

11Activity 6.5 — Hold the objects in Table 6.3, feel whether they are hard or soft, and identify their materials.
Answer
ObjectHard / SoftMaterial(s)
BrickHardBaked clay
Water bottleHardPlastic
PillowSoftCotton / foam with cloth cover
TumblerHardSteel / glass / plastic
TableHardWood / metal
SweaterSoftWool

Materials that can be compressed or scratched easily are soft; those that resist compressing or scratching are hard. These properties are relative — for example, rubber is harder than sponge but softer than iron.

6.3.3 Materials You Can (or Cannot) See Through

12Ghulan hides behind a wall, Sheeta behind a tree, Sara behind a frosted glass door, while Sheeta’s brother watches through a glass window. Why did Ghulan, Sheeta and Sara choose these places to hide?
Answer

They chose places made of opaque or translucent materials so that they could not be seen clearly. A wall and a tree trunk are opaque (nothing can be seen through them), while a frosted glass door is translucent (only a hazy outline is visible), so all three places offered good cover to hide behind.

13Would it be possible for Sheeta’s brother to see her and her friends through a closed wooden window of the house?
Answer

No. Wood is an opaque material — light cannot pass through it, so nothing on the other side can be seen. If the window were made of wood instead of glass, Sheeta’s brother would not have been able to see them at all.

14Look at Fig. 6.5 and identify/label the nature of the material used at points A (wall), B (tree), C (frosted glass door) and D (window glass).
Fig 6.5: Identify the nature of different materials - hide and seek scene
Fig. 6.5 — Identify the nature of different materials
Answer
A — Wall: Opaque B — Tree trunk: Opaque C — Frosted glass door: Translucent D — Window glass: Transparent
15Activity 6.6 — Classify glass tumbler, butter paper, eraser, frosted glass, wooden board and window glass as transparent, translucent or opaque (Table 6.4).
Objects for classification: glass tumbler, butter paper, eraser, frosted glass, wooden board, window glass
Objects to classify, as shown in the textbook
Answer
TransparentTranslucentOpaque
Glass tumbler, Window glassButter paper, Frosted glassEraser, Wooden board
16Is water transparent? Can it be made opaque?
Answer

Yes, clean water is transparent — objects can be seen clearly through it. However, it can be made translucent or opaque by mixing something into it, such as mud, ink, milk, or colour — this blocks or scatters light so objects can no longer be seen clearly (or at all) through it.

6.3.4 Soluble or Insoluble in Water?

17Activity 6.7 — Stir sugar, salt, chalk powder, sand and sawdust separately in water and record whether each disappears (Table 6.5).
Answer
MaterialObservationSoluble / Insoluble
SugarDisappears completely in waterSoluble
SaltDisappears completely in waterSoluble
Chalk powderDoes not disappear; settles at the bottom, water turns cloudyInsoluble
SandDoes not disappear; settles at the bottomInsoluble
SawdustDoes not disappear; floats on topInsoluble
Fig 6.6: Soluble and insoluble material in water
Fig. 6.6 — (a) Soluble material in water (clear) vs (b) Insoluble material in water (cloudy/settled)
18Do liquids like oil, vinegar and honey dissolve in water? Explore.
Answer

Vinegar and honey mix completely with water — they are soluble. Mustard/cooking oil does not mix with water; it forms a separate layer floating on top because it is insoluble (and lighter than water).

19What about the gases present in water?
Answer

Some gases, such as oxygen and carbon dioxide, dissolve in water. Dissolved oxygen is essential for fish and other aquatic organisms to breathe and survive underwater.

6.3.5 How Heavy or Light — Mass

20Activity 6.8 — Fill three identical cups half with water (A), sand (B) and pebbles (C). Predict, then weigh, which is heavier or lighter.
Answer

Prediction/typical result: Pebbles (C) are usually the heaviest, sand (B) comes next, and water (A) is generally the lightest for the same half-filled volume — because different materials packed into the same space have different masses.

This activity shows that even though all three cups occupy the same amount of space (are filled to the same level), they do not have the same mass. The heavier one has more mass; the lighter one has less mass.

6.3.6 Space and Volume

21Two identical glass tumblers are filled with water from two water bottles — one ends up half-filled, the other almost completely filled (Fig. 6.8). Why is the water level different in the two tumblers?
Fig 6.8: Half-filled and fully-filled glass tumblers
Fig. 6.8 — (a) Half-filled tumbler (b) Fully-filled tumbler
Answer

Both tumblers have the same capacity, but the two water bottles did not contain the same amount (volume) of water. Since the water in the first tumbler occupies less space than the water in the second, its volume is less — this is why the water levels differ even though the tumblers themselves are identical.

22“Why was I not able to transfer water from the jug into an empty water bottle completely?”
Answer

Because the volume of water in the jug was greater than the volume (capacity) the empty bottle could hold. Once the bottle was full, there was no more space left inside it, so the remaining water could not be poured in and spilled over instead.

6.4 What is Matter?

23Are there any properties which can be shown by all materials? If yes, what are those?
Answer

Yes. Every material occupies some space and has some mass — these two properties, mass and volume, are common to all materials. Anything possessing both of these properties is called matter.

24Is air matter? Can all the materials around us be considered as different examples of matter?
Answer

Yes, air is matter — although we cannot see it, it occupies space (it fills a balloon or a room) and it has mass. Similarly, every material around us — water, sand, pebbles, a cup, wood, or any object — occupies space and has mass, so all materials are examples of matter.

25Think it over: What changes did the invention of plastic bring to humans? Is it a boon or a bane?
Answer

As a boon: Plastic is light, strong, cheap, waterproof and easy to mould — it made packaging, medical equipment, electrical insulation, and countless everyday items more affordable and convenient.

As a bane: Most plastic is non-biodegradable — it stays in the environment for hundreds of years, pollutes land and water, and harms wildlife that ingest or get trapped in it.

Overall, plastic is a boon when used responsibly (reused, recycled, reduced) and a bane when used carelessly and discarded — so the answer depends on how wisely we use and dispose of it.

Part 2

Let us Enhance our Learning

Complete solutions to all 10 exercise questions at the end of the chapter.

Q1Visit your kitchen and observe how your parents have organised various edibles. Can you suggest a better sorting method?
Answer

In most kitchens, edibles are organised by type — spices in small jars together, pulses and grains in larger containers, and liquids like oil separately. A better sorting method could be to group items by:

  • Frequency of use — daily-use items (salt, sugar, tea) kept within easy reach, occasional items stored higher up or further back
  • Container material — using transparent jars for grains/pulses so contents are visible at a glance, and airtight opaque containers for items that spoil in light (like spices)
  • Perishability — separating perishable items (needing refrigeration) from non-perishable dry goods
Q2Unscramble the letters in Column I and match with their properties in Column II.
Answer
ScrambledUnscrambled wordMatches with
T R E M A TMATTER(b) Occupies space and has mass
U L S B E L OSOLUBLE(d) Mixes completely in water
T N E R P A S N A R TTRANSPARENT(a) Objects can be seen clearly through it
E R U S T LLUSTRE(c) Shiny surface
Q3The containers used to store materials in shops and at home are usually transparent. Give your reasons for this.
Answer

Transparent containers let the contents be seen clearly from outside without opening them. This makes it easy to:

  • Identify what is stored inside quickly
  • Check how much of the item is left (quantity remaining)
  • Check the quality or freshness of the item (colour, spoilage, presence of insects, etc.)
  • Attractively display the product to customers in shops
Q4State whether the following statements are True [T] or False [F]. Correct the false statements.
Answer
StatementT / FCorrection (if false)
(i) Wood is translucent while glass is opaque.FalseWood is opaque while glass is transparent.
(ii) Aluminium foil has lustre while an eraser does not.True
(iii) Sugar dissolves in water whereas sawdust does not.True
(iv) An apple is a matter because it occupies no space and has mass.FalseAn apple is matter because it occupies space and has mass (not “no space”).
Q5Which materials used to make chairs (wood, iron, plastic, bamboo, cement, stones) best fulfil each desirable property?
Answer
Desired propertyBest-suited materialWhy
(i) Hardness — doesn’t bend/shake with useIron / WoodBoth are rigid and strong enough to bear weight without deforming
(ii) Lightweight — easy to lift and movePlastic / BambooBoth have much lower mass than iron, cement or stone for the same size
(iii) Doesn’t feel very cold in winterWood / BambooWood conducts heat away from the body slowly, so it feels warmer to touch than metal or stone
(iv) Cleaned regularly & looks newPlasticPlastic is smooth, waterproof and does not rust, so it wipes clean easily
Q6You need containers to collect (i) food waste, (ii) broken glass, and (iii) wastepaper. Which materials will you choose, and what properties matter?
Answer
Waste typeSuggested container materialKey property needed
(i) Food wastePlastic or metal bin (with lid)Waterproof, non-absorbent, easy to clean, resists moisture/odour
(ii) Broken glassThick cardboard box or metal containerHard and puncture-resistant, so sharp glass pieces cannot pierce through it
(iii) WastepaperCardboard box or plastic binJust needs to be lightweight and roomy — waterproofing is not essential

The main properties to consider are: hardness/strength (to resist sharp objects), water-resistance (for wet or moist waste), and ease of cleaning.

Q7Air is all around us but does not hinder us from seeing each other. A wooden door blocks our view completely. So air is ______ and the wooden door is ______. Choose the correct option.
(ii) translucent, transparent
(iii) opaque, translucent
(iv) transparent, translucent
✓ (i) transparent, opaque — Correct Answer
Explanation

Air lets us see clearly through it, so it is transparent. A wooden door does not let any light pass through, so nothing can be seen through it — making wood opaque.

Q8Material X feels rigid and does not change shape easily; material Y easily changes shape when pressed. In water, only X dissolves completely while Y remains unchanged. What could X and Y be? Are they hard or soft?
Answer

Material X: Hard and soluble in water — for example, common salt or sugar. It resists being compressed (hard) but dissolves completely when mixed in water (soluble).

Material Y: Soft and insoluble in water — for example, a sponge or rubber ball. It changes shape easily when pressed (soft), but does not dissolve or disappear when placed in water (insoluble).

Justification: Hardness/softness depends on how easily a material can be compressed or scratched, while solubility depends on whether a material mixes completely with water — these are two independent properties, and X and Y show opposite behaviour on both counts.

Q9(i) “Who am I?” — Identify the material based on the given properties.
Answer
ClueWho am I?
(a) I have lustre.A metal — e.g., iron, copper or aluminium
(b) I can be easily compressed.A soft material — e.g., sponge or cotton
(c) I am hard and soluble in water.Sugar or common salt
(d) You cannot see clearly through me.An opaque material — e.g., wood or cardboard
(e) I have mass and volume, but you cannot see me.Air (a gas — it’s matter, but invisible)

(ii) Make your own “Who am I?”: Example — “I am transparent, I am liquid at room temperature, and many materials dissolve in me. Who am I?” (Answer: Water)

Q10Using vinegar, honey, mustard oil, water, glucose and wheat flour — make two pairs where one material is soluble in the other, and two pairs where one remains insoluble.
Answer
TypePairObservation
Soluble pair 1Glucose + WaterGlucose dissolves completely in water
Soluble pair 2Honey + WaterHoney mixes completely with water
Insoluble pair 1Mustard oil + WaterOil does not mix; forms a separate floating layer
Insoluble pair 2Wheat flour + WaterFlour does not dissolve; remains suspended/settles at the bottom

(Vinegar is also soluble in water and could replace glucose or honey in the soluble pair.)

Part 3

Let Us Play

The two fun activities from the chapter, along with how to play and sample answers.

1Find the Companion — link the words that have a connection: Iron, Transparent, Copper, Solid, Bottle, Plastic, Lustrous, Wood, Opaque, Glass.
Sample Answer
Iron → Lustrous Copper → Lustrous Glass → Transparent Wood → Opaque Bottle → Plastic / Glass Solid → Iron, Copper, Wood, Glass, Plastic

Reasoning: Iron and copper are shiny metals, so they link to “Lustrous.” Glass lets us see through it, so it links to “Transparent.” Wood does not, so it links to “Opaque.” A bottle can be made of plastic or glass. And since iron, copper, wood, glass and plastic all keep a fixed shape at room temperature, they can all be linked to “Solid.”

2Win the ‘Word-hub’ — a classroom bingo-style game using chapter keywords.
How to play
  • Each student randomly picks 9 words from: lustrous, non-lustrous, soluble, insoluble, hard, soft, matter, mass, transparent, opaque, volume, translucent — and writes them in a 3×3 grid.
  • The facilitator calls out a word or reads its definition, one at a time, in random order.
  • Students tick the word in their grid if they have it.
  • The first student to tick off all 9 correctly-marked words shouts “Hurray!” and wins.

This is a classroom activity without a fixed “answer” — it works as a fun way to revise the chapter’s keywords and their meanings.

Prepared as a complete study companion for NCERT Curiosity — Grade 6 Science, Chapter 6: Materials Around Us.

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