Every card in Particles and states of matter
The whole deck, in order — so you can read it through before your child ever sees it.
- In a solid, how are the particles arranged?
Closely packed in a fixed, regular pattern
HintThey are locked in place and cannot swap positions, only vibrate.
WhyBecause the particles are held in a fixed lattice and can only vibrate, a solid keeps its own shape and cannot be compressed.
- In a gas, how do the particles move?
Quickly and randomly in all directions
HintWith almost nothing holding them, they fly about and fill any space.
WhyGas particles have lots of energy and are widely spaced, so a gas has no fixed shape or volume and can be squashed into a smaller space.
- What is the change of state from a solid to a liquid called?
Melting
HintIt is what ice does on a warm day.
WhyHeating gives the particles enough energy to break out of their fixed pattern, so the solid structure gives way and it flows as a liquid.
- What happens to the temperature of a pure substance while it is freezing?
It stays constant
HintEnergy is being given out as the structure locks together, so the reading holds still.
WhyDuring freezing the energy released as particles lock into place keeps the temperature fixed until all the liquid has solidified.
- Which change of state happens throughout a liquid at one fixed temperature?
Boiling
HintIt is the one that makes bubbles rise from the bottom of the pan.
WhyEvaporation happens only at the surface and at any temperature; boiling happens all through the liquid at its fixed boiling point.
- Evaporation takes place from which part of a liquid?
The surface
HintOnly the topmost particles, in contact with the air, can escape.
WhyAt the surface, the fastest particles can escape into the air. This can happen at any temperature, which is why a puddle dries up without boiling.
- What is the spreading of particles from a crowded area to a less crowded one called?
Diffusion
HintIt is how the smell of baking travels across a room with no fan.
WhyParticles in liquids and gases move randomly, so over time they spread out evenly from where they are concentrated — no stirring required.
- What causes a gas to push on the walls of its container?
Particles colliding with the walls
HintBillions of tiny moving bits keep bumping the sides.
WhyEach collision gives a tiny push. Countless particles hitting the walls every second add up to the steady outward pressure of the gas.
- When sugar dissolves in tea, where do its particles go?
Into the gaps between the water particles
HintThe sugar is still there after it dissolves — so where could it be hiding out of sight?
WhyThe sugar particles spread out and hide in the gaps between the solvent particles, so the solution looks clear even though the sugar is still there.
- When salt dissolves in water, the total mass stays exactly the ____.
same
HintNo particles are lost, so nothing is added to or taken from the reading on the balance.
WhyDissolving does not destroy any particles — they are all still present, just spread out — so the mass of the solution equals the salt plus the water.
- In chemistry, what does it mean for a substance to be pure?
It is made of only one type of particle
HintNothing else is mixed in — a single kind throughout.
WhyIn everyday speech 'pure' can mean 'natural', but in chemistry it strictly means one substance only — one kind of particle, with nothing else present.
- On a heating curve, what is the substance doing while the temperature stays flat?
Changing state
HintThe energy is busy rearranging particles, not making them hotter.
WhyDuring melting or boiling the energy supplied breaks the forces between particles rather than raising the temperature, so the graph levels off.
1★ KS3-CHEM-PAR-0001
2★ KS3-CHEM-PAR-0002
3★ KS3-CHEM-PAR-0003
4★ KS3-CHEM-PAR-0004
5★ KS3-CHEM-PAR-0005
6★ KS3-CHEM-PAR-0006
7★ KS3-CHEM-PAR-0007
8★ KS3-CHEM-PAR-0008
9★ KS3-CHEM-PAR-0009
10★ KS3-CHEM-PAR-0010
11★ KS3-CHEM-PAR-0011
12★ KS3-CHEM-PAR-0012
Keep what you learn
Here, nothing is saved. In your child’s own sky every card is scheduled — it comes back just before they’d forget it — and the professor who wrote it is one tap away.