Every card in Particles and states of matter, Year 7: more practice
The whole deck, in order — so you can read it through before your child ever sees it.
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- A gas in a syringe can be squashed into a much smaller space, but a liquid in a syringe hardly shrinks at all. What is different about the particles of a gas?
They are far apart, so there is lots of empty space to squeeze into
HintThink about the gaps between neighbouring particles.
WhyGas particles are spread out with large gaps between them, so pushing the plunger just moves them closer. Liquid particles are already touching, so there is almost no gap left to close.
- Salt is stirred into water until it disappears. Why does pouring this mixture through filter paper not separate the salt from the water?
The salt particles are dissolved and small enough to pass through the holes in the paper
HintCompare the size of the gaps in the filter with the size of a single grain of the solid once it has broken up.
WhyFiltering only holds back solid pieces too big to fit through the paper. Dissolved salt has been broken up into particles far smaller than the holes, so it runs straight through with the water.
- What happens to the particles of a solid as it melts?
They gain enough energy to break out of their fixed positions and slide past each other
HintNothing about the pieces changes; the pattern is what changes.
WhyIn a solid the particles vibrate in fixed places. Heating gives them more energy until the pattern gives way and they can move around, which is what makes it a liquid.
- Bubbles rise all through a pan of boiling water. What are they full of?
Water vapour (water in its gas state)
HintThey form inside the liquid itself, not from anything added to it.
WhyAt the boiling point, water particles throughout the liquid have enough energy to become gas. They collect as bubbles of vapour that rise to the surface and escape.
- A smell spreads through the air and a drop of ink spreads through water. Which diffuses faster, and why?
The smell in air, because gas particles are far apart and move faster
HintCompare how freely a gas and a liquid let things travel through them.
WhyGas particles have lots of space and little in their way, so they spread quickly. Liquid particles are packed together and keep bumping into each other, so diffusion is much slower.
- A sealed metal can of air is heated gently. What happens to the pressure of the gas inside?
It increases
HintThink about how the energy of the particles changes when they are heated.
WhyHeated particles move faster, so they hit the walls harder and more often. More force on the walls from the same space means higher pressure.
- Why can you see straight through a solution of salt in water?
The dissolved particles are too small to block or scatter the light
HintThink about what has happened to the salt crystals.
WhyDissolving breaks the salt into particles far too small to see, spread evenly through the water. A solution may be coloured, but it is always see-through, unlike a cloudy suspension.
- A carton says "100% pure orange juice". Why is it not pure to a chemist?
It contains many different substances mixed together
HintThink about everything that is found in the water in juice.
WhyJuice holds water, sugars, acids and flavour chemicals. In everyday language pure can mean nothing added, but in chemistry it means one type of particle only.
- 50 g of sugar is stirred into 200 g of water until it all dissolves. What is the mass of the sugar solution in grams? (number only)
250
HintNothing has been added or taken away during dissolving.
Why50 + 200 = 250 g. The sugar is still there in the solution, so the total mass is the sum of the two masses.
- Salt vanishes from view when it dissolves in water. Why has no mass been lost?
The salt particles are all still there, just spread out among the water particles
HintOut of sight does not mean gone.
WhyDissolving only separates the particles and mixes them in. Because every particle is still in the beaker, the total mass is exactly what it was before.
1★ KS3-CHEM-PAR-0023
2★ KS3-CHEM-PAR-0024
3★ KS3-CHEM-PAR-0025
4★ KS3-CHEM-PAR-0026
5★ KS3-CHEM-PAR-0027
6★ KS3-CHEM-PAR-0028
7★ KS3-CHEM-PAR-0029
8★ KS3-CHEM-PAR-0030
9★ KS3-CHEM-PAR-0031
10★ KS3-CHEM-PAR-0032
Keep what you learn
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