Every card in Salters' practical toolkit
The whole deck, in order — so you can read it through before your child ever sees it.
- Sand is stirred into water and the muddy mixture is poured through filter paper in a funnel. What is the clear liquid that runs through into the beaker called?
The filtrate
HintThe paper traps the gritty bits; this is the name for whatever got past it.
WhyTwo words, one for each half of the split: what the paper holds back is the residue, what passes through is the filtrate. Filtering works because sand grains are far bigger than the gaps in the paper, while water molecules slip straight through — so it separates an INSOLUBLE solid from a liquid and nothing else. Rinse the residue with a little clean water before drying it, or the trapped liquid dries onto it and spoils the mass.
- The technique that separates a mixture of coloured dyes as a solvent creeps up paper
Chromatography
HintA single spot of black ink on damp paper opens out into a row of separate colours.
WhyA pencil line is drawn near the bottom of the paper (pencil, because ink would run and join in), a spot of the mixture goes on the line, and the paper stands in a shallow solvent that must start BELOW the line. Each dye is carried a different distance, so a mixture of four dyes gives four spots. It is how an analytical challenge shows that a "pure" colour was really a blend — and how two samples can be matched by comparing how far each spot travelled.
- The technique that boils a solution and cools the vapour back into a pure liquid
Distillation
HintHow a ship at sea turns seawater into something the crew can drink.
WhyIt collects the SOLVENT, not the dissolved solid: boil salty water, cool the steam in a condenser, and pure water drips out while the salt stays behind in the flask.
- A liquid's volume is read from a measuring ____, a solid's mass is read from a ____, and how hot something is comes from a ____.
cylinder; balance; thermometer
HintThree jobs, three instruments — and none of them is a beaker, whose printed marks are only a rough guide.
WhyEach instrument answers one question, and the marks on a beaker answer none of them properly — they are moulded in for guidance, not for measuring. Read a liquid level with your eye level with the meniscus, taking the reading from the BOTTOM of the curve. Zero a balance with the empty container on it before adding the solid, so you weigh the solid and not the pot. Let a thermometer settle before reading, and leave it in the liquid while you read it.
- A team is handed two colourless liquids and told one is pure water. Which single measurement, taken with a thermometer while heating, settles which is which?
Its boiling point
HintA pure substance changes state at one sharp fixed temperature; a mixture drifts over a spread of them.
WhyPure water turns to steam at 100 °C at normal pressure and stays there until it has all gone. Dissolve something in it and the liquid boils higher, and over a range rather than at a fixed value — so salty water boils above 100 °C. The same trick works downwards: pure water freezes at 0 °C, salty water below it, which is why grit is spread on roads. Looking at the liquid tells you nothing at all, because a salt solution is every bit as clear as water.
- Salt dissolves in water. The salt is called the solute; what is the water called? (one word)
solvent
HintIt does the dissolving, and the solute is the thing that seems to vanish into it.
WhySolute + solvent = solution, and the three words are worth keeping straight because a challenge question will use them instead of naming the substances. Water is the everyday one, but it is not the only one: nail-varnish remover and the liquid at the bottom of a chromatography tank are doing the same job. A substance that dissolves is soluble; one that does not, like sand, is insoluble — which is exactly why sand can be filtered out and salt cannot.
- A team keeps stirring sugar into a beaker of water, but past a certain point no more will dissolve however hard they stir. What word describes the solution now?
Saturated
HintThe water is holding all it can at this temperature — there is one word for a solution sitting at its limit.
WhyEvery solvent has a limit, and that limit is called the solubility — usually quoted as grams that will dissolve in 100 g of water at a stated temperature. Warm the water and most solids dissolve more, so a solution that was full at room temperature will take more sugar at 60 °C. Cool it back down and the extra can no longer stay in, so it comes out as crystals — which is how a chemist grows crystals on purpose.
- Salt stirred into water disappears, yet evaporating the water brings every grain back unchanged, so dissolving is a ____ change.
physical
HintNo new substance was made and the change can be undone — the opposite of a chemical one.
WhyThe test is whether a NEW substance has appeared. Dissolving, melting, boiling and mixing make none, and each can be reversed, so all four are of this kind. Burning, rusting and fizzing an acid onto a carbonate make new substances that cannot simply be un-made, so those are chemical. It is why "the salt disappeared" is a poor observation and "the salt dissolved" is a good one — nothing was destroyed, only spread out among the water.
- A Bunsen burner is standing on the bench between heatings with its air hole closed, burning yellow and wavering. What is this flame called?
The safety flame
HintWhy leave a burner yellow and easy to spot when nobody is heating anything?
WhyAir hole closed gives a yellow, luminous, wavering flame that is cool and, above all, visible — so nobody puts a hand through it. Air hole open gives a blue roaring flame with a pale inner cone; that is the one that heats, and the hottest part is just above the tip of the inner cone. Turn the collar to close the hole the moment you stop heating, and light the burner with the hole closed so it does not strike back down the tube.
- A bottle on the bench carries a hazard symbol showing liquid eating into a hand and into a bench top. One word: what does that symbol warn you the contents are?
Corrosive
HintThink what a strong acid does to skin, to cloth and to the wood it is spilled on.
WhyIt means the liquid attacks living tissue and materials on contact, so it goes nowhere near skin or eyes — goggles on before the stopper comes off, and wash any splash off at once with plenty of water. Do not confuse it with the exclamation-mark symbol, which means irritant: unpleasant, but far less serious.
- Two colourless solutions look identical. A small strip of magnesium is dropped into each; one stays still, the other fizzes steadily. What does the fizzing one contain?
An acid
HintMetals bubble in only one of the two families of solution, and it is not the family that feels soapy.
WhyMetal + acid gives a salt and hydrogen, and the hydrogen is what you see streaming off the ribbon. The more reactive the metal, the harder it fizzes, so magnesium is lively where copper does nothing at all — copper sits below hydrogen in the reactivity series and will not push it out. This is the sort of "which is which?" job an identification challenge is built from: pick a test whose two possible outcomes look completely different.
- A white powder is tipped into a colourless liquid and bubbles stream steadily off it while the beaker stays cool. Those bubbles are a sign that a ____ is being made.
gas
HintSomething is leaving the mixture and rising through the liquid — and the beaker never got hot enough to boil.
WhyThe signs that a chemical reaction has happened are worth knowing as observations, not as a list to recite: bubbles where nothing is boiling, a colour change, a solid appearing from two clear liquids, and the beaker warming or cooling in your hand. Write down what you actually saw and when — "steady bubbles for about ten seconds, beaker stayed cool" is a usable record, while "it went a bit funny" is not.
1★ KS3-CHEM-SAL-0001
2★ KS3-CHEM-SAL-0002
3★ KS3-CHEM-SAL-0003
4★ KS3-CHEM-SAL-0004
5★ KS3-CHEM-SAL-0005
6★ KS3-CHEM-SAL-0006
7★ KS3-CHEM-SAL-0007
8★ KS3-CHEM-SAL-0008
9★ KS3-CHEM-SAL-0009
10★ KS3-CHEM-SAL-0010
11★ KS3-CHEM-SAL-0011
12★ KS3-CHEM-SAL-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.