Every card in Chemistry challenge toolkit
The whole deck, in order — so you can read it through before your child ever sees it.
- Of lithium, sodium and potassium, which reacts most violently with water?
Potassium
HintThink about where each of the three sits in its column — and which way the trend runs.
WhyAll three alkali metals fizz on water, giving off hydrogen and leaving a metal hydroxide — an alkali, which is where the family name comes from. Lithium fizzes, sodium melts into a darting ball, potassium bursts into a lilac flame. Down group 1 the metals get more reactive, softer and lower-melting. The halogens in group 7 run the other way: fluorine is the most reactive, iodine the least.
- What is the chemical symbol for sodium? (type the symbol)
Na
HintNot S — that is sulfur. The symbol comes from the Latin name of the metal, not the English one.
WhyNa comes from the Latin natrium, just as potassium is K (kalium), iron is Fe (ferrum), copper is Cu (cuprum), silver is Ag (argentum), gold is Au (aurum), lead is Pb (plumbum) and tin is Sn (stannum). Quiz rounds lean on exactly these mismatches. Everything else in the first twenty elements is the first letter, or the first letter plus another letter from the English name (Mg, Cl, Si, Ca) — and a two-letter symbol always has a small second letter.
- The family of non-metals in group 7: fluorine, chlorine, bromine and iodine
The halogens
HintChlorine in a swimming pool and iodine on a cut are both members.
WhyGoing down group 7 the members get LESS reactive — the opposite of group 1 — and their state changes: chlorine is a green gas, bromine a red-brown liquid, iodine a grey solid that gives off a purple vapour. Bromine is the only non-metallic element that is liquid at room temperature (mercury is the liquid metal), a pair every quiz-setter knows. Each halogen reacts with sodium to make a salt such as sodium chloride.
- The unreactive group 0 family — helium, neon, argon — found as single atoms
The noble gases
HintHelium balloons and argon-filled light bulbs are chosen because nothing happens.
WhyUnreactive is the fact to hold: helium fills balloons safely, argon fills light bulbs so the filament does not burn away, neon glows in signs. Because they are very unreactive, they usually exist as single atoms rather than molecules — unlike oxygen (O2) or nitrogen (N2). Group 0 is the one column with no metals and no reactive elements at all.
- A particle diagram shows several identical particles, each made of two different kinds of atom joined together. Is the substance an element, a compound or a mixture?
A compound
HintMore than one kind of atom, but joined — and every particle is the same.
WhyRead a particle diagram in two steps, the way Curie does. First: one kind of atom (an element) or more than one? Second: are the atoms bonded into identical particles (a compound) or just jumbled together (a mixture)? A mixture can be pulled apart by physical means — filtering, evaporating, distilling, chromatography — while a compound needs a chemical reaction to take it apart, and its properties are nothing like the elements that made it.
- In a chemical formula such as Ca(OH)2, what does a small number written after a bracket apply to?
Everything inside the bracket
HintCompare it with the small 2 in H2O, which belongs to one symbol only.
WhyA small number applies only to the symbol immediately before it; a number after a bracket multiplies the whole bracket. So Ca(OH)2 is one calcium, two oxygen and two hydrogen — five atoms — while CaOH2 would mean something different. Counting atoms this way is what "is this equation balanced?" questions really test: the same atoms must be counted on both sides of the arrow.
- Magnesium is burned in a crucible and the white ash weighs MORE than the metal did. Where did the extra mass come from?
Oxygen from the air
HintNothing was created — the metal captured something out of the surroundings.
WhyAtoms are never made or destroyed in a reaction, only rearranged, so the mass of everything that went in equals the mass of everything that came out. magnesium + oxygen → magnesium oxide: the oxygen was not on the balance at the start, so the solid seems to gain. Heat a metal carbonate and the opposite happens — carbon dioxide escapes, so the solid seems to lose. Ask "which gas came in or went out?" and the mass puzzle solves itself.
- An iron nail left in blue copper sulfate solution turns brown as the blue fades: iron has taken copper’s place in the compound — a ____ reaction.
displacement
HintAsk what happened to the copper — the reaction is named after it.
WhyIron sits above copper in the reactivity series, so it takes the sulfate and turns copper out as a brown solid: iron + copper sulfate → iron sulfate + copper. A metal can only displace one BELOW it.
- Every neutralisation follows one pattern: acid + alkali → ____ + water.
salt
HintThe crystals left behind when the water is evaporated off — sodium chloride is the everyday example.
WhyHydrochloric acid + sodium hydroxide → sodium chloride + water. The salt takes its first name from the metal in the alkali and its surname from the acid: hydrochloric acid makes chlorides, sulfuric acid makes sulfates, nitric acid makes nitrates. So "which salt forms from potassium hydroxide and nitric acid?" wants potassium nitrate. In chemistry a salt is any compound made this way — table salt is just the famous one.
- On the pH scale, a solution below 7 is ____, exactly 7 is ____ and above 7 is ____.
acidic; neutral; alkaline
HintLemon juice, pure water and oven cleaner sit in three different places on the scale.
WhypH runs from 0 to 14, with the most acidic at 0 and the most alkaline at 14 — so pH 2 is MORE acidic than pH 6, not less. Universal indicator paints the bands: red and orange for acids, green for neutral, blue and purple for alkalis; litmus only says acid (red) or alkali (blue). Lemon juice is about pH 2, milk about 6, bicarbonate of soda about 9 — the everyday values quiz-setters reach for.
- A lit splint held at the mouth of a test tube gives a squeaky pop. Which gas was in the tube? (one word)
Hydrogen
HintThe lightest gas of all — the one that fizzes off when a metal meets an acid.
WhyThree tests, three results: hydrogen burns with a squeaky pop; oxygen relights a glowing splint; carbon dioxide turns limewater milky. Chlorine bleaches damp blue litmus paper. Quiz heats ask them in every direction — "which test?", "which gas?", "which result?" — so learn each as a pair. The pop is a tiny explosion: hydrogen + oxygen → water.
- Ice is heated steadily, yet the thermometer stops rising for several minutes at 0 °C while the heating continues. What is happening to the substance?
Melting
HintAll the energy is going into loosening the particles apart, not into making them move faster.
WhyThe flat stretch on a heating curve is a change of state: the energy arriving is spent pulling particles free of their neighbours, so it cannot raise the temperature until the change is complete. A second flat comes at 100 °C for boiling. A pure substance gives sharp plateaus at fixed temperatures; a mixture melts over a range — which is how a quiz asks "is it pure?" without ever using the word.
1★ KS3-CHEM-CCH-0001
2★ KS3-CHEM-CCH-0002
3★ KS3-CHEM-CCH-0003
4★ KS3-CHEM-CCH-0004
5★ KS3-CHEM-CCH-0005
6★ KS3-CHEM-CCH-0006
7★ KS3-CHEM-CCH-0007
8★ KS3-CHEM-CCH-0008
9★ KS3-CHEM-CCH-0009
10★ KS3-CHEM-CCH-0010
11★ KS3-CHEM-CCH-0011
12★ KS3-CHEM-CCH-0012
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