Every card in Top of the Bench 2019
The whole deck, in order — so you can read it through before your child ever sees it.
- The hole in the ozone layer is often blamed on global warming. What actually caused it?
CFCs from aerosols and fridges
HintChemicals once used as spray propellants and coolants, banned since the late 1980s.
WhyTwo different problems that quizzes love to tangle. Global warming is extra carbon dioxide and methane trapping heat: rising seas, melting ice, wilder weather. The ozone hole was chlorine-containing gases (CFCs) breaking up the high-altitude ozone that screens out ultraviolet light. Banning CFCs is slowly closing the hole; it did nothing for the temperature. "Which is NOT a consequence of global warming?" — the ozone hole.
- A very long molecule made by joining thousands of small molecules end to end
A polymer
HintCarrier bags and PVC pipes are made of them — one enormous chain after another.
WhyThe small molecules are monomers; ethene molecules link up to make polythene, the plastic of carrier bags. Because a polymer is one enormous chain, you draw just the repeating unit with a bracket and an n. Plastics are unreactive — handy for storing food, awkward for the ocean, since most do not rot.
- Metal blended with another element so that it gains more useful properties
An alloy
HintSteel, brass and bronze are all examples.
WhyPure iron is soft; add a little carbon and you get steel, which is far harder because the different-sized atoms stop the layers sliding. Stainless steel mixes in chromium and nickel to resist rust. An alloy is a MIXTURE, not a compound — no fixed formula, and the metals keep their own atoms.
- An atom’s mass number is its number of protons plus its number of ____, all sitting together in the nucleus.
neutrons
HintThe nucleus holds two kinds of particle; only one of them shows up in the atomic number.
WhyThe smaller number on a periodic-table tile (the atomic number) counts protons; the larger one (relative atomic mass, rounded) counts protons AND neutrons. Electrons weigh almost nothing and orbit outside, so they do not add to the mass number — but in a neutral atom there are exactly as many electrons as protons. Quiz question: "protons, neutrons, electrons?" is really two subtractions.
- Magnesium fizzes in dilute sulfuric acid, giving off hydrogen. Name the salt left in solution (two words).
Magnesium sulfate
HintMetal first, then a surname borrowed from the acid.
Whymetal + acid → salt + hydrogen. Sulfuric acid makes sulfates, hydrochloric acid chlorides, nitric acid nitrates — so magnesium in hydrochloric acid gives magnesium chloride instead.
- Why does a metal conduct electricity?
Its electrons are delocalised
HintLook at the "sea" in the bonding diagram — what is free to drift when a voltage is applied?
WhyIn a metal the outer electrons are not tied to one atom; they are shared across the whole lump, and a voltage sets them drifting through it, carrying the charge. The same sea explains the other metal properties: it holds the positive metal ions strongly (high melting points) and lets layers of ions slide over one another without the structure breaking (malleable, ductile).
- Iron rusts only when ____ and ____ are both present — a nail in dry air, or in boiled water under a layer of oil, stays bright.
oxygen; water
HintOne comes from the air, the other from rain; each control tube in the classic experiment removes just one of them.
WhyRust is hydrated iron oxide: iron + oxygen + water → hydrated iron oxide. Take away either partner and nothing happens, which is exactly what paint, grease and galvanising do — they keep both away from the metal. Salt does not cause rust, it speeds it up.
- A lump of chalk (calcium carbonate) fizzes in dilute acid. Which gas is given off?
Carbon dioxide
HintNot the squeaky-pop gas — the one that is heavier than air.
Whyacid + carbonate → salt + water + carbon dioxide. This is the reaction behind bath bombs, indigestion tablets and the way acid rain eats limestone. Metals give hydrogen with acid; carbonates give carbon dioxide — mixing the two up is the classic quiz slip. Bubble the gas through limewater and it goes cloudy.
- Iron is extracted from its ore by heating iron oxide with which element?
Carbon
HintThe reactivity series has one non-metal slotted in just above iron — that one.
WhyCarbon sits above iron (and zinc, lead and copper) in the reactivity series, so when heated together it grabs the oxygen: iron oxide + carbon → iron + carbon dioxide. Iron is reduced (it loses oxygen); carbon is oxidised. Metals above carbon — aluminium, magnesium, sodium — cannot be won this way and need electrolysis instead, which is why they were discovered so much later.
- Which weak acid is in sherbet and orange juice? (two words)
Citric acid
HintThe sharpness your tongue meets in orange juice, not the one in vinegar.
WhyA weak acid, safe to eat, around pH 2–3 in fruit juice. It is the acid in sherbet: mixed dry with bicarbonate of soda nothing happens, but on a wet tongue they react and fizz. The everyday-acid list quizzes reach for: citric (citrus fruit), ethanoic (vinegar), lactic (sour milk), carbonic (fizzy drinks).
- A steel bicycle chain left out in the rain slowly gains mass as it rusts — it ends up ____, because the iron has combined with oxygen and water from the air.
heavier
HintAsk which direction the atoms travelled — from the air onto the metal, or off it.
WhyAtoms are neither made nor destroyed, so a solid can only "gain" mass by capturing something that was not on the balance. Rust is iron plus oxygen plus water, so the flaky product weighs more than the shiny metal did. The same logic in reverse explains why a heated carbonate gets lighter — its carbon dioxide left.
- Diamond and graphite are both pure carbon yet behave completely differently. What is the word for different forms of the same element?
Allotropes
HintOxygen gas and ozone are another pair of the same kind.
WhyCarbon has several: diamond (every atom bonded to four others — hard, no free electrons, does not conduct), graphite (layers, each atom bonded to three — soft, slippery, conducts), plus graphene, nanotubes and the football-shaped fullerene. Same element, same atoms; only the arrangement differs, and that changes everything.
1★ KS3-CHEM-CCH-0025
2★ KS3-CHEM-CCH-0026
3★ KS3-CHEM-CCH-0027
4★ KS3-CHEM-CCH-0028
5★ KS3-CHEM-CCH-0029
6★ KS3-CHEM-CCH-0030
7★ KS3-CHEM-CCH-0031
8★ KS3-CHEM-CCH-0032
9★ KS3-CHEM-CCH-0033
10★ KS3-CHEM-CCH-0034
11★ KS3-CHEM-CCH-0035
12★ KS3-CHEM-CCH-0036
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.