Every card in Biology Challenge toolkit
The whole deck, in order — so you can read it through before your child ever sees it.
- Photosynthesis: carbon dioxide + ____ → ____ + ____, using light energy trapped by ____ in the leaf.
water; glucose; oxygen; chlorophyll
HintWord equation for how a leaf makes its food — think what goes in, what comes out, and what does the catching.
WhyZoom in: the leaf is an organ, its palisade cells are packed with chloroplasts, and inside each one chlorophyll traps light to join carbon dioxide and water into glucose. The oxygen is a by-product the plant vents through its stomata — and it is the oxygen every animal on Earth breathes. Set it beside aerobic respiration (glucose + oxygen → carbon dioxide + water) and you will see the same reaction run in opposite directions; the Challenge loves asking which is which.
- Which gas is a product of aerobic respiration but a reactant of photosynthesis?
Carbon dioxide
HintCells release it during aerobic respiration; green leaves take it in for photosynthesis in the light.
WhyCells release carbon dioxide during aerobic respiration (glucose + oxygen → carbon dioxide + water), which runs day and night in plant and animal cells alike; green leaves take it in for photosynthesis, which runs only in the light. So a plant is a net taker of carbon dioxide by day and a net giver by night. This pairing is also the engine of the carbon cycle: carbon moves from the air into sugar, from plant into animal, and back to the air again.
- Specialised plant cell whose long, thin extension absorbs water and minerals from soil
Root hair cell
HintLook just behind the growing tip of a young plant, where the water first comes in.
WhyA specialised cell is the organism’s problem solved at the smallest scale. The plant needs water and minerals from soil, so cells just behind each root tip grow a hair-like extension that multiplies their surface area. Water enters by osmosis, from the dilute soil water into the more concentrated cell; minerals are taken in using energy from respiration, so these cells are also rich in mitochondria. Every specialised cell tells the same story: shape follows job.
- The enzyme in saliva that begins breaking starch down into sugars
Amylase
HintA carbohydrase; the -ase ending marks an enzyme, and the mouth is where it starts work.
WhyDigestion is chemical as well as mechanical. Amylase in saliva starts turning starch into maltose while you chew, and the pancreas adds more in the small intestine. Two other families finish the job: proteases break protein into amino acids, and lipase breaks fat into fatty acids and glycerol. Each enzyme fits one substrate, so a multiple-choice option that pairs amylase with protein is a trap.
- When muscle cells run short of oxygen they respire anaerobically, turning glucose into ____.
lactic acid
HintThe build-up that makes a sprinter’s legs burn and ache.
WhyAerobic respiration needs oxygen; when a sprinting muscle cannot get enough, it switches to anaerobic respiration — glucose → lactic acid — which releases far less energy per glucose. The lactic acid must be broken down afterwards, which is why you keep panting once you stop: you are paying off the oxygen debt. Yeast respires anaerobically differently, glucose → ethanol + carbon dioxide (fermentation), which is what makes bread rise.
- Which chamber of the heart pumps oxygenated blood out along the aorta to the whole body? (two words, no 'the')
Left ventricle
HintThe thickest-walled of the four chambers — it has to push blood the furthest.
WhyThe heart is two pumps side by side. The right side sends blood on the short trip to the lungs; the left side sends it round the whole body, so the left ventricle has by far the thickest muscular wall. Remember that left means the patient’s left — on a diagram facing you it sits on the right. The Biology Challenge is two 25-minute online papers, so a labelled heart is exactly the kind of quick question to expect.
- Which blood cells carry oxygen, bound to haemoglobin?
Red blood cells
HintBiconcave discs with no nucleus, packed with an iron-rich pigment.
WhyBlood is a tissue in transit: red blood cells carry oxygen, white blood cells fight infection, platelets clot wounds, and plasma carries everything else — dissolved food, carbon dioxide, hormones and heat. A red blood cell drops its nucleus to make room for haemoglobin and takes a biconcave shape to widen its surface area: a cell so specialised it lives only about 120 days before the spleen recycles it.
- A human body cell has 46 chromosomes. How many chromosomes does a human gamete — an egg or a sperm — carry? (type the number)
23
HintHalf the full set, so that egg and sperm together rebuild it.
WhyChromosomes are the packages of DNA in the nucleus: body cells hold 23 pairs, one of each from each parent. A gamete carries only 23, so fertilisation restores 46 and the count stays stable across generations.
- Bacteria becoming resistant to an antibiotic over a few years is a fast, watchable example of which process?
Natural selection
HintDarwin’s mechanism: the drug removes the cells that cannot cope and leaves the ones that already could.
WhyNothing in the bacteria decided to resist. In any large population a few cells already carry a chance mutation that lets them survive the drug; the antibiotic kills the rest, the survivors multiply, and the next generation is mostly resistant. Variation, selection, inheritance — Darwin’s three ingredients, only with a generation time of twenty minutes instead of twenty years. The same logic explains the peppered moth and the beaks of the Galápagos finches.
- In a food chain the arrows point from the organism that is eaten to the one that eats it, showing the direction of ____ transfer.
energy
HintNot who chases whom — what passes up the chain when one organism eats another.
WhyA food-chain arrow means “is eaten by”, so it always points from prey to predator: grass → rabbit → fox. Only a small fraction of what each level holds passes to the next — most is lost as heat from respiration, in movement and in waste — which is why chains are short and a pyramid of biomass narrows towards the top. Count the levels above a producer and you can see how thin the supply has become.
- Which type of pathogen causes influenza?
A virus
HintFar smaller than a bacterium, and no antibiotic can touch it.
WhyPathogens come in four kinds: bacteria, viruses, fungi and protists. Flu, colds, measles and COVID-19 are viral; tuberculosis and Salmonella food poisoning are bacterial; athlete’s foot is fungal; malaria is caused by a protist. Antibiotics kill bacteria only, which is why a doctor will not prescribe them for flu — and why taking them when they cannot help breeds resistant bacteria. Against a virus the main tools are vaccination and your own immune system; a few antiviral drugs exist but no antibiotic helps.
- Which class of vertebrates has moist, permeable skin and lays jelly-covered eggs in water?
Amphibians
HintThe class whose young breathe with gills but whose adults breathe with lungs.
WhyVertebrates come in five classes: fish (gills, scales), amphibians (moist skin, larvae in water), reptiles (dry scaly skin, shelled eggs on land), birds (feathers, hard-shelled eggs) and mammals (fur, milk). Amphibians are the bridge: a frog begins as a gilled tadpole and ends as a lung-breathing adult, which is why it must return to water to breed. The Challenge enjoys natural-history questions like this alongside the textbook biology.
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10★ KS3-BIOL-BCH-0010
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