Every card in Atoms, elements and compounds, Year 9
The whole deck, in order — so you can read it through before your child ever sees it.
- What is the chemical formula for sodium chloride?
NaCl
HintThe metal takes its symbol from its Latin name, and the two elements join one to one.
WhyThere is one sodium for every chlorine, so no small numbers are needed. A capital letter starts each new symbol, which is how you can tell the formula holds two elements, Na and Cl, and not four.
- Each molecule of a gas contains one carbon atom joined to two oxygen atoms. What is its chemical formula?
CO2
HintWrite each element's symbol, then put a number after the one there is more than one of.
WhyA symbol with no number after it stands for a single atom. On paper the 2 is written small and low, straight after the O it counts; typed on one line it sits in the same place.
- What is the chemical formula of sulfur trioxide?
SO3
HintThe prefix in front of "oxide" is the one that starts "triangle" and "tricycle".
WhyPrefixes in a name count atoms: mono- is one, di- is two and tri- is three. So this compound has three oxygen atoms for each sulfur, just as carbon dioxide has two oxygens for each carbon.
- In the formula of a compound made from a metal and a non-metal, such as NaCl or MgO, which element's symbol is written first?
The metal's
HintThe formula keeps the same order as the spoken name: sodium chloride, magnesium oxide.
WhyA formula is written in the same order as the name, and the name puts the metal first. That is why NaCl reads as sodium chloride, and why you never see it written ClNa.
- A material made by combining two or more different materials, so that it has better properties than any of them alone
A composite
HintFibreglass and reinforced concrete are both examples.
WhyEach part does a job the other cannot. In fibreglass, thin glass fibres give strength, while the plastic around them holds the fibres in place and stops them snapping.
- A china mug shatters when it is dropped on a stone floor, where a steel mug would only dent. Which property of ceramics does this show?
They are brittle
HintIt is the opposite of being able to bend or change shape under a blow.
WhyCeramics are hard, so they resist scratches and wear, but they cannot bend or stretch to absorb a sudden knock. A crack runs straight through instead. Hard and brittle often go together.
- Why can ceramic bricks be used to line a furnace that is hot enough to turn steel into a liquid?
They have a much higher melting point than steel
HintCompare the temperature each solid can take before it gives way.
WhySteel melts at around 1,500 °C, but the ceramics used for furnace linings stay solid well beyond that. They are also poor conductors of heat, which helps to keep the heat inside the furnace.
- Concrete is strong when squashed but cracks when it is stretched or bent. Rods of which material are set inside it to make reinforced concrete? (one word)
Steel
HintIt is the metal used for bridge girders and car bodies.
WhyThe two materials cover each other's weakness: concrete resists being squashed and the rods resist being stretched. Together they make a composite that can span a wide gap, which plain concrete could not.
- Carbon-fibre composites are used for racing bicycle frames and aircraft parts because they are very strong and yet very ____, so that little energy is needed to move them.
light
HintThink what a cyclist wants from a frame when riding up a hill.
WhySteel is strong but heavy; plastic weighs little but is weak. Carbon fibres set in a plastic resin give a material that is strong for a fraction of the mass of metal.
- In the particle model of a gas, what is in the gaps between the particles?
Nothing at all
HintNot air: air is itself made of particles.
WhyAir is made of particles too, so it cannot be what fills the gaps. In the model there is only empty space between one particle and the next, which is why a gas can be squashed into a smaller volume.
- A particle diagram of a solid shows balls in neat rows, but nothing in the drawing shows what holds them in place. What is missing from the diagram?
The forces between the particles
HintSomething must be pulling neighbouring balls towards each other, or the solid would fall apart.
WhyThe simple model draws particles as plain balls and leaves out the attractions between them. Those attractions matter: they are stronger in some substances than in others, which is why different substances melt and boil at different temperatures.
- Scientists know that the simple ball-and-gap particle model is not exactly right. Why do they still use it?
It is simple and still explains a great deal
HintThink why a tube map is useful even though it is not a true picture of London.
WhyA model is judged by how useful it is, not by whether it is a perfect copy. Plain balls are enough to account for melting, boiling and diffusion, so a more detailed picture is saved for the questions that need it.
- Which of these can the simple particle model, with its identical plain balls, explain: why a gas can be squashed, or why iron melts at a far higher temperature than ice?
Why a gas can be squashed
HintOne of the two needs you to know how strongly the balls of each substance attract one another.
WhySquashing a gas needs only balls and gaps. Different melting points need something the simple model leaves out: how strongly the particles of each substance pull on one another. Knowing which questions a model can answer is part of using it well.
- In science, a simplified picture of something real, used to explain and predict how it behaves
A scientific model
HintIn everyday speech a globe is one, and so is a toy aeroplane.
WhyParticles are far too small to see, so chemists picture them as tiny balls. The picture is useful because it explains what we observe, and it is improved or replaced when it stops doing so.
1★ KS3-CHEM-ATO-0013
2★ KS3-CHEM-ATO-0014
3★ KS3-CHEM-ATO-0015
4★ KS3-CHEM-ATO-0016
5★ KS3-CHEM-ATO-0017
6★ KS3-CHEM-ATO-0018
7★ KS3-CHEM-ATO-0019
8★ KS3-CHEM-ATO-0020
9★ KS3-CHEM-ATO-0021
10★ KS3-CHEM-ATO-0022
11★ KS3-CHEM-ATO-0023
12★ KS3-CHEM-ATO-0024
13★ KS3-CHEM-ATO-0025
14★ KS3-CHEM-ATO-0026
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.