Every card in The periodic table
The whole deck, in order — so you can read it through before your child ever sees it.
- Silicon sits on the staircase line and conducts electricity only weakly. What are elements like it called?
Metalloids, or semi-metals
HintThey straddle the zig-zag boundary and behave partly like each side of it.
WhyBoron, silicon, germanium, arsenic, antimony and tellurium all sit along the staircase. Silicon is shiny like a metal but brittle like a non-metal, and it conducts far better than sulfur yet far worse than copper — which is precisely what makes it a semiconductor and the material every computer chip is cut from.
- Which property of a metal lets it be hammered into a new shape without cracking?
Malleability
HintA blacksmith relies on it every time a hammer meets hot iron.
WhyMetals can be beaten into sheets and pulled out into wires — that second property is called ductility — because their layers of atoms slide over one another without the structure breaking apart. Solid non-metals such as sulfur are brittle and shatter under the same blow. Metals also carry heat and electricity well and are shiny when freshly cut.
- At room temperature, what state are most non-metals in?
Gas
HintOxygen, nitrogen and helium all belong here, and none of them can be picked up.
WhyThe solid non-metals, such as sulfur, are dull and snap easily instead of bending. Bromine is the one that is liquid at room temperature.
- The word for a material that snaps rather than bending when it is struck
Brittle
HintChalk and glass both do it; a paperclip does not.
WhyPrecision matters here: glass is very hard, meaning difficult to scratch, yet it shatters under a blow because it cannot bend to absorb the force.
- A vertical column of the periodic table
A group
HintElements in the same column behave like a family; the rows carry a different label.
WhyMembers of a column react in similar ways, which is why the alkali metals all behave alike. The horizontal rows are called periods.
- The family name for the metals of Group 1
The alkali metals
HintDrop one into water and the solution left behind turns universal indicator blue.
WhyThey are soft enough to cut with a knife and react vigorously with water, producing hydrogen and a solution of high pH — which is where the family name comes from.
- Going down Group 1, does the reactivity of the metals increase or decrease?
It increases
HintLithium fizzes gently, sodium darts about the surface, and potassium bursts into a lilac flame.
WhyPotassium reacts far more violently with water than lithium does. The pattern runs the other way in Group 7, where reactivity fades as you go down.
- The family name for the reactive non-metals of Group 7
The halogens
HintChlorine, bromine and iodine all belong to it, and every one of them is coloured.
WhyChlorine is a green gas, bromine an orange liquid and iodine a grey solid — one family changing steadily down the column, with reactivity falling as it goes.
- What is unusual about the way the Group 0 gases behave in reactions?
They hardly react at all
HintHelium fills party balloons and argon fills light bulbs because nothing happens to either of them.
WhyArgon protects a hot filament from burning away, and helium in a balloon cannot catch fire the way hydrogen can. Being unwilling to join in is the whole point.
- Reading a period from left to right, elements change from metals to ____.
non-metals
HintBy the far end of the row you reach substances like chlorine and argon.
WhyThe shift is gradual, with semi-metals such as silicon sitting along the staircase line. Sodium at the start of the row is a soft metal; chlorine near the end is a choking gas.
- Why did Mendeleev leave gaps in his version of the periodic table?
For elements not yet discovered
HintHe trusted his pattern more than he trusted the list of substances known at the time.
WhyHe even predicted the properties that would fill each gap, and when gallium and germanium turned up they matched his description closely — which is what convinced chemists the table was right.
- Rubidium sits below potassium in Group 1. Would you expect it to react with water more or less violently?
More violently
HintReactivity builds steadily as you travel down this particular column.
WhyThe power of the table is that a group trend lets you predict how an element behaves before anyone has handled it — the very reasoning Mendeleev used for his gaps.
1★ KS3-CHEM-PER-0001
2★ KS3-CHEM-PER-0002
3★ KS3-CHEM-PER-0003
4★ KS3-CHEM-PER-0004
5★ KS3-CHEM-PER-0005
6★ KS3-CHEM-PER-0006
7★ KS3-CHEM-PER-0007
8★ KS3-CHEM-PER-0008
9★ KS3-CHEM-PER-0009
10★ KS3-CHEM-PER-0010
11★ KS3-CHEM-PER-0011
12★ KS3-CHEM-PER-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.