Physics · Professor Newton

Every card in Electricity and magnetism

The whole deck, in order — so you can read it through before your child ever sees it.

1 KS3-PHYS-ELE-0001

A steel paperclip is attracted to both ends of a bar magnet. What is the one test that would show the paperclip is itself a magnet?

Seeing it repel one pole of another magnet

HintAttraction happens with any piece of iron or steel, so which behaviour cannot be faked?

WhyIron and steel are pulled towards both poles of any magnet, so attraction tells you nothing about the object doing the pulling. Repulsion happens only between two like poles, so it is the single reliable test that an object carries a field of its own.

2 KS3-PHYS-ELE-0002

The simple instrument used to plot the direction of a magnetic field

A compass

HintA tiny needle that swings freely and points wherever it is pulled.

WhyPlacing a small plotting one at points around a bar magnet traces field lines that loop out of the north pole and back into the south. Iron filings show the same pattern all at once.

3 KS3-PHYS-ELE-0003

Why does a freely swinging compass needle settle pointing north?

The Earth acts like a giant magnet

HintThe whole planet has a field of its own, made by its molten iron core.

WhyThat field is generated by currents in the liquid iron outer core. Confusingly, the pole up in the Arctic behaves as a magnetic south, which is precisely why a needle is drawn to it.

4 KS3-PHYS-ELE-0004

What moves between two materials when you rub them together and they become charged?

Electrons

HintThe tiny negative particles on the outside of an atom.

WhyRubbing transfers them from one surface to the other. Whichever material gains them is left negatively charged and the one that loses them is left positive, so the charges always appear as a matching pair.

5 KS3-PHYS-ELE-0005

A negatively charged rod is held near an uncharged metal sphere and the sphere is pulled towards it. Why does an uncharged object move?

The rod pushes electrons to the far side, leaving the near face positive

HintIn a metal the free negatives can shift, so work out which end they run to.

WhyThe rod's field drives the sphere's free electrons to the far side, so the near face is left positive and the far face negative. Electrostatic force weakens with distance, and the positive near face is closer to the rod, so the pull beats the push and the sphere moves. This is charging by induction, and it is why a charged balloon sticks to a neutral wall.

6 KS3-PHYS-ELE-0006

A 12 V battery feeds two parallel branches drawing 0.4 A and 0.5 A. What does an ammeter placed in the main wire beside the battery read?

0.9 A

HintCharge cannot be created or destroyed at a junction, so the branches share out what leaves the cell.

WhyCharge is conserved where wires meet, so the reading in the main wire is the sum of the branches: 0.4 + 0.5 = 0.9 A. An ammeter moved into one branch would read only that branch. The 12 V is not needed for this calculation, though it does tell you both branches have the full 12 V across them.

7 KS3-PHYS-ELE-0007

The component drawn as a circle with a cross inside it in a circuit diagram

A lamp

HintThe component that glows when charge passes through it.

WhyCircuit symbols are an international shorthand, so a diagram drawn in Manchester can be built in Munich. The cross is a reminder of the filament inside a bulb.

8 KS3-PHYS-ELE-0008

In a series circuit with two bulbs, how does the current at the second bulb compare with the first?

It is the same

HintNothing is eaten up on the way round the loop.

WhyCharge cannot pile up or vanish, so the reading is identical everywhere in a single loop. What the bulbs share out is the energy each charge carries, not the charge itself.

9 KS3-PHYS-ELE-0009

The proper physics name for voltage is ____.

potential difference

HintIt measures the electrical push a battery gives to each charge.

WhyIt is the energy handed to every unit of charge as it passes, measured in volts. A voltmeter is connected across a component rather than in line with it.

10 KS3-PHYS-ELE-0010

One bulb in a string goes out but the rest stay lit. Is that circuit series or parallel?

Parallel

HintEach bulb must sit on a branch with a route of its own.

WhyEvery branch gets the full potential difference and has its own path, so breaking one leaves the others working. It is how house lighting is wired, and why one dead bulb does not darken a room.

11 KS3-PHYS-ELE-0011

A component has 12 V across it and 3 A flowing through it. What is its resistance?

4 ohms

HintDivide the voltage by the current.

WhyResistance = voltage ÷ current, so 12 ÷ 3 = 4. The unit is written with the Greek letter omega, and it tells you how hard a component makes the charge work to get through.

12 KS3-PHYS-ELE-0012

To make an electromagnet stronger, add more ____ of wire to the coil, use a bigger ____, or slide an iron ____ inside.

Turns, current, core — all three boost the field

HintThink coil, flow, and what you could slide up the middle.

WhyEach works on the same field: extra loops stack up more magnetism, a stronger flow drives it harder, and iron concentrates it. The advantage over a bar magnet is that switching off the electricity switches the magnetism off, which is how a scrapyard crane drops a car.

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.