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

What happens when the north pole of one magnet is brought near the north pole of another?

They repel each other

HintThe two ends are alike, and alike ends will not sit together.

WhyUnlike poles attract and like poles push apart. Cut a bar magnet in half and you never get a lone north pole — each piece grows a new south, right down to the atoms.

2 KS3-PHYS-ELE-0002

What simple instrument can you use 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

What happens between a positively charged rod and a negatively charged one?

They attract each other

HintOpposite charges pull inwards, exactly as unlike poles do.

WhyLike charges repel and unlike charges attract, and the force works across a gap with nothing touching. A charged balloon clings to a wall because it tugs the opposite charges in the wall towards it.

6 KS3-PHYS-ELE-0006

What does an ammeter measure in a circuit?

The current

HintThe flow of charge round the loop, read in amps.

WhyAn ammeter goes in series so the flow passes straight through it, and it reads in amperes. One amp is an enormous number of electrons drifting past every second.

7 KS3-PHYS-ELE-0007

In a circuit diagram, what does a circle with a cross inside it represent?

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

What happens to an electromagnet when you add more turns of wire to its coil?

It gets stronger

HintEach extra loop adds its own magnetic effect to the pile.

WhyMore turns, a bigger current or an iron core all boost the field. The advantage over a bar magnet is that switching the current off 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.

Electricity and magnetism — all 12 KS3 flashcards, written out · aitutors.me