Physics · Professor Newton

Every card in Electricity and magnetism, Year 10: mains electricity

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

1 GCSE-PHYS-ELE-0032

A potential difference that keeps reversing its direction

An alternating potential difference

HintThe mains supply is of this kind; a torch cell is not.

WhyIt drives a current that flows first one way and then the other, over and over. Its short form is a.c. The opposite kind, from a cell or battery, always acts in the same direction and is called direct (d.c.).

2 GCSE-PHYS-ELE-0033

What is the frequency of the mains electricity supply in the United Kingdom, in hertz? (number only)

50

HintIt is half of one hundred.

WhyThe mains potential difference goes through this many complete cycles every second, reversing direction twice in each cycle. AQA expects the figure to be known, along with the mains potential difference of about 230 V.

3 GCSE-PHYS-ELE-0034

In the United Kingdom, the mains electricity supply has a potential difference of about ____ V.

230

HintIt is a little under a quarter of a thousand.

WhyThis is far higher than the few volts from a cell, which is why mains electricity can drive a dangerous current through a person. AQA expects pupils to know this value and that the supply is alternating.

4 GCSE-PHYS-ELE-0035

The battery in a torch always pushes charge the same way round the circuit. What is this kind of potential difference called?

A direct potential difference (d.c.)

HintIts two-letter short form ends in 'c', like the mains kind, but starts with a different letter.

WhyCells and batteries have a fixed positive and negative terminal, so the potential difference they provide never changes direction and the current is one-way. Mains electricity is the other kind, where the direction keeps reversing.

5 GCSE-PHYS-ELE-0036

The mains supply has a frequency of 50 Hz. What does this tell you about the supply?

Its potential difference goes through 50 complete cycles every second

HintRecall what one hertz means for any repeating event.

WhyFrequency is the number of complete cycles each second. In one cycle the potential difference rises one way, falls back, rises the other way and falls back again. So the direction of the mains reverses 100 times a second, far too quickly to see a filament lamp flicker.

6 GCSE-PHYS-ELE-0037

In a three-core mains cable, the insulation on the live wire is ____, on the neutral wire it is ____, and on the earth wire it is striped green and yellow.

brown; blue

HintOne is the colour of soil; the other is the colour of a clear sky.

WhyThe colours let anyone wiring a plug tell the three wires apart at a glance. The live wire brings the alternating potential difference from the mains, the neutral wire is the return path that completes the circuit, and the earth wire is there for safety.

7 GCSE-PHYS-ELE-0038

The mains wire that carries the alternating potential difference from the supply

The live wire

HintIts name is also the word for something that is 'switched on' or 'alive'.

WhyIt is at about 230 V compared with earth, so it is the one that can give a shock. Switches and fuses are placed in this wire so that opening them cuts the appliance off from the high potential difference.

8 GCSE-PHYS-ELE-0039

What is the job of the earth wire in a mains cable?

It is a safety wire that stops the appliance's casing becoming live

HintIt normally carries no current at all; think about when it would.

WhyThe earth wire joins the metal casing to the ground at 0 V. If a fault lets the live wire touch the casing, the current flows away through the earth wire instead of through a person who touches the appliance. It carries a current only when there is a fault.

9 GCSE-PHYS-ELE-0040

What is the potential of the earth wire, in volts? (number only)

0

HintIt is joined to the ground itself.

WhyThe earth wire is held at the potential of the ground. The neutral wire is at, or close to, the same value, while the live wire is at about 230 V relative to it. A potential difference of 230 V between live and earth is what drives a current through anything that connects them.

10 GCSE-PHYS-ELE-0041

A lamp is switched off at the wall, so no current flows through it. Why can the live wire leading to the switch still give a shock?

It is still at about 230 V, so touching it lets a current flow through you to earth

HintAn open switch breaks the path via the lamp, but ask what it does to the wire on the supply side.

WhyOpening a switch breaks the circuit through the appliance, but the live wire up to the switch stays connected to the supply. A person standing on the ground is at 0 V, so touching that wire puts 230 V across their body and they complete a circuit to earth. This is why appliances are unplugged before any repair.

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