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Intermediate

Mains Electricity and Safety

4.2.3.1 Direct and alternating potential difference·4.2.3.2 Mains electricity

Aligned to the AQA 8463 specification

Level
Intermediate
Reading time
5 min
Published
2 July 2026
On this page
  1. 1.Direct and Alternating Potential Difference
  2. 2.UK Mains Electricity: 230 V and 50 Hz
  3. 3.The Three-Core Cable
  4. 4.What Each Wire Does
  5. 5.Why Mains Electricity Is Dangerous
  6. 6.Common Exam Mistakes

Key takeaways

  • Direct current (dc) flows in one direction from a steady potential difference (a cell); alternating current (ac) is produced by a potential difference that constantly reverses direction.
  • UK mains electricity is an ac supply with a frequency of about 50 Hz and a potential difference of about 230 V.
  • The three wires in a mains cable are: live (brown), neutral (blue) and earth (green-and-yellow striped).
  • The live wire carries the alternating potential difference from the supply, the neutral wire completes the circuit, and the earth wire is a safety wire that carries current only if there is a fault.
  • The live wire is dangerous even when a switch is open, because it is still at about 230 V relative to earth, so touching it lets current flow through your body to the ground.

Direct and Alternating Potential Difference

There are two kinds of electrical supply, defined by how the potential difference behaves.

Direct current (dc) flows in one direction only. It is produced by a steady potential difference, one that does not change direction, such as that from a cell or battery. The positive terminal stays positive, so the charge always drifts the same way.

Alternating current (ac) repeatedly changes direction. It is produced by a potential difference that constantly reverses, so the charge moves first one way, then the other, back and forth.

Mains electricity is an ac supply. Batteries and cells provide dc.

The essential difference to state in the exam: in dc the potential difference is steady and the current flows one way; in ac the potential difference keeps reversing, so the current keeps changing direction.

UK Mains Electricity: 230 V and 50 Hz

The electricity supplied to homes and businesses in the UK is an alternating supply with two values you must recall:

QuantityUK mains value
Potential differenceabout 230 V
Frequencyabout 50 Hz

The frequency of 50 Hz means the alternating potential difference completes 50 full cycles every second (hertz, Hz, means cycles per second). In each cycle the potential difference rises, reverses and returns, so the current changes direction 50 times a second.

UK mains: about 230 V, frequency about 50 Hz, alternating current.

These two numbers are frequently tested directly, so memorise them together with the fact that mains is ac.

The Three-Core Cable

Most mains appliances connect through a three-core cable containing three wires, each with a coloured plastic coating so it can be identified. The colours are fixed by law and you must recall them.

WireColourRole
LiveBrownCarries the alternating potential difference from the supply
NeutralBlueCompletes the circuit back to the supply
EarthGreen-and-yellow stripedSafety wire; carries current only if there is a fault

The insulating coatings are colour-coded so that anyone wiring a plug connects each wire to the correct terminal. The outer layers of the cable are also insulators, protecting the user from the wires inside.

Live = brown, Neutral = blue, Earth = green-and-yellow. Learn these exactly; the specification requires the precise colours.

What Each Wire Does

Understanding the potential of each wire explains both how the circuit works and why it can be dangerous.

  • Live wire (brown): carries the alternating potential difference from the supply. It swings between positive and negative but is at about 230 V relative to earth. This is the dangerous wire.
  • Neutral wire (blue): completes the circuit, returning the current to the supply. It is at or near 0 V.
  • Earth wire (green-and-yellow): a safety wire at 0 V connected to the ground. It normally carries no current; it only carries current if a fault makes the metal case of an appliance become live.

The earth wire and a fuse work together for safety. If a fault connects the live wire to a metal case, the earth wire provides a low-resistance path to ground. A large current then flows, which melts the fuse and disconnects the appliance, making the case safe to touch.

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Why Mains Electricity Is Dangerous

Your body, and the ground, sit at about 0 V. The danger comes from any large potential difference between the live wire and you.

The live wire is dangerous even when the switch is open. A switch normally sits in the live wire, but even with it open the live wire on the supply side stays at about 230 V relative to earth. If you touch it, there is a potential difference of about 230 V between the wire and the ground, so a current flows through your body to earth, giving an electric shock.

A live-to-earth connection is dangerous. If the live wire touches an earthed object (or a person standing on the ground), the large potential difference drives a big current through that path. Through a person this can be lethal; through wiring it can cause overheating and fire.

A live wire can give a shock even when the appliance is switched off, because it remains at about 230 V relative to earth. Never assume a live wire is safe just because a switch is open.

Common Exam Mistakes

1. Mixing up the wire colours

Live is brown, neutral is blue, earth is green-and-yellow. A common slip is putting blue on live; learn the exact colour for each of the three wires.

2. Saying mains is dc

UK mains is alternating current (ac) at about 230 V and 50 Hz. Only cells and batteries give dc.

3. Thinking a switched-off appliance is safe to touch inside

The live wire stays at about 230 V relative to earth even with the switch open, so it can still give a shock. This is exactly why you isolate at the mains before working on wiring.

4. Confusing the roles of neutral and earth

The neutral wire completes the normal circuit and carries current in use (about 0 V). The earth wire is a safety wire that carries current only during a fault.

5. Forgetting that current flows through you to the ground

A shock happens because there is a potential difference between the live wire (about 230 V) and the ground (0 V). Touching the live wire completes a path to earth through your body.

Key terms

Direct current (dc)
An electric current that flows in one direction only, driven by a steady potential difference.
Alternating current (ac)
An electric current that repeatedly changes direction because the potential difference driving it keeps reversing.
Frequency
The number of complete cycles per second of an alternating supply, measured in hertz (Hz).
Live wire
The wire that carries the alternating potential difference from the mains supply, at about 230 V relative to earth.
Neutral wire
The wire that completes the circuit back to the supply, normally at about 0 V.
Earth wire
A safety wire connected to the ground at 0 V that carries current only if there is a fault.

Frequently asked questions

Direct current (dc) flows in one direction, driven by a steady potential difference such as from a battery. Alternating current (ac) repeatedly changes direction because the potential difference driving it keeps reversing. UK mains is ac.

The live wire is brown, the neutral wire is blue, and the earth wire is green-and-yellow striped. The live carries the supply pd, the neutral completes the circuit, and the earth is a safety wire.

The live wire stays at about 230 V relative to earth even with the switch open. Touching it would provide a path for current to flow through your body to the ground (which is at 0 V), giving you an electric shock.

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