Chapter revision
Revision summary
Key ideas, equations and common mistakes. Open any topic below for the full explanation.
Poles and evidence
Like poles repel and unlike poles attract. A freely suspended magnet turns approximately north-south when nearby disturbances are small. Its north-seeking end points roughly towards geographic north.
A magnetic material can become magnetised; it need not already be a permanent magnet. An end that repels a known N pole is N in the simple end-to-end test. Attraction alone can also involve an initially unmagnetised magnetic material. Dividing an ordinary bar magnet produces smaller magnets with both poles.
Both ways to induce magnetism
- Near a strong magnet
- The nearer end of a magnetic rod develops the opposite pole to the inducing pole. In the example with N beside end A, A becomes S and the far end B becomes N. No contact is required.
- Inside a current-carrying solenoid
- The coil's field magnetises its core. In the supplied N-left/S-right coil orientation, the core is also N-left/S-right. A soft-iron core strengthens the temporary magnetic effect and loses much of its magnetism when current stops.
- Soft iron and suitable steel
- Soft iron is readily magnetised and has low retention, useful when a switched lifting magnet must release its load. Suitable steel is harder to magnetise but retains magnetism, useful for a compass needle or permanent magnet.
Compare retention after the inducing field has been removed, using comparable samples and a consistent test. The number of objects lifted also depends on their shape, weight and contact.
Compass direction and mapping
The marked N end of a settled compass gives the local field direction. It does not always point towards geographic north or the centre of the nearby magnet.
- Keep the bar magnet and paper fixed and label the pole positions.
- Let a small compass settle, then mark its needle ends and N-end direction.
- Move its S end to the previous N-end mark, let it settle and mark the next position.
- Join the marks smoothly with arrows in that direction; repeat from other starting positions.
Avoid nearby magnetic disturbances and stuck or moving needles. The compass responds to the resultant field, including Earth's. Iron filings show a rough shape; the compass supplies the arrow direction.
Draw shape and direction together
- Single bar: outside it, lines leave N and enter S. Their return through the magnet is S to N.
- Unlike facing poles: lines connect across the gap from N to S.
- Like facing poles: lines bend away from the central gap region and do not connect N to N or S to S. Reverse the arrows when changing a corresponding N/N pattern to S/S.
- Representation: lines do not cross. Closer spacing gives a qualitative strength comparison within one consistent drawing.
- Meaning: a field arrow follows the local compass N end. It is distinct from a force arrow on a whole magnet or a moving object's path.
Review a topic
- Magnet properties and observations
- Induced magnetism and material choice
- Finding field direction with a compass
- Magnetic field patterns