Describe Activity 5.5 with the two ring magnets. What happens when you try to push the upper magnet down, and what happens when the poles of both magnets are reversed?
Hint. The wooden stick is not holding the magnet up — check what is.
The activity. Take two ring magnets and a wooden stick. Hold the stick upright on a wooden table and slide one ring magnet down onto it. Now slide the second ring magnet on above the first, with like poles facing each other (Fig. 5.7).
What you see.
| Step | Observation |
|---|---|
| Second magnet placed with like poles facing | It stays floating above the first, with a visible gap between them |
| Push the second magnet down gently | You feel a force pushing back up against your hand; the gap closes a little and springs open again when you let go |
| Reverse the poles of both magnets | Like poles again face each other, so it still floats |
✦ What the wooden stick is for, and what it is not for. It is not holding the magnet up — it only keeps the rings lined up so they cannot slide off sideways. Wood is not a magnetic material, so it plays no part in the force. What holds the upper magnet up is the repulsion between the like poles, acting across an air gap with nothing in between.
Why the last step is included. Reversing both magnets brings like poles face to face once more — north against north instead of south against south — so the magnet floats again. This shows the effect depends on the poles being alike, not on which particular pole is which.
If you turn only one magnet over, unlike poles now face each other, they attract, and the upper magnet drops onto the lower one.
