Describe Activity 4.2. Do the paper clips hang from the ends of the nail when the wire is connected to the cell? Do they fall when it is disconnected?
Hint. Two observations, one when the circuit is complete and one when it is broken.
What you do. Take about 50 cm of flexible insulated wire, an iron nail, an electric cell and a few iron paper clips. Wind the wire tightly around the nail as a coil (Fig. 4.2) and secure it with adhesive tape. Connect the two ends of the wire to the cell. Bring the nail close to the paper clips and lift.
The two observations.
| Circuit | What the clips do |
|---|---|
| Connected — current flows through the coil | The clips cling to the ends of the nail and are lifted with it |
| Disconnected — current stops | The clips fall down |
✦ Read it against Activity 4.1. There the current's magnetic effect was just strong enough to swing a delicately balanced needle. Here the same effect is strong enough to pick up objects against gravity, because the wire has been wound into many turns around an iron nail instead of running past in a single straight stretch. Same phenomenon, made much stronger by the arrangement.
And the magnetism is entirely borrowed. The nail is an ordinary iron nail; before the wire was wound on it, it could not pick up a single clip. It is a magnet only while the current flows, so the clips fall the moment you break the circuit.
