Look at this battery, this bulb and these wires. What do you think has to happen for the bulb to light? Hands up your best guess, and say why you think that.
Remember those guesses: here is the idea we will test. The bulb often stays dark when the path from the battery is broken. A complete loop is a closed path with no gaps. We will build and watch for light versus dark next. Keep an eye out for breaks.
Watch the interactive activity on the board. We will build a complete loop together: battery, wires, bulb and a switch (a part that opens or closes the loop on purpose). Call out where each part should go. Then tell us what will happen when we open the switch.
In your group, build a circuit with a battery, bulb, switch and wires so the bulb lights when the switch is closed. This is the fiddly bit: most dark bulbs are just one loose clip, not a mystery. If it stays dark, check every join: is the loop complete? Does the switch need to be closed? When the bulb lights, you have seen a complete loop in action: a closed path from one end of the battery, through the parts, and back to the other end.
Leave a gap in your working circuit. Materials that let electricity through easily are called conductors. Materials that block the flow are called insulators.
Your group chooses at least four materials from the tray. For each one, in this order:
Keep the battery, bulb, wires and how you connect them the same. Only the material in the gap changes. (Pencil lead can conduct even though it is not a metal — you do not have to test that today.)
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