Electricity and magnetism, Year 9:全部卡片
整套按顺序列出——孩子看到之前,您可以先通读一遍。
- A measure of how hard it is for current to pass through a component
Resistance
提示The same word describes people pushing back against something.
为什么Every component holds the current back to some extent. For the same push from the battery, a component that opposes the current more lets less of it flow. A bulb filament does this far more than the copper wires leading to it.
- A circuit has one cell and one bulb in a single loop. A second identical bulb is added in series. What happens to the current?
It gets smaller
提示The charge now has two obstacles to get through, and no extra push to help.
为什么Each bulb opposes the current, and in a single loop those effects add together. The cell pushes exactly as hard as before, so with more in its way less current flows. That is why both bulbs glow more dimly than one did alone.
- The same cell is connected first to bulb A and then to bulb B. The ammeter reads 0.2 A with bulb A and 0.5 A with bulb B. Which bulb has the greater resistance?
Bulb A
提示The push is identical both times, so ask where the flow was held back more.
为什么With the same potential difference each time, the only thing that can change the current is the component. The bulb that lets less current through is the one opposing it more, so the smaller ammeter reading goes with the larger resistance.
- The unit that electrical resistance is measured in
The ohm
提示It is named after a German physicist, and its symbol is the Greek letter omega.
为什么One of these is the resistance of a component that lets 1 amp flow when there is 1 volt across it. A torch bulb has a few of them; the plastic coating on a wire has many millions.
- A plastic ruler is used to bridge a gap in a circuit, and the bulb stays off. What does this show about the resistance of plastic?
It is extremely high
提示Compare how strongly plastic and copper hold back the flow of charge.
为什么Conductors and insulators are not two different kinds of thing so much as two ends of one scale. A metal opposes the current very little; plastic opposes it so much that the cell cannot push a measurable current through.
- A bulb has a potential difference of 9 V across it and a current of 0.5 A through it. What is its resistance in ohms? (number only)
18
提示Dividing by a half does not make a number smaller.
为什么Resistance = potential difference ÷ current, so 9 ÷ 0.5. Dividing by 0.5 is the same as asking how many halves fit into 9. A small current for a given potential difference always means a large resistance.
- A resistor has 10 V across it and carries a current of 2 A, so its resistance is ____ ohms. If the potential difference across the same resistor is raised to 20 V, the current becomes ____ A.
5 ohms; 4 A
提示Find the ratio of the two readings first, then keep that ratio fixed when the push changes.
为什么Resistance is 10 ÷ 2. The resistor itself has not changed, so its resistance is the same at 20 V, and the current is 20 divided by that resistance. Doubling the push across a fixed resistor doubles the current.
- A current of 3 A flows through a heater whose resistance is 4 ohms. What is the potential difference across the heater?
12 V
提示Rearrange the resistance equation so the quantity you want stands alone.
为什么R = V ÷ I rearranges to V = I × R, so 3 × 4. Check it by putting the answer back: 12 ÷ 3 gives the 4 ohms you started with.
- Resistance = potential difference ÷ ____.
current
提示It is the reading you would take with the meter placed in the loop itself.
为什么Resistance is a ratio: how many volts of push it takes for each amp that flows. Measure the push across a component with a voltmeter and the flow through it with an ammeter, divide, and you have its resistance in ohms.
- In a school laboratory, what is a simple way to measure how strong a home-made electromagnet is?
Count how many paperclips it lifts
提示You need lots of small, identical steel objects.
为什么Strength cannot be seen, so you measure something it does. A stronger field holds more steel, so the number picked up gives a figure you can compare from one trial to the next. Repeating each trial and averaging makes the result more trustworthy.
- A student investigates how the number of turns on the coil affects the strength of an electromagnet. She uses the same iron core throughout. Which electrical quantity through the coil must she also keep the same?
The current
提示Think of the three things that affect the strength. One is being changed and one has been dealt with.
为什么A fair test changes one factor and holds the others steady. Winding on more wire can change how much flows, so she should check the ammeter and adjust the supply each time. Otherwise she cannot tell whether the turns or the flow made the difference.
- With the current fixed, an electromagnet lifts 2 paperclips with 10 turns and no core, 4 paperclips with 20 turns and no core, and 30 paperclips with 10 turns and an iron core. Which change had the bigger effect: doubling the turns, or adding the core?
Adding the core
提示Compare each of the last two results with the first one.
为什么Doubling the turns doubled the number lifted, from 2 to 4. Adding the iron core, with the turns back at 10, took it from 2 to 30. Iron concentrates the field so strongly that it usually matters far more than a few extra turns.
- Why is the core of an electromagnet made of iron rather than steel?
Iron loses its magnetism when the current stops
提示Think about what the device is supposed to do the instant you switch it off.
为什么Both metals are pulled into the field and strengthen it. Steel, though, stays magnetised afterwards, which would leave a scrapyard crane unable to let go of its load. Iron gives the boost without the memory.
- When one bulb in a series circuit fails, every bulb goes out, because the circuit is no longer ____.
complete
提示Charge needs an unbroken route all the way round and back to the cell.
为什么A series circuit is a single loop, so a broken filament anywhere is a gap in the only path there is. This is why finding one dead bulb in an old string of fairy lights meant testing them one by one.
- A bulb in a simple circuit will not light. You replace it with a bulb you know works, and that one does not light either. Which possible fault have you just ruled out?
A broken bulb
提示Ask which part you have now shown is not to blame.
为什么Good fault-finding is a process of elimination. Swapping in a part you trust tests one suspect at a time. Here the fault must lie elsewhere: the cell, a wire, a connection or the switch.
- A circuit with a cell, a switch and a bulb will not work. You connect a spare wire across the two terminals of the switch, and the bulb lights. Where is the fault?
In the switch
提示Ask which part the charge no longer has to pass through.
为什么The spare wire gives the current a route around one component. If the circuit comes to life, everything else must have been working all along, and the part you bypassed is the one that was blocking the loop. Bypassing each part in turn finds a break without guesswork.
- Which meter is connected in series to check whether any current is flowing in a circuit?
Ammeter
提示Its name is built from the unit that current is measured in.
为什么It goes in the loop itself, so that everything flowing passes through it. A reading of zero anywhere in a series loop tells you the loop is broken somewhere. A voltmeter is the other meter, and it is connected across a component instead.
- A spare wire is accidentally connected straight across the two terminals of a lit bulb, and the bulb goes out although the circuit is still complete. Why?
Nearly all the current takes the wire instead
提示Charge now has two routes past that point. Compare how easy each one is.
为什么The wire has almost no resistance and the filament has a lot, so nearly all the current goes through the wire and too little is left to make the filament glow. This is a short circuit. It can make the wires and the cell dangerously hot, because the current is now much larger.
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