Physics · Professor Newton

Energy: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。

1 KS3-PHYS-ENE-0001

Which energy store does a moving football have?

The kinetic store

提示It fills as something speeds up and empties again as it slows down.

为什么Anything moving has this store, and it grows sharply with speed — doubling how fast a car travels quadruples it, which is why speed limits matter so much.

2 KS3-PHYS-ENE-0002

When a torch is switched on, which store is emptying?

The chemical store in the battery

提示Whatever is being run down inside the cell you will one day have to replace.

为什么The torch makes no energy of its own — it moves it. An electrical pathway carries energy from the chemical store to the bulb, where it ends up as light and warmth.

3 KS3-PHYS-ENE-0003

A spark is at a far higher temperature than a warm bath. Which of the two holds more energy?

The bath

提示One is a speck and the other is enormous — quantity counts as well as how hot.

为什么Temperature tells you how much energy each particle has; the total also depends on how many particles there are. A sparkler is fiercely hot but has almost no mass, so it barely warms your skin.

4 KS3-PHYS-ENE-0004

What makes wind a renewable energy resource?

It is replaced as fast as it is used

提示Tomorrow there will be just as much of it as there is today.

为什么Wind, solar, tidal and hydroelectric all top themselves up. Coal, oil and gas took millions of years to form and are being burned far more quickly than the Earth can make more.

5 KS3-PHYS-ENE-0005

What is the name of the process that carries energy along a metal spoon in hot soup?

Conduction

提示Particles jiggle harder and nudge their neighbours along.

为什么In a solid the particles cannot travel anywhere, so they pass energy on by vibrating against each other. Metals do it fastest because their free electrons carry energy through as well.

6 KS3-PHYS-ENE-0006

Why does the air directly above a radiator rise?

It expands and becomes less dense

提示The same amount of stuff now takes up more room, so it floats upwards.

为什么Heating a gas pushes its particles further apart, so a given volume of it weighs less than the cool air around it. Cooler air sinks to take its place, setting up a convection current that heats the whole room.

7 KS3-PHYS-ENE-0007

How does energy from the Sun cross the empty space between it and the Earth?

By radiation

提示The one kind of transfer that needs no particles at all.

为什么Conduction and convection both need matter, so neither works in a vacuum. This transfer travels as electromagnetic waves, which is why you feel the Sun the instant it appears from behind a cloud.

8 KS3-PHYS-ENE-0008

What does the wattage printed on a kettle tell you?

How fast it transfers energy

提示Two kettles can boil the same water, but one gets there sooner.

为什么Power is the energy moved each second, measured in watts. A 3000 W kettle shifts energy three times as quickly as a 1000 W one, so it boils in a third of the time.

9 KS3-PHYS-ENE-0009

Which unit of energy does an electricity bill charge you for?

The kilowatt-hour

提示Run a one-bar heater for sixty minutes and you have bought exactly one.

为什么It is the energy a 1 kW appliance uses in an hour — about 3.6 million joules. Bills use it because a joule is far too small a unit to count a household in.

10 KS3-PHYS-ENE-0010

A bouncing ball returns lower each time. Where has the missing energy gone?

It has spread out as heat and sound

提示Nothing has vanished — feel the ball and listen to each bounce.

为什么The total is always conserved: what goes in equals what comes out. What changes is how useful it is, because once energy has scattered into the warmth of the floor and the air we cannot gather it back.

11 KS3-PHYS-ENE-0011

On a Sankey diagram, what does the width of an arrow show?

The amount of energy

提示A fat arrow and a thin arrow are not carrying the same quantity.

为什么Sankey diagrams are drawn to scale, so an old filament bulb shows a narrow useful branch for light and a fat wasted branch for heat. The widths going in must always total the widths coming out.

12 KS3-PHYS-ENE-0012

Work done = force × ____.

distance

提示Push hard against a wall that does not budge and no work is done on it.

为什么Work done is measured in joules, the same unit as energy, because work is simply energy transferred by a force. Push a 20 N crate 3 m and you have transferred 60 J.

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