Physics · Professor Newton

Every card in Space and gravity

The whole deck, in order — so you can read it through before your child ever sees it.

1 KS3-PHYS-SPA-0001

The Earth turns once on its axis every 24 hours. Through how many degrees does it turn in one hour?

15 degrees

HintDivide a full circle by the number of hours in a day.

WhyA full rotation is 360°, and 360 ÷ 24 = 15. That is why time zones are roughly 15° of longitude wide: the Sun reaches its highest point an hour later for every 15° you travel west, which is also how sailors once used a clock to work out their longitude.

2 KS3-PHYS-SPA-0002

What would happen to a planet's path if the Sun's gravity suddenly vanished?

It would fly off in a straight line

HintWith no sideways pull, nothing is left to bend its motion.

WhyThe Sun's gravity constantly bends each planet away from the path it would otherwise take, and that is what curves an orbit into a near-circle. Remove the pull and the planet would simply carry on at a steady speed in whatever direction it was already moving. The same reasoning explains why the Moon keeps circling the Earth rather than drifting away.

3 KS3-PHYS-SPA-0003

It is summer in the UK in June because the ____ hemisphere is tilted ____ the Sun, bringing a higher Sun and ____ days.

Northern, towards, longer — a higher Sun for our half of the world

HintThe planet leans at the same angle all year — in June that lean favours us.

WhyThe tilt of 23.5° stays fixed as we orbit, so each hemisphere leans sunwards for part of the year. That gives a higher Sun and longer days, which is what makes the warmth.

4 KS3-PHYS-SPA-0004

Why does the Moon appear to change shape through the month?

We see different amounts of its sunlit side

HintHalf of it is always lit; what alters is how much of that half faces us.

WhyThe Moon takes about a month to circle the Earth, and sunlight always falls on one hemisphere of it. As our viewing angle shifts we see anything from a thin crescent to a full disc.

5 KS3-PHYS-SPA-0005

The Moon passes between the Earth and the Sun once a month, so why is there not a solar eclipse every month?

Its orbit is tilted, so the shadow usually misses the Earth

HintThe three bodies must line up in height as well as left to right.

WhyThe Moon's path is tilted by about 5° to the plane of the Earth's orbit, so at most new moons its shadow passes above or below us and nothing is seen. Only when the Moon crosses that plane at new moon does the shadow land on the surface. The shadow is a few hundred kilometres wide at most, which is why any one town waits centuries between total eclipses.

6 KS3-PHYS-SPA-0006

Which quantity is measured in kilograms — mass or weight?

Mass

HintThe amount of stuff in an object, unchanged wherever you take it.

WhyWeight is the pull of gravity on that stuff and is measured in newtons, so an astronaut weighs far less on the Moon while being made of exactly the same amount of matter.

7 KS3-PHYS-SPA-0007

Weight = mass × ____.

gravitational field strength

HintOn Earth this value is about 10 newtons for every kilogram.

WhyIt explains why weight is your mass with a g attached: a 5 kg bag of shopping presses down on your hand with about 50 N here on Earth.

8 KS3-PHYS-SPA-0008

What happens to your weight if you stand on the Moon instead of the Earth?

It becomes about six times smaller

HintThe lunar pull is much gentler than the one you grew up in.

WhyThe Moon's gravitational field strength is roughly 1.6 N/kg against Earth's 10 N/kg, which is why the Apollo astronauts bounced along. Their mass was exactly the same as on the launchpad.

9 KS3-PHYS-SPA-0009

Roughly how long does light from the Sun take to reach the Earth?

About 8 minutes

HintLight covers 300 000 km every second, and the Sun is 150 million km away.

WhyThe Sun is about 150 million km away and light travels at roughly 300 000 km per second, so 150 000 000 ÷ 300 000 gives about 500 seconds — a little over 8 minutes. You always see the Sun as it was 8 minutes ago. Light from the nearest star beyond the Sun, Proxima Centauri, takes just over four years to arrive; it is a small, dim red dwarf rather than a Sun-like star.

10 KS3-PHYS-SPA-0010

Why do the stars in the night sky look so much fainter than the Sun?

They are far further away

HintA torch across a field looks dim, though it is just as bright up close.

WhyBrightness drops off sharply with distance. Some night-sky stars are far bigger and hotter than the Sun, yet trillions of kilometres of space reduce them to pinpricks.

11 KS3-PHYS-SPA-0011

Our galaxy is about 100 000 light years wide, and the Andromeda galaxy lies 2.5 million light years away. Roughly how many of our galaxy widths is that gap?

About 25

HintDivide the separation by the width, keeping both in light years.

Why2 500 000 ÷ 100 000 = 25, so our two galaxies sit about twenty-five galaxy widths apart. Galaxies are packed far more closely, in their own terms, than stars are: neighbouring stars stand millions of star widths apart. That is why galaxies collide and merge, as ours and Andromeda will, while the stars inside them almost never hit one another.

12 KS3-PHYS-SPA-0012

What does a light year measure?

Distance

HintIt sounds like a stretch of time, but it is not one.

WhyA light year is how far light travels in a year — about 9.5 trillion kilometres. The nearest star beyond the Sun is just over four of them away, so we see it as it was four years ago.

Keep what you learn

Here, nothing is saved. In your child’s own sky every card is scheduled — it comes back just before they’d forget it — and the professor who wrote it is one tap away.