Lesson T7.1.2
T7.1.2 Gravity between Earth, Moon and Sun Quiz: KS3 Physics, Unit 7
20 questions
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Lesson T7.1.2, Gravity between Earth, Moon and Sun: 20 multiple choice questions for the KS3 Physics (National Curriculum), Unit 7: Space physics, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
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What force keeps the Moon moving around Earth?
- Friction
- Electrostatic force
- Gravity
- Magnetism
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What does the strength of the gravitational force between two masses depend on?
- The temperature of the masses and the speed at which they move
- The colour of the masses and the distance travelled by them
- The electric charge on the masses and the air between them
- The size of the masses and the distance between them
-
What happens to the gravitational force between two objects if the distance between them doubles?
- It stays the same
- It becomes stronger
- It reverses direction
- It becomes weaker
-
Which force keeps Earth moving in orbit around the Sun?
- Magnetism from the Sun
- Gravity from the Sun
- Static electricity from the Sun
- Friction from the solar wind
-
Why are the tides on Earth caused by the Moon?
- The Moon pushes the water with a magnetic force that lifts the tides
- The Moon's gravity pulls water into bulges on the near and far sides
- The Moon blocks the Sun's light from reaching the oceans each evening
- The Moon heats the oceans so that the water rises and then falls again
-
Which of these is larger, the Sun's gravitational pull on Earth or the Moon's?
- They are exactly equal
- Neither exerts any gravitational pull
- The Moon's pull on Earth is much larger
- The Sun's pull on Earth is much larger
-
Why does the Moon not fall straight down onto Earth?
- It is held up by the pressure of the air in the space around it
- Its mass is too small for Earth's gravity to act on it at that distance
- It is moving sideways fast enough that its path curves around Earth
- The Sun pushes it sideways and away from Earth at a steady rate
-
What holds the planets in orbit around the Sun?
- Upthrust from the planets' atmospheres
- Magnetic attraction from Earth
- Friction from the space dust
- Gravitational attraction from the Sun
-
What does it mean to say gravity is always attractive?
- Gravity only works between magnets that have opposite poles facing each other
- Gravity pushes large objects away from each other across empty space
- Gravity only pulls masses together and never pushes them apart
- Gravity only acts when objects are moving past each other in space
-
Which statement about gravity between Earth and the Moon is correct?
- The Earth pulls on the Moon, and the Moon pulls on the Earth
- Neither body pulls on the other, because they are too far apart
- Only the Earth pulls on the Moon, and the Moon does not pull back
- Only the Moon pulls on the Earth, and the Earth does not pull back
-
Why is the Moon's gravity weaker at its surface than Earth's gravity at its surface?
- The Moon is closer to the Sun
- The Moon is made of plastic
- The Moon has less mass than Earth
- The Moon has no atmosphere
-
A satellite orbits Earth at a greater distance than before. What happens to the gravitational force on it?
- It gets weaker
- It is unchanged
- It becomes zero
- It gets stronger
-
Which of these is a result of the Sun's gravity on the planets?
- They shrink as they get closer to the Sun
- They make their own light
- They are carried away by the Moon
- They travel around the Sun in orbits
-
Why is the Moon's tidal effect on the oceans stronger than the Sun's tidal effect?
- The Sun has no gravity at all, so it cannot pull on the oceans of Earth
- The Moon is much more massive than the Sun and so pulls harder on the oceans
- The Moon is much closer to Earth, so its pull varies more across Earth's surface
- The Moon emits more light than the Sun, which moves the water around the globe
-
Which of these is NOT a gravitational interaction?
- The Sun keeping Earth in orbit
- A magnet attracting a paper clip
- The Earth pulling a falling ball
- The Moon pulling on the oceans
-
What is the approximate gravitational force between Earth and the Sun, compared with the force between Earth and the Moon?
- Earth and the Sun exert no force on each other
- They are exactly the same
- The force between Earth and the Moon is much greater
- The force between Earth and the Sun is much greater
-
A student says gravity only acts when objects are touching. What is the correct response?
- The student is correct, because gravity needs direct contact between objects to act
- Gravity only acts through air, so it cannot work across empty space at all
- Gravity acts only on planets and large moons, not on small everyday objects
- Gravity acts across space between objects, even when they are not touching
-
Why do astronauts on the International Space Station float?
- Their mass disappears once they travel into orbit around the planet
- The Moon's gravity holds them up inside the station as it passes overhead
- Gravity is absent in space, so nothing in the station is pulled downwards
- They and the station are falling together around Earth
-
What happens to Earth's orbit if the Sun's gravitational pull suddenly became weaker?
- Earth would move away from the Sun in a larger orbit or leave orbit
- Earth's orbit would not be affected at all, because gravity has no role
- Earth would stop rotating on its axis within a few days of the change
- Earth would be pulled closer to the Sun and its orbit would shrink quickly
-
Which best explains why the Moon's gravity affects tides more than most people expect?
- Its gravity changes across Earth's width, so the pull on the oceans differs
- Its gravity heats the water in the oceans, which makes the tides rise
- Its gravity is always the same on every ocean, so the tides are equal
- Its gravity is strongest on the Moon itself, so the tides form mainly there and not on Earth
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