Lesson Y8-U01-L05
Y8-U01-L05 Why Earthquakes Happen Quiz: KS3 Geography, Unit 7
20 questions
In partnership with Revision Ninja
Lesson Y8-U01-L05, Why Earthquakes Happen: 20 multiple choice questions for the KS3 Geography (National Curriculum), Unit 7: Year 8: Restless Earth: Tectonic Hazards, 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
-
What is the focus of an earthquake?
- The point underground where the earthquake starts
- The point on the surface directly above the earthquake
- The crack in the road where the ground splits open
- The line where two plates meet at the surface
-
What is the epicentre of an earthquake?
- The deepest point of the ocean floor near a plate boundary
- The place where magma reaches the surface
- The point on the surface directly above the focus
- The centre of the Earth, where the core lies
-
What is friction at a plate boundary?
- The wind that blows dust across a fault line
- The grip between rough plate edges that stops them sliding
- The heat rising from the mantle that melts rock
- The force of lava pushed up a volcano's vent during a large eruption on the coast
-
What are seismic waves?
- Waves of sound made by people on a fault line
- Energy waves that spread out from the focus and shake the ground
- Waves of light given off by hot magma that glow brightly under the ground
- Waves of water that rush onto the shore after a storm
-
What is magnitude?
- A number that measures how much energy an earthquake releases
- The distance from the epicentre to the nearest city, measured in kilometres on a map
- The number of aftershocks that follow the main quake
- The depth of the earthquake below the ground surface
-
Which instrument is used to measure seismic waves?
- A seismometer
- A thermometer
- A rain gauge
- A barometer
-
Which number range is usually used for earthquake magnitudes in this lesson?
- Roughly 1 to 9
- Roughly -10 to 10
- Roughly 0 to 100
- Roughly 1 to 20
-
What event releases the stored energy in an earthquake?
- Lava rises and pushes the ground upward
- Rain soaks the soil until it collapses, causing the ground to slide into the valley
- Friction is overcome and the plates suddenly slip
- The Sun heats the rock until it cracks
-
Which earthquake has the greater magnitude: magnitude 6 or magnitude 7?
- They release the same energy, because both are earthquakes
- Magnitude 7
- It depends only on the depth of each earthquake
- Magnitude 6, because lower numbers mean stronger shaking
-
The 2023 Turkey-Syria earthquake had a magnitude of 7.8 and the 2023 Morocco earthquake had 6.8. Roughly how many times more energy did the Turkey-Syria earthquake release?
- About 32 times more
- About 1,000 times more
- About 7 times more
- About 2 times more
-
Two earthquakes measure 6.4 and 7.5 on the magnitude scale. Which one is the weaker earthquake?
- The 7.5 earthquake
- Cannot be known from magnitudes
- The 6.4 earthquake
- They are equally strong
-
Earthquakes in a survey measured 6.4, 6.8, 7.5 and 8.2 on the magnitude scale. Which magnitude is greater than 6.8 but less than 7.8?
- 8.2
- 6.8
- 6.4
- 7.5
-
Put these stages of an earthquake into the correct order.
- Waves shake the ground, friction locks, plates slip, pressure builds
- Plates lock by friction, pressure builds, friction is beaten, plates slip, waves shake the ground
- Plates slip, waves shake the ground, friction locks the plates, pressure builds slowly over many years
- Pressure builds, waves shake the ground, plates slip, friction locks
-
An earthquake's focus is 10 km underground. Where is its epicentre?
- On the ocean floor, 10 km from the coast
- On the surface, directly above the focus
- 10 km below the surface, under the epicentre
- At the centre of the Earth, far from the surface
-
A pupil says the earthquake energy is made at the moment the plates slip. Which response is best?
- No, the energy was stored by pressure while the plates were stuck
- Yes, magma heats the plates and creates the energy in that instant
- Yes, friction creates all the energy in one sudden burst
- No, the energy came from the Sun heating the plate edges
-
Why is damage often worst near the epicentre?
- Waves slow down at the epicentre, so they linger for longer
- Only the epicentre has buildings that are built to last, so damage is low everywhere else
- The epicentre is always under the ocean, where waves are weakest
- Seismic waves reach the surface there first and with the most energy
-
Why are earthquakes most common along plate boundaries?
- Friction locks the plates there, so stress builds and large energy is released when they slip
- The rock at boundaries is softer, so it cracks more easily
- Boundaries lie close to the surface, so earthquakes cannot form in the middle of plates
- Earthquakes are only caused by the Moon at boundaries, which pull the plates apart every month
-
Why is a magnitude 7.8 earthquake not always the most destructive?
- Only the epicentre matters, so the magnitude is irrelevant to the amount of damage caused in any city
- Damage also depends on depth, distance from people, and how well buildings withstand shaking
- Magnitude measures damage rather than energy, so 7.8 is always weaker than 6.8
- Damage depends only on the magnitude number, so a higher number always means more deaths
-
A magnitude 6.4 earthquake strikes close to a poorly built city. Which factor most increases the damage?
- The earthquake happens under the ocean, far from any land
- The city is built on solid rock far from the focus
- The earthquake is shallow and close to the city, so the shaking is strong there
- The earthquake is very deep and far from the city, so its shaking rarely reaches the ground
-
Why can the ground stay still for long periods before a major earthquake?
- Rocks are soft, so they cannot store energy before a quake
- The plates are pulled apart by the Moon every century, so the ground moves gently and steadily
- The plates move too slowly to be noticed by any instrument
- Friction holds the plates locked while pressure slowly builds in the rock
Related quizzes
- The Structure of the Earth Quiz · Y8-U01-L01 · 20 questions
- Tectonic Plates and How They Move Quiz · Y8-U01-L02 · 20 questions
- Plate Boundaries: Where the Action Happens Quiz · Y8-U01-L03 · 20 questions
- How Volcanoes Form and Erupt Quiz · Y8-U01-L04 · 20 questions
- Measuring Earthquakes: The Moment Magnitude Scale Quiz · Y8-U01-L06 · 20 questions
- Living with Earthquakes: Nepal, 2015 Quiz · Y8-U01-L07 · 20 questions
- Living with Earthquakes: Japan and Tōhoku, 2011 Quiz · Y8-U01-L08 · 20 questions
- Reducing the Risk: Protect, Predict, Prepare Quiz · Y8-U01-L09 · 20 questions
- Why Live Near a Volcano? The Bay of Naples Quiz · Y8-U01-L10 · 20 questions
- Welcome to Geography Quiz · Y7-U01-L01 · 20 questions