Lesson Y8-U01-L06
Y8-U01-L06 Measuring Earthquakes: The Moment Magnitude Scale Quiz: KS3 Geography, Unit 7
20 questions
In partnership with Revision Ninja
Lesson Y8-U01-L06, Measuring Earthquakes: The Moment Magnitude Scale: 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
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What is a seismometer?
- A map showing the depth of the ocean floor and the position of the sea trenches
- A scale that weighs rock samples from a volcano
- An instrument that detects and records the shaking of the ground
- A tool that measures rainfall in millimetres each day
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What is a seismograph?
- A device for measuring air pressure at height
- A map showing where earthquakes have happened, with the dates of each quake
- The wiggly line a seismometer draws to record shaking
- A chart of rainfall for each month of the year
-
What does the heavy weight inside a seismometer do?
- It stays still while the ground moves, so the movement can be recorded
- It heats the instrument to keep it working in cold conditions during the winter months
- It pushes the ground down to make it stable
- It sends a signal to warn people of the quake
-
What does a taller wiggle on a seismograph show?
- A longer period of calm before the quake
- A stronger, more violent movement of the ground
- An earthquake that happened under the sea
- A deeper focus, far below the surface, where the rocks are much more solid
-
What is the moment magnitude scale?
- The scale that replaced the Richter scale for measuring large earthquakes
- A map scale used to show distances on Ordnance Survey maps
- A scale that measures wind speed in storms and the height of waves at sea
- A scale for measuring the depth of soil layers
-
What does it mean that the magnitude scale is logarithmic?
- The scale only goes up to 5 before it starts again
- Each whole step up means about ten times more shaking, not one more
- Each whole step means exactly one more unit of energy
- The scale is counted in steps of half a unit each, so each step adds a little more shaking
-
About how many times more energy is released for each whole step of magnitude?
- About 32 times
- About 2 times
- About 10 times
- About 100 times
-
Why do scientists use several recording stations for one earthquake?
- To make the earthquake look bigger on the map so that it is easier for people to see
- Because each station records a different earthquake
- Because one station cannot record shaking at all
- To check the results and make the measurements more reliable
-
How many times more shaking is a magnitude 8 earthquake than a magnitude 6 earthquake?
- About 1,000 times more
- About 100 times more
- About 2 times more
- About 20 times more
-
How much more shaking does a magnitude 5 earthquake produce than a magnitude 4?
- About 32 times more
- About 2 times more
- About 100 times more
- About 10 times more
-
Which pair of earthquakes would differ by about 1,000 times in shaking?
- Magnitude 5 and magnitude 6
- Magnitude 4 and magnitude 7
- Magnitude 6 and magnitude 6.5
- Magnitude 4 and magnitude 5
-
A distant seismograph station is compared with a nearby one for the same earthquake. What would its record show?
- Identical wiggles, because distance does not affect shaking
- Smaller wiggles, because shaking weakens with distance from the focus
- Taller wiggles, because distant stations pick up stronger waves
- No wiggles at all, because waves cannot travel far through the ground and so the station stays quiet
-
A pupil says magnitude 6 is twice as strong as magnitude 3. Which response is best?
- No, the scale is logarithmic, so three whole steps mean about 1,000 times more shaking
- Yes, because each step means exactly two times more shaking
- Yes, because magnitudes are measured along a straight line, so each step adds the same amount of shaking
- No, magnitude 3 is stronger, because lower numbers mean more energy
-
Which statement about a seismometer is correct?
- It moves with the ground, so it records no shaking at all
- It keeps a heavy weight still so that the moving ground can be measured
- It measures wind speed through the ground
- It is used only on the ocean floor, where it records shaking from the waves of the sea
-
A quake is recorded as magnitude 6. Why would geographers still check readings from other stations?
- Because stations must all share the same heavy weight
- To confirm the magnitude with several independent recordings
- Because one station always gives a wrong reading, so the others are needed to correct it
- Because magnitude changes depending on the weather
-
Which magnitude shakes the ground about 10 times more than magnitude 3?
- Magnitude 3.5
- Magnitude 5
- Magnitude 6
- Magnitude 4
-
Why is a logarithmic scale useful for measuring earthquakes?
- It makes all earthquakes look equally strong on a map
- It removes the need for seismometers at all stations, because the scale can be read from a map
- It stops scientists from comparing different earthquakes
- Earthquakes vary enormously in energy, so a compact scale can show both small and huge quakes
-
Two stations record similar wiggle heights for the same quake. What can be concluded?
- The two stations must have recorded different earthquakes
- The stations must be faulty and should be discarded
- The earthquake must have happened under the ocean, which is why the two readings agree closely
- The two readings are consistent, so the magnitude estimate is more reliable
-
Which statement best explains why a magnitude 8 earthquake is far more dangerous than a magnitude 6?
- It is always closer to cities, so it shakes them more
- It is measured by a different instrument that exaggerates the number
- It only shakes the ground for a shorter time, so people have more time to escape from their homes
- It releases far more energy, giving much stronger shaking over a much wider area
-
Why should a pupil avoid describing the magnitude scale as a simple counting scale?
- It counts the number of people killed by the quake
- Magnitude is measured in degrees, like temperature, using a thermometer placed in the ground
- Each step means about ten times more shaking, so the numbers grow very quickly
- The scale runs backwards, with bigger numbers meaning weaker quakes
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