Lesson Y7-U03-L04
Y7-U03-L04 Erosion, Transport and Deposition Quiz: KS3 Geography, Unit 3
20 questions
In partnership with Revision Ninja
Lesson Y7-U03-L04, Erosion, Transport and Deposition: 20 multiple choice questions for the KS3 Geography (National Curriculum), Unit 3: Year 7: Rivers and the Water Cycle, 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 does erosion mean in a river?
- Wearing away the rock and soil of the banks and bed
- Dropping the load when the river slows down
- Carrying the load of rock and mud downstream
- Piling up sediment on flat land near the sea
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What does deposition mean?
- Wearing away the rock of the riverbed over time
- Dropping the load because the river has slowed down
- Carrying the load of rock and mud downstream
- Breaking stones into smaller, rounder pieces by collision
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What is a river's load?
- The salts that the sea adds to the river at its mouth
- The water that flows in the channel near its mouth
- All the rock, stones and mud the river carries
- The energy a river has to wear away the land
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Which erosion process scrapes the bed and banks like sandpaper?
- Hydraulic action, where water forces apart cracks in rock
- Attrition, where stones knock together and round off
- Solution, where water dissolves soft rock like chalk
- Abrasion, where stones scrape against the bed and banks
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Which erosion process slowly breaks stones into smaller, rounder pieces?
- Hydraulic action, water forcing apart cracks in rock
- Abrasion, scraping the bed like sandpaper
- Solution, water dissolving soft rocks like chalk
- Attrition, stones knocking together and wearing down
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Which erosion process dissolves soft rocks such as chalk and limestone?
- Solution, where slightly acidic water dissolves the rock
- Abrasion, where stones scrape against the riverbed
- Hydraulic action, where water forces apart cracks in rock
- Attrition, where stones knock together and get rounder
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Which transport process carries the biggest boulders, rolling them along the bed?
- Traction, where large boulders roll along the bed
- Saltation, where small stones bounce along the bed
- Suspension, where light particles float in the water
- Solution, where dissolved minerals are carried invisibly
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Which transport process carries fine mud floating inside the water?
- Solution, where minerals are dissolved in the water
- Suspension, where light particles float inside the water
- Saltation, where small stones bounce along the bed
- Traction, where large boulders roll along the bed
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Which transport process makes small stones bounce and hop along the riverbed?
- Solution, where dissolved minerals travel invisibly
- Saltation, where small stones bounce and hop along
- Traction, where large boulders are rolled along
- Suspension, where fine mud is held up in the water
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Sand and grit scrape along a riverbed, smoothing it. Which erosion process is this?
- Solution, where water dissolves the rock
- Abrasion, where stones scrape against the bed
- Hydraulic action, where water forces apart cracks
- Attrition, where stones knock together and round off
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A river forces water into a crack in its bank until a chunk of rock breaks off. Which process is this?
- Attrition, stones knocking into each other
- Abrasion, stones grinding against the bank
- Hydraulic action, the force of the water breaking rock
- Solution, the water dissolving the rock slowly
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Acidic river water slowly dissolves a chalk bank. Which erosion process is at work?
- Solution, water dissolving the soft chalk
- Abrasion, stones scraping the bank away
- Hydraulic action, water forcing open cracks
- Attrition, stones knocking and rounding off
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Pebbles near a river's mouth are usually smaller and rounder than pebbles near its source. What best explains this?
- Pebbles near the source are made of soft rock that dissolves away
- The river deposits its largest pebbles as it reaches the sea
- The mouth is higher, so pebbles are carried up there and shrink
- The pebbles were carried further, so attrition has rounded and reduced them
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Which transport process carries dissolved minerals from limestone, so they are invisible in the water?
- Solution, where dissolved minerals are carried in the water
- Saltation, where small stones bounce along the bed
- Traction, where large boulders roll along the bed
- Suspension, where light particles float in the water
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A fast river flows onto flat, gentle land and slows. What will most likely happen to its load?
- It will be transported further, because slow water carries more
- It will be eroded, because slow water scrapes the bed harder
- It will be deposited, because the river has less energy
- It will be dissolved, because the river becomes saltier
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Why does a river deposit its heaviest material first when it slows down?
- Heavy material floats more easily than light material
- Heavy material dissolves before the lighter material does
- Heavy material needs the most energy to carry, so it is dropped first
- Heavy material is always carried in suspension by the river
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Where on a river would you expect the most erosion?
- Near the mouth, where the land is low and flat
- On a flat plain where the river meets the sea
- Near the mouth, where the river spreads into a delta
- In the upper course, where the river is steep and fast
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Where on a river would you expect the most deposition?
- In the upper course, where the river is steep and fast
- Near the source, where the river starts high in hills
- Where the river is narrow and channelled through a gorge
- Near the mouth, where the river slows and spreads out
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A pupil says a slow river erodes the most. Which reply is correct?
- Rivers erode the same amount whatever their speed, so speed does not matter
- Slow rivers erode the banks but never the bed, so they erode least overall
- Slow rivers erode most because they have time to wear rock away
- Fast rivers have more energy, so they erode the most, and slow rivers deposit
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The same river can be eroding in one place and depositing in another at the same time. What best explains this?
- Its water turns salty near the mouth and stays fresh near the source as the seasons change
- Its load stops moving once it reaches the sea, so the river cannot erode any more banks
- Its tributaries stop flowing, so the channel dries up in some places during the year
- Its speed and energy differ between places, so it erodes where fast and deposits where slow
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