Lesson Y7-U03-L07
Y7-U03-L07 Reading the Flow: Hydrographs Quiz: KS3 Geography, Unit 3
20 questions
In partnership with Revision Ninja
Lesson Y7-U03-L07, Reading the Flow: Hydrographs: 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 unit is river discharge measured in?
- Cumecs, cubic metres of water per second
- Degrees of slope per kilometre of the valley floor
- Kilometres of channel that the river flows each day
- Millimetres of rain falling on the basin each hour
-
What do the bars at the top of a hydrograph show?
- The width of the river channel at each hour
- The river's discharge at each hour
- The rainfall in millimetres for each hour
- The height of the land above sea level
-
What does the curved line on a hydrograph show?
- The gradient of the valley sides over time
- The temperature of the river at each hour
- The rainfall in millimetres for each hour
- The discharge, or how much water flows in the river
-
What is peak discharge?
- The time gap between peak rainfall and the moment the river flow starts to rise
- The highest point of the discharge curve, when the river is fullest
- The lowest point of the river before a storm arrives over the basin, at the start
- The total rainfall that falls during the storm across the whole drainage basin
-
What is lag time?
- The gap in time between peak rainfall and peak discharge
- The number of hours the river stays at its lowest
- The time it takes for the rain to start falling
- The time between two storms in the same week
-
Which peak happens first on a hydrograph?
- Peak storage, when the water sinks into the soil
- Peak lag time, when the gap is biggest
- Peak discharge, when the river is at its fullest
- Peak rainfall, when the rain bars are tallest
-
When reading a value on a hydrograph, which order should you follow?
- Up to the line first, then along to the hour
- Down from the top bars, then along the bottom axis
- Along to the hour, up to the line, then across to the number
- Across to the number first, then down to the time
-
What does the bottom axis of a hydrograph show?
- The rainfall in millimetres for each bar
- Time, in hours, going from left to right
- The height of the land above sea level
- The discharge in cumecs at each point
-
A hydrograph shows peak rainfall at hour 6 and peak discharge at hour 16. What is the lag time?
- 22 hours
- 10 hours
- 6 hours
- 4 hours
-
Peak rainfall is at hour 5 and peak discharge at hour 14. What is the lag time?
- 9 hours
- 5 hours
- 14 hours
- 19 hours
-
Peak rainfall is at hour 4 and peak discharge at hour 12. Which answer gives the lag time correctly?
- 3 hours, found by dividing the difference between the two peaks in half
- 8 hours, subtracting peak rainfall from peak discharge
- 16 hours, found by adding the two peak hours together to make a total
- 12 hours, which is simply the hour of peak discharge with nothing taken away
-
On a hydrograph, the discharge at hour 0, before a storm, is about 8 cumecs. What does that tell you about the river at that time?
- The river was low, flowing gently before the rain arrived
- The river was completely dry with no water in it
- The river was already at its peak flood level
- The river had just reached its source in the hills
-
A hydrograph's discharge peaks at hour 16 at about 38 cumecs. What is the best description of the river at that hour?
- The river is at its fullest, carrying the most water
- The river is at its lowest, after the storm has passed
- The river is at its source, high in the hills
- The river has no water flowing, so the channel is dry
-
Why does peak discharge happen hours after the rain has fallen?
- The rain takes hours to start falling after the storm
- The river is frozen until the rain has stopped falling
- The river must fill its channel before any water can move
- Rainwater takes time to flow over the land and soil into the river
-
A storm falls on a city with many hard, paved surfaces. How would its hydrograph most likely change?
- A shorter lag time, because water runs off quickly into the river
- Peak discharge would happen before peak rainfall
- No change, because paving has no effect on run-off
- A longer lag time, because water soaks into the paving
-
Which change to a hydrograph would most likely show a flood arriving quickly?
- A river with no rainfall recorded on its bars
- A lower peak discharge with the same rainfall
- A longer gap between peak rainfall and peak discharge
- A shorter gap between peak rainfall and peak discharge
-
Explain why a hydrograph shows discharge continuing to rise after the rain has stopped.
- The rain bars are still growing after the storm ends, adding more water to the river
- The river has been dammed by the sea and cannot flow out until the tide turns
- The discharge is measured in mm, so the number keeps going up as the hours pass
- Water from far upstream and the land still takes time to reach the river
-
Two rivers had the same storm, but one peaked after 4 hours and the other after 12 hours. Which reason best explains this?
- The 12 hour river must have had more rain than the 4 hour river during the storm
- Rivers in the same storm always peak at the same hour, so the difference is a mistake
- The 12 hour river may have a bigger, slower catchment, so water takes longer to reach it
- The 4 hour river has far less rain falling on its basin than the other river did
-
Which statement about a hydrograph's peaks is correct?
- Peak rainfall always comes after peak discharge on a storm graph
- Peak discharge and peak rainfall always happen in the same hour
- Peak rainfall is measured in cumecs, and discharge in millimetres
- Peak discharge comes after peak rainfall, with the lag time between them
-
A pupil says the river floods the moment it rains. Which correction is right?
- The river floods before the rain, because the lag time comes first
- Floods happen only in winter when the rivers are frozen
- The river floods at the same moment as the rain, but only briefly
- The river rises after the rain, because water must flow to it, creating a lag
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