Lesson 3.1.4.1
3.1.4.1 Glaciers as natural systems Quiz: AQA Geography, Unit 1
20 questions
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Lesson 3.1.4.1, Glaciers as natural systems: 20 multiple choice questions for the AQA Geography (7037), Unit 1: Physical geography, written with Revision Ninja.
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The 20 questions
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In a glacial system, what is the accumulation zone?
- The meltwater channel beneath the glacier, which carries water away from the ice base
- The part of a glacier where ice loss through melting exceeds gain over the year
- The part of a glacier where snow gain exceeds loss over the year
- The moraine deposited at the glacier terminus, which marks the furthest extent of the ice
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Which term describes loss of ice from a glacier through melting, sublimation and calving?
- Ablation
- Regelation, which is the refreezing of meltwater within cracks in the ice
- Accumulation, which is the gain of snow and ice from snowfall and avalanches each year
- Nivation, which is the frost weathering and erosion beneath a snow patch on a slope
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What is the equilibrium line on a glacier?
- The boundary of the glacier's terminal moraine, which marks the outer edge of the debris
- The line where meltwater flows into a lake at the glacier's snout during the summer months
- The highest point of the glacier surface, which marks the top of the accumulation area
- The boundary between the accumulation zone and the ablation zone, where gains equal losses
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A glacier has an accumulation of 2.4 m water equivalent per year and an ablation of 1.6 m water equivalent per year. What is its mass balance?
- +4.0 m water equivalent per year, which is obtained by adding the accumulation and the ablation together
- +1.6 m water equivalent per year, which is equal to the ablation value given in the question
- -0.8 m water equivalent per year, because the ablation is subtracted from accumulation with the wrong sign
- +0.8 m water equivalent per year
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Which statement describes a glacial budget?
- A count of the number of moraines on a glacier, which shows how often the ice has advanced
- The balance between accumulation and ablation over a period, which indicates whether the glacier is growing or shrinking
- A record of the annual income from glacier tourism, which is used to fund the monitoring of the ice
- A measure of the glacier's colour in summer, which reflects the amount of debris on its surface
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Which type of glacier is frozen to its bed and erodes the landscape only slowly?
- A warm-based glacier, which has meltwater at its bed that allows the ice to slide and erode
- A valley glacier with abundant basal meltwater, which slides rapidly over its bed
- A surge-type glacier that moves rapidly in short episodes, eroding its bed as it goes
- A cold-based glacier
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Which glacier type is characterised by meltwater at its base that enables basal sliding?
- A cold-based glacier, which is frozen to its bed and so has little basal sliding
- A polar ice cap frozen to bedrock, which keeps its base below the freezing point
- A warm-based glacier
- A sea ice shelf floating on water, which is not in contact with any rock bed at all
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Which factor best explains why the position of the equilibrium line varies between glaciers?
- Differences in the colour of the glacier surface only, which affects how much light is absorbed
- Differences in the length of the glacier's name, which has no effect on its physical processes
- Differences in climate, aspect and altitude that change the balance of snowfall and melting
- Differences in the number of tourists visiting the glacier, which change the amount of melt
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Which is the best description of historical patterns of ice advance and retreat?
- Glaciers are unaffected by climate and move at random, without any link to the weather or the seasons
- Glaciers have always remained the same size since the last ice age, with no change in their extent
- Glaciers only advance and never retreat, so their extent keeps growing from one century to the next
- Glaciers have advanced and retreated over time in response to climate, leaving evidence in landforms and deposits
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Which statement about ablation and accumulation in a glacier is correct?
- They are only relevant to periglacial environments, where the ice is not present at all
- They describe the colours of ice in the glacier, which vary with the amount of air bubbles
- They are the two main inputs and outputs of the glacier mass budget
- They are the names of two different glacier types, which are distinguished by their basal conditions
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A glacier's terminus retreats even though its accumulation zone is unchanged. Which explanation is most likely?
- Ablation at the terminus has increased, for example through warmer summers
- Accumulation has increased in the accumulation zone, which is pushing the ice downvalley faster
- The glacier has become frozen to its bed, which stops the ice from moving forwards
- The glacier has no ablation at all, so the terminus can only retreat through internal deformation
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Which concept links ice movement to the balance of inputs and outputs in a glacier system?
- The glacial budget, which governs flow and the ice's response to accumulation and ablation
- The sediment cell, which governs deposition and erosion along a stretch of the coastline
- The sea-level curve, which governs the rate of erosion on exposed coastal cliffs
- The aridity index, which governs the distribution of vegetation in drylands and deserts
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Which statement describes a glacier as a dynamic natural system?
- Glaciers continually exchange energy and mass with their environment and respond to changes in climate
- Glaciers have no feedback with the atmosphere or ocean, so their behaviour is entirely internal
- Glaciers are closed systems with no energy input, so their mass can only decline over time
- Glaciers are static features with no exchange of energy or mass with the atmosphere or the ground
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Which feedback is associated with glacier retreat through changes in surface reflectivity?
- Carbon-sink feedback in which glaciers store more carbon in their ice and reduce the air's CO2 level
- Hydrological feedback in which rivers dry up as the glaciers shrink, reducing the water supply to lowlands
- Negative feedback in which retreating ice reflects more energy back to space and so cools the surface
- Ice-albedo feedback, in which darker exposed surfaces absorb more energy and accelerate melting
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What is regelation in a glacier?
- The melting of ice under pressure and its refreezing when the pressure falls
- The frost weathering and erosion that occurs beneath a snow patch on a slope
- The loss of ice by melting, sublimation and calving from the glacier surface
- The gain of snow and ice each year through snowfall and avalanches onto the surface
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Which glacier zone experiences net melt in summer and lies below the equilibrium line?
- The ablation zone
- The accumulation zone, which is found above the equilibrium line where snow builds up
- The moraine zone, which is the debris-covered ground beyond the snout of the glacier
- The firn zone, which lies within the accumulation area as compacted granular snow
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A glacier has an accumulation area of 12 km2 and an ablation area of 8 km2. What percentage of the glacier surface is in the accumulation area?
- 12 per cent, which is obtained by dividing the accumulation area by one hundred
- 60 per cent
- 150 per cent, which is obtained by dividing the accumulation area by the ablation area
- 40 per cent, which is the share of the glacier surface occupied by the ablation area
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Which statement about the equilibrium line altitude (ELA) is correct?
- The ELA is the same for all glaciers in the world, regardless of the local climate
- A higher ELA indicates that a glacier is losing mass, because the accumulation zone has shrunk
- A higher ELA indicates that a glacier is gaining mass, because the ablation zone has shrunk
- The ELA is the altitude of the glacier's highest peak, which is fixed by the terrain
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What is firn on a glacier?
- A layer of debris that is deposited at the glacier snout at the end of the melt season
- A layer of volcanic ash that sits on the glacier surface after nearby eruptions
- A type of meltwater channel that carries water beneath the ice to the snout
- Granular snow that has survived one or more melt seasons and is compacting into ice
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Which glacier process is most associated with the formation of crevasses?
- Plucking, which removes blocks from the bed but does not affect the surface cracks at all
- Compressional flow, which squeezes ice and creates folds rather than open cracks
- Extensional flow as the ice stretches over a steep slope or bedrock step
- Internal deformation with no change in the surface of the ice in any part of the glacier
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