Lesson 3.1.1.4
3.1.1.4 Water, carbon, climate and life on Earth Quiz: AQA Geography, Unit 1
20 questions
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Lesson 3.1.1.4, Water, carbon, climate and life on Earth: 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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Which gas is the main greenhouse gas whose atmospheric concentration is most closely tied to the carbon cycle?
- Oxygen, which is produced by photosynthesis but has very little effect on infrared radiation
- Nitrogen, which makes up the largest share of the atmosphere by volume but is not a greenhouse gas
- Argon, which is a noble gas that is chemically inert and does not absorb infrared radiation
- Carbon dioxide
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What is the relationship between atmospheric water vapour and temperature?
- Water vapour content is independent of temperature and is set only by wind speed and direction
- Cooler air holds more water vapour than warmer air because cold air has more room for moisture
- Warmer air holds more water vapour, so warming can strengthen the atmospheric water cycle
- Warmer air holds less water vapour because higher temperatures slow down the evaporation of water
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Which is an example of a positive feedback between the water and carbon cycles?
- Increased cloud cover reflects sunlight back to space and so cools the surface beneath it
- Vegetation growth increases interception and reduces the amount of water that runs off the land
- Greater ocean uptake of carbon dioxide reduces the amount of carbon dioxide left in the air
- Warming increases water vapour, which traps more heat and causes further warming
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Which is an example of a negative feedback in the carbon cycle?
- Increased plant growth under higher carbon dioxide takes up more carbon, slowing the rise in atmospheric carbon dioxide
- Thawing permafrost releases stored carbon, which warms the climate and thaws more permafrost
- Drier soils release more carbon through faster decomposition of organic matter in the ground
- Melting ice reduces albedo, which increases the absorption of solar energy and warming
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Which human intervention is designed to influence carbon transfers to mitigate climate change?
- Clearance of rainforest for pasture, which removes a major store of carbon from the land
- Increased use of coal-fired generation to meet rising demand for electricity in the region
- Carbon capture and storage at power plants
- Drainage of wetlands for farmland, which releases stored carbon from peat soils into the air
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What is afforestation?
- Cutting down forest to clear land for agriculture, which removes carbon stored in the trees
- Draining peatland to increase soil aeration, which releases carbon held in the peat
- Planting trees on land that has not recently been forested, increasing carbon stored in biomass
- Burning fossil fuels in forested areas to clear land quickly for new development
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Which best describes a key life-supporting role of the carbon and water stores?
- They regulate climate and supply the water and nutrients that ecosystems depend on
- They are fixed and unaffected by biological activity, so they do not respond to living systems
- They prevent all precipitation from reaching the ground, keeping soils completely dry at all times
- They store only energy and have no role in ecosystems or the supply of nutrients to plants
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Which intervention would most directly reduce carbon dioxide entering the atmosphere from energy use?
- Clearing peatland for fuel extraction, which releases stored carbon as the peat is drained and burnt
- Switching from coal-fired generation to wind-generated electricity
- Increasing cement production for new construction, which releases carbon during the chemical process
- Expanding coal mining for export, which increases the supply of fuel for burning abroad
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Which change in climate would most likely increase soil decomposition rates?
- Colder and drier conditions that limit microbial activity and slow the breakdown of organic matter
- Warmer and wetter conditions that favour microbial activity
- Permanently frozen ground with no unfrozen water, which keeps decomposition at a standstill
- Waterlogged, oxygen-free conditions that stop all microbes from breaking down any organic matter
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Which feedback could be triggered by rising temperatures in the Arctic?
- Rising temperatures cause the ocean to absorb permanently less carbon dioxide from the atmosphere
- Melting sea ice lowers albedo, so more solar energy is absorbed and warming accelerates
- Melting sea ice raises albedo, which reflects more energy back to space and cools the Arctic
- Warming increases ice cover, which reduces the energy absorbed and so limits further warming
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The Clausius-Clapeyron relation implies roughly what increase in the air's water-holding capacity per degree Celsius of warming?
- About 70 per cent per degree Celsius, which would make the atmosphere saturated almost at once
- About 0.07 per cent per degree Celsius, which is the rate of change near the freezing point
- About 0.7 per cent per degree Celsius, which is a small change that is hard to detect in data
- About 7 per cent per degree Celsius
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Why could rainfall falling as more intense storms increase flood risk even if the annual total is unchanged?
- Intense rainfall always infiltrates more readily into the soil than gentle, prolonged rainfall does
- Storms reduce overland flow by increasing evaporation from the ground before water can run off
- Annual totals alone determine flood peaks, so the intensity of individual storms has no effect
- Intense rainfall exceeds infiltration capacity, producing more overland flow and quicker peaks
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Which statement best evaluates human intervention in the carbon cycle as a mitigation strategy?
- Its effectiveness depends on scale, permanence and whether the stored carbon is protected from re-release
- Mitigation has no effect unless it applies to the lithosphere, where most carbon is stored
- Mitigation is effective only if it removes all atmospheric carbon immediately, in a single season
- Mitigation is effective whenever it reduces only natural emissions, regardless of human activity
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Which two linked outcomes would most likely result from increased deforestation in a tropical rainforest?
- Increased evapotranspiration and reduced atmospheric carbon dioxide, because the cleared land absorbs more
- Greater interception and reduced runoff, which lowers the amount of carbon dioxide in the air
- No change in carbon or water fluxes because the soils of the rainforest remain intact after clearance
- Reduced evapotranspiration and carbon release, which can lower regional rainfall and raise atmospheric carbon dioxide
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A climate model predicts warming of 2 degrees Celsius. Which water-cycle change is consistent with the Clausius-Clapeyron relationship?
- Unchanged moisture because warming does not affect the rate of evaporation from surfaces
- Less atmospheric moisture and fewer intense rainfall events, because warmer air loses its water
- Lower evaporation because air holds less water vapour when it is warmed by the sun
- Greater atmospheric moisture and more intense precipitation events
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Which is a key role of the carbon cycle in the atmosphere-ocean system?
- Oceans prevent carbon dioxide from ever dissolving in water, which keeps all of it in the air
- Oceans release all atmospheric carbon dioxide through photosynthesis by floating algae at the surface
- Oceans store carbon dioxide only as gas bubbles trapped in the ice of polar regions
- Oceans absorb carbon dioxide from the atmosphere, dissolving it and forming carbonic acid and bicarbonate
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Which factor would strengthen the positive feedback from warming and melting permafrost?
- Lower soil temperatures caused by an increase in winter snow cover that insulates the ground
- Greater release of stored methane and carbon dioxide as previously frozen organic matter decomposes
- Greater ice cover reflecting more solar energy back into space from the frozen landscape
- Reduced microbial activity in thawed soils, which keeps organic matter from breaking down
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Which statement best distinguishes mitigation from adaptation in relation to climate change?
- Both terms refer only to changes in land use, with no link to greenhouse gases or the climate system
- Mitigation reduces greenhouse gas emissions or enhances sinks, while adaptation adjusts to the impacts of climate change
- Adaptation removes carbon from the atmosphere, while mitigation adjusts communities to rising temperatures
- Mitigation adjusts to flooding and drought, while adaptation is the reduction of emissions from industry
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What does carbon sequestration mean?
- The dissolving of carbon in rainwater without any storage, so that it leaves the basin quickly
- The long-term storage of carbon in biomass, soils, oceans or geological formations, removing it from the atmosphere
- The rapid release of carbon through combustion of fuels, which returns it to the air within hours
- The movement of carbon between plants and animals only, within the food chain of an ecosystem
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Which statement shows a link between the water and carbon cycles in the atmosphere?
- Water vapour is the most abundant greenhouse gas, and its concentration responds to temperature that is partly set by carbon dioxide
- Carbon dioxide is the most abundant greenhouse gas by volume in the atmosphere, well above water vapour
- Water vapour acts only as a store and never absorbs energy, so it has no effect on the climate
- Water vapour and carbon dioxide have no interaction in the atmosphere, because they act independently
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