Lesson 3.2.3.4
3.2.3.4 Urban climate Quiz: AQA Geography, Unit 2
20 questions
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Lesson 3.2.3.4, Urban climate: 20 multiple choice questions for the AQA Geography (7037), Unit 2: Human geography, written with Revision Ninja.
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The 20 questions
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What is the urban heat island effect?
- Rural areas being warmer than cities because of farm machinery
- Urban rainfall falling only at the edges of the city
- Urban areas being warmer than surrounding rural areas, mainly due to heat-absorbing surfaces and waste heat
- Cities cooling faster at night because of tall buildings
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Which feature of urban areas most directly reduces wind speed at street level?
- Wide open parks with no tree cover
- Dry, bare soil in rural market gardens
- Flat, open car parks at the edge of the city
- Tall buildings and closely spaced structures that create friction and channel flows
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Which air pollutant is most associated with photochemical smog in cities?
- Methane released from rice paddies
- Sulphur dioxide from volcanic eruptions
- Carbon dioxide released from natural sources
- Ozone formed from nitrogen oxides and volatile organic compounds in sunlight
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Urban areas often experience more intense thunderstorms than surrounding rural areas. Which mechanism is most commonly cited?
- Urban heat creating convective uplift and particles acting as cloud condensation nuclei
- Strong upward flows over rural forests only
- Reduced air temperature over the city centre
- Complete absence of water vapour in the city air
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A city's air quality is assessed as poor on days with stagnant high-pressure weather. Why is pollution often worst in these conditions?
- Strong winds disperse pollution quickly over the city
- Stable air limits vertical mixing, so pollutants build up near the surface
- Cold air is less dense, so pollution rises rapidly
- Heavy rain washes all pollutants out of the air
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Which policy is most likely to reduce urban particulate and photochemical pollution?
- Removing all public transport services from the centre, pushing travellers onto private cars and increasing traffic on main roads
- Expanding motorway capacity through the city centre, speeding traffic flows so more vehicles pass through the core each hour
- A low emission zone restricting the most polluting vehicles from entering the city centre
- Increasing the number of diesel-fuelled delivery vans operating in the centre, which expands the number of commercial journeys each day
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Which change in rainfall pattern is most often linked to urban areas?
- A complete absence of rainfall within city limits, with dry conditions persisting throughout every season because of the urban surface
- Increased precipitation intensity and frequency of heavy showers downwind of cities
- Rainfall only at night and never during the day, because the heat island keeps cities dry in daylight hours and wets them after dark
- A fall in total rainfall across all seasons, as the heat island suppresses cloud formation and reduces annual precipitation in cities
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A city centre is 4 degrees Celsius warmer than its rural surroundings on a calm night. Which surface property most likely explains the difference?
- Dense forest cover that traps heat near the ground, since tree canopies hold warm air beneath them through the night and day
- Reflective white surfaces that bounce heat away from the city, keeping streets cool throughout the day and throughout the night as well
- High heat storage in dark, dense building materials and asphalt that release heat after sunset
- Large areas of open water that cool the air quickly after dusk, because water surfaces lose their stored heat within a few hours
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Which measure would most effectively reduce the urban heat island effect?
- Increasing green cover and reflective roofing materials
- Removing trees to increase wind speed at street level, on the assumption that open streets will clear the heat faster than shaded ones
- Raising building density in every neighbourhood, so that more heat-absorbing structures sit close together across the entire city
- Replacing all green space with dark asphalt, which increases heat absorption across every neighbourhood and raises temperatures further
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Which combination best describes the physical impact of urban structures on wind?
- Wind speeds increased uniformly at all heights across the city, because buildings act as smooth surfaces that let air flow freely
- No measurable change in wind compared with rural areas, since buildings do not affect the flow of air at street level or above
- Wind speeds reduced at ground level, with channelling and turbulence between tall buildings
- Wind direction fixed to a single compass direction everywhere in the city, because street layouts force all air to move the same way
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A city's sulphur dioxide concentration rises during a winter with heavy domestic coal burning. Which problem does this most directly cause?
- Increased ozone in the stratosphere above the city, which blocks ultraviolet radiation and reduces skin problems for residents
- Greater depth of the urban heat island at noon, with surface temperatures rising to their highest values during the middle of the day
- Photochemical smog in the early morning only, because sulphur dioxide reacts with sunlight at dawn and disperses before midday
- Acid precipitation and respiratory problems for residents
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Which argument best evaluates the claim that urban climate change is entirely caused by heat from traffic?
- Heat from traffic is one factor, but surface materials, building layout and pollution also matter
- Urban climate is determined only by distance from the coast, with inland cities behaving identically whatever their surfaces or layout
- Traffic accounts for all urban heat because it is the largest energy source in every city, outweighing all other sources combined
- Traffic has no effect on urban climate or air quality, since vehicle emissions disperse quickly and never reach homes
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An urban area has more frequent fog than the countryside. Which explanation best matches the physical processes described in urban climate?
- Tall buildings cause fog to rise and disappear quickly, so that it is rarely seen at street level and clears within minutes
- Cities have much lower humidity than rural areas, so fog forms only in the countryside where moisture is retained by vegetation
- The city releases more water vapour and particles, which can create fog under cool, calm conditions
- Urban surfaces prevent any condensation at night, because heat stored in buildings keeps moisture in the air as a vapour
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Which strategy best addresses urban photochemical smog in a city with high traffic volumes?
- Building more fossil-fuelled power plants next to housing, so that heat and emissions are supplied close to where people live
- Encouraging open-air burning of waste in suburbs, since burning helps disperse the pollutants that fuel photochemical smog
- Reducing vehicle emissions of nitrogen oxides and volatile organic compounds through clean-air policies
- Increasing the number of petrol stations in the centre, which brings more fuel sales and more refuelling trips into the core
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A city introduces a pollution charge on the most polluting vehicles entering its centre. What is the most likely short-term effect on local air quality?
- No change in air quality because the charge is ignored by almost all drivers, who continue to enter the zone as before the charge
- Lower roadside concentrations of nitrogen dioxide and particulates in the charged zone
- A rise in nitrogen dioxide as vehicle numbers grow, because drivers switch to older and more polluting cars to avoid the charge
- An immediate increase in urban temperatures because the charge diverts vehicles onto roads with more heat-absorbing surfaces
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Which statement about urban temperature patterns is most accurate?
- The heat island effect is strongest during the middle of the day only, because the sun heats urban surfaces far more than rural ones
- The heat island effect is usually strongest at night, when urban surfaces release stored heat
- The heat island effect disappears completely in summer, because the high solar input heats rural and urban areas to the same level
- Urban areas are always colder than the countryside at night, since buildings block the warmth that rural fields radiate after dark
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Which combination best describes the effects of urban precipitation on pollutants?
- Rainfall can wash particulates out of the air but may also carry pollutants into drains and water bodies
- Rainfall removes pollutants from the air but produces no effect on water quality, because pollutants do not enter drains or rivers
- Rainfall always increases pollutant concentrations in the air, because water droplets trap particles and hold them near the ground
- Rainfall has no effect on pollutants in urban environments, since particles and gases are unaffected by water in any form
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A city's modelled air quality data show high NO2 along a single arterial road. Which step would best confirm that traffic is the main source?
- Record the temperature of the city's river at noon for a single week, then compare the readings with the traffic count on the bridge
- Measure rainfall totals in the city centre across several seasons, comparing the results with the number of cars parked near the roadside
- Compare concentrations at roadside and background sites to see whether the signal falls off with distance from the road
- Count the number of trees in the nearest park and compare the total with the number of residential addresses on the main road
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Which argument best supports the claim that urban climate effects can be modified by planning?
- Planning only changes temperatures in rural areas, where farms and hedges can be altered to shape the local climate and rainfall
- Planning can change building layout, green space and surface materials, which alter heat, wind and rainfall patterns
- Planning makes the urban heat island stronger by removing trees and open land, since every new building adds heat to the district
- Planning has no influence because climate is set by the sun alone, so no local decision on buildings or open space can alter it
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Which measure best combines urban temperature and air quality data to indicate a health risk in a city?
- Days with high rainfall and low wind speed together, which keep the air clean by washing pollutants out of the air near the ground
- Days with high temperatures and high ozone concentrations together
- Days when the city has its highest number of tall buildings, which are associated with taller structures and wider street canyons
- Days when traffic counts are lowest across the city, which are usually quiet bank holidays with little road activity in any district
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