Every card in Weather and climate, Year 10: climate change
The whole deck, in order — so you can read it through before your child ever sees it.
- The Quaternary is the geological period we live in, marked by repeated cold glacial periods and warmer interglacials. About how many million years ago did it begin? (number only, to one decimal place)
2.6
HintBetween two and three; closer to three.
WhyThrough the Quaternary, global temperature has swung between long cold glacials and shorter warm interglacials. The evidence comes from ice cores, ocean sediments, tree rings and pollen. We live in an interglacial, and the recent warming is much faster than those natural swings.
- The slow, regular changes in the shape of the Earth's orbit, the tilt of its axis and the wobble of its axis, which alter how the Sun's energy reaches the Earth
Milankovitch cycles
HintThey carry the surname of the Serbian scientist who calculated them.
WhyThe orbit stretches and rounds again about every 100,000 years, the tilt changes over about 41,000 years and the wobble takes about 26,000 years. Together they explain the timing of the glacial and interglacial periods. They are far too slow to explain the warming of the last 150 years.
- A very large volcanic eruption can cool the whole planet for a year or two. How does it do this?
Sulfur dioxide blasted high into the atmosphere forms a haze that reflects sunlight back to space
HintThe culprit is a gas from the eruption, working like a thin sunshade.
WhyAsh falls out of the air within days or weeks. The gas reaches the stratosphere, where it forms tiny droplets that stay for a year or more and bounce some sunlight away. Volcanoes also give out carbon dioxide, but only about 1% of the amount people emit.
- Dark spots on the Sun's surface come and go in a cycle of about 11 years. When there are many sunspots, what is the Sun's output of energy like?
Slightly higher than average
HintThe spots are a sign of an active star, not a fading one.
WhyThe change over a cycle is tiny, about a tenth of one per cent. Longer quiet spells with very few sunspots have been linked with cooler periods such as the Little Ice Age. Satellites have measured the Sun's output since 1978 and show no upward trend, so it cannot explain recent warming.
- Burning a forest to clear land releases carbon dioxide. In what second way does losing the forest add to the carbon dioxide in the atmosphere?
Fewer trees are left to absorb carbon dioxide
HintThink about what a living tree was doing every day before it was felled.
WhyGrowing trees take in carbon dioxide and store the carbon in wood. Clearing them releases that store and also removes the plants that were absorbing the gas. Geographers name deforestation, burning fossil fuels and agriculture as the three human causes of climate change.
- The climate changed naturally long before people affected it. The natural causes are changes in the Earth's ____, large ____ eruptions and variations in the energy output of the ____.
orbit; volcanic; Sun
HintOne is about our path through space, one about our nearest star, one about the ground beneath us.
WhyThese natural factors explain the climate changes of the past, including the glacial periods. None of them explains the rapid warming since about 1850, which matches the rise in greenhouse gases from human activity.
- Why are low-lying island countries such as the Maldives and Tuvalu among the places most threatened by climate change?
Rising sea level could flood much of their land
HintThe highest ground there is only a few metres above the waves.
WhyGlobal sea level rose by about 20 cm between 1901 and 2018 and the rise is speeding up. On a coral island that brings more flooding in storms, salt in wells and farmland, and coastal erosion. In time whole communities may have to move.
- Many large rivers are fed by mountain glaciers. As the glaciers shrink, what is the long-term threat to the people who depend on those rivers?
Less meltwater, so water runs short in the dry season
HintThe ice acts as a savings account that pays out every summer.
WhyGlaciers store winter snow and release it as meltwater in the warm, dry months, when crops and cities need it most. A smaller glacier gives less. In the short term faster melting can cause floods; in the long term the supply dwindles.
- The whitening of coral when unusually warm sea water makes it expel the algae that live in its tissues
Coral bleaching
HintThe second word is what a strong household cleaner does to a coloured cloth.
WhyThe algae give coral its colour and most of its food. If the water cools again soon, the coral can recover. If the heat lasts, the coral starves and dies, and the fish and people that depend on the reef lose out too.
- The same severe drought strikes a lower income country (LIC) and a higher income country (HIC). Why are people in the LIC usually harmed more?
They have less money to prepare, adapt and recover
HintWho can afford irrigation, stored food and imports when the rains fail?
WhyAn HIC can pay for reservoirs, irrigation, crop insurance and imported food. In an LIC more people rely directly on rain-fed farming for food and income, and governments have less to spend on help. So the same change in climate does unequal damage.
- Why might diseases carried by mosquitoes, such as malaria, spread to new areas as the climate warms?
Mosquitoes can survive in places that used to be too cool for them
HintWhat limits where a cold-blooded insect is able to live and breed?
WhyThe insects that carry these diseases need warmth to breed. As temperatures rise, they can live further from the Equator and higher up mountains, bringing disease to people with little immunity or health care for it.
- Changing the way people live so that they can cope with the effects of climate change, without tackling its causes
Climate change adaptation
HintLiving things do something with the same name to suit their habitat.
WhyExamples are growing crops that need less water, storing and saving water where rainfall is becoming less reliable, and building defences or raising homes where the sea is rising. The other approach, cutting the causes, is called mitigation. Both are needed.
- In carbon capture and storage, carbon dioxide is collected from the waste gases of a power station or factory. Where is it then stored?
Deep underground, in porous rock
HintOil and natural gas were found trapped in the same kind of place.
WhyThe gas is compressed, piped away and injected into rock that has tiny spaces to hold it, such as old oil and gas fields or rock filled with salty water. A layer of impermeable rock above stops it escaping. It is a form of mitigation because it keeps carbon dioxide out of the atmosphere.
- Under the Paris Agreement of ____, countries agreed to hold global warming well below ____ °C above pre-industrial levels and to try to limit it to 1.5 °C.
2015; 2
HintThe meeting took place in the middle of the last decade; the limit is a small whole number.
WhyIt is a legally binding international treaty that came into force in November 2016. Each country sets its own targets for cutting emissions and is expected to strengthen them over time. International agreements matter because greenhouse gases from any country affect the whole world.
- A farming region is becoming hotter and drier. Farmers adapt by switching to a new variety of their main crop. What must the new variety be able to do?
Grow well with less water
HintWhich resource is now in short supply for the plants?
WhyDrought-resistant varieties are one way of changing agricultural systems. Others are changing planting dates, growing different crops altogether and using irrigation that wastes less water. All are adaptation: they respond to the change and do nothing to slow it.
- Some dry coastal countries adapt to unreliable rainfall by removing the salt from sea water to make drinking water. What is this process called? (one word)
desalination
HintThe word is built from 'saline', with a prefix that means 'remove'.
WhyIt gives a supply that does not depend on rainfall, which is why it counts as managing water supply. It uses a great deal of energy and is expensive, so it is used mainly by wealthier countries. Cheaper ways to manage supply include storing water, moving it and wasting less.
1★ GCSE-GEOG-WEA-0032
2★ GCSE-GEOG-WEA-0033
3★ GCSE-GEOG-WEA-0034
4★ GCSE-GEOG-WEA-0035
5★ GCSE-GEOG-WEA-0036
6★ GCSE-GEOG-WEA-0037
7★ GCSE-GEOG-WEA-0038
8★ GCSE-GEOG-WEA-0039
9★ GCSE-GEOG-WEA-0040
10★ GCSE-GEOG-WEA-0041
11★ GCSE-GEOG-WEA-0042
12★ GCSE-GEOG-WEA-0043
13★ GCSE-GEOG-WEA-0044
14★ GCSE-GEOG-WEA-0045
15★ GCSE-GEOG-WEA-0046
16★ GCSE-GEOG-WEA-0047
Keep what you learn
Here, nothing is saved. In your child’s own sky every card is scheduled — it comes back just before they’d forget it — and the professor who wrote it is one tap away.