Every card in Energy, Year 10: efficiency and energy resources
The whole deck, in order — so you can read it through before your child ever sees it.
- What is done to the moving parts of a machine, such as a bicycle chain or an engine, to reduce the energy wasted by friction?
They are lubricated with oil or grease
HintThink what a squeaky hinge needs.
WhyWhere two surfaces rub, friction transfers energy to thermal stores that are of no use. A film of lubricant lets the surfaces slide past each other more easily, so more of the energy supplied goes where it is wanted. Lubrication is one of the two methods AQA names for reducing unwanted transfers.
- A material with a higher thermal conductivity transfers energy by conduction at a ____ rate.
higher
HintCompare how quickly a metal spoon and a wooden spoon warm up in the same hot drink.
WhyThermal conductivity describes how readily a material passes energy on by conduction. Metals have large values; brick, wood and trapped air have small ones. AQA does not ask for a definition of the term, only this link to the rate of transfer.
- Two houses are identical except that one has thicker walls. Both are heated to 20 °C and the heating is switched off on a cold night. Which house cools more slowly?
The one with the thicker walls
HintThink of the difference between a thin jumper and a chunky one made of the same wool.
WhyEnergy escaping from the house has to be conducted through the walls. The further it has to travel through the material, the lower the rate of transfer, so the house stays warm for longer. AQA expects pupils to describe how wall thickness affects the rate of cooling of a building.
- A builder can make a wall from material A, which has a high thermal conductivity, or material B, which has a low thermal conductivity. The walls are equally thick. Which choice keeps a heated house warm for longer?
Material B
HintYou want the one that passes energy through itself reluctantly.
WhyA low thermal conductivity means a low rate of energy transfer by conduction, so less energy leaks out through the wall each second and the house cools slowly. This is why cavity walls are filled with foam and lofts are lined with mineral wool.
- A material with a low thermal conductivity, used to reduce unwanted energy transfer by heating
A thermal insulator
HintLoft wool, foam and a tea cosy are all examples.
WhyMost of these materials work by trapping air, which conducts very poorly. Wrapping a hot-water tank or lining a loft with one cuts the rate at which energy escapes, so less fuel is needed to keep things warm.
- A lamp is supplied with 50 J and gives out 10 J as light. What is its efficiency as a percentage? (number only)
20
HintCompare the useful output with the total supplied, then scale to a hundred.
WhyEfficiency = useful output energy transfer ÷ total input energy transfer, so 10 ÷ 50 = 0.2, which is 20%. The other 80% heats the lamp and the room. AQA expects the equation to be recalled.
- efficiency = ____ output energy transfer ÷ total input energy transfer
useful
HintOnly the part of the output that does the job you wanted is counted on top.
WhyThe same equation works with powers: useful power output ÷ total power input. Both versions must be recalled. The answer can be left as a decimal, such as 0.25, or multiplied by 100 to give a percentage.
- An electric motor has a total power input of 400 W and a useful power output of 300 W. What is its efficiency as a decimal? (number only)
0.75
HintPut the smaller figure over the larger one.
WhyEfficiency = useful power output ÷ total power input = 300 ÷ 400. AQA expects this power form of the equation to be recalled too. As a percentage the same answer is 75%.
- A motor has an efficiency of 0.6. It is supplied with 2000 J. How much useful energy does it transfer?
1200 J
HintThe efficiency is the fraction of the input that comes out usefully.
WhyRearranging the efficiency equation gives useful output = efficiency × total input = 0.6 × 2000. The remaining 800 J is dissipated, mostly heating the motor and its surroundings.
- A pupil calculates the efficiency of a machine as 1.2. Without seeing the working, how do you know there is a mistake?
A machine cannot give out more useful energy than it is supplied with
HintAsk what a value above 1 would say about the output compared to the input.
WhyEnergy is conserved, so the useful output is at most equal to the total input, and in practice always less because some is dissipated. Efficiency is therefore never above 1, or 100%. The usual cause of an answer like 1.2 is dividing the input by the output.
- A hot-water tank wastes energy by heating the cupboard around it. What change would make heating the water more efficient?
Insulate the tank
HintSlow down the escape of energy from the hot metal to the air.
WhyWrapping the tank in a material of low thermal conductivity cuts the rate at which energy leaks out, so a bigger share of the energy supplied stays in the water. Efficiency is raised by reducing the wasted transfer, not by supplying more energy. Describing ways to increase efficiency is Higher tier content in AQA's specification.
- An energy resource that is naturally replaced, or can be replaced, while it is being used
A renewable energy resource
HintWind, waves and sunlight all belong to this group.
WhyThe test is whether the resource is replaced at least as fast as we use it. Wind, hydro-electricity, the tides, the Sun, water waves, geothermal and bio-fuel all pass it. Coal, oil, gas and nuclear fuel do not.
- The three main uses of energy resources are ____, ____ generation and ____.
transport; electricity; heating
HintThink of a car, a power station and a gas boiler.
WhyDifferent resources suit different uses. Oil products are used mostly for moving vehicles, gas for warming buildings and for power stations, and wind and nuclear almost entirely for power stations. AQA asks pupils to compare how resources are used under these three headings.
- Why is a wind farm a less reliable energy resource than a gas-fired power station?
It only generates when the wind is blowing
HintConsider what each one needs in order to run, and who controls the supply of it.
WhyA reliable resource can deliver energy whenever it is needed. Gas can be burned on demand, day or night, but nobody can switch the weather on. Solar and wave power have the same weakness, whereas the tides, although they come and go, are predictable.
- Which renewable energy resource uses heat from hot rocks deep underground? (one word)
Geothermal
HintThe name is built from the Greek words for 'Earth' and 'heat'.
WhyAQA lists nine main resources: fossil fuels, nuclear fuel, bio-fuel, wind, hydro-electricity, the tides, water waves, the Sun and this one. It is reliable, because the rocks stay hot whatever the weather, but it is only practical in certain places.
- A nuclear power station releases no carbon dioxide while it runs. Why is nuclear fuel still classed as non-renewable?
The fuel is used up and is not replaced
HintGo back to what 'renewable' actually tests for — it is not about pollution.
WhyNuclear fuel such as uranium is mined from the ground and there is a fixed amount of it. Once consumed it is not replenished, which is the definition of non-renewable. Being low in carbon and being renewable are two separate questions.
- Burning fossil fuels releases ____, a greenhouse gas that adds to global warming.
carbon dioxide
HintIt is the gas you breathe out, and plants take in.
WhyCoal, oil and gas are all made largely of carbon, which joins with oxygen when the fuel burns. The extra gas in the atmosphere traps more energy and warms the planet. This is the main environmental cost of the resources the world has relied on most.
- Nuclear power stations release no greenhouse gases while running. What is the main environmental problem they create?
Radioactive waste that stays hazardous for a very long time
HintThink about what is left when the fuel rods are finished with.
WhyUsed nuclear fuel goes on emitting radiation for thousands of years, so it has to be stored securely and kept away from people and water supplies. Building and taking apart the stations is also costly. Weighing this against the lack of carbon emissions is the kind of comparison AQA asks for.
- A hydro-electric scheme burns no fuel and releases no polluting gases while it runs. What environmental damage does building one cause?
Flooding a valley destroys habitats
HintPicture what happens to the land behind a new dam.
WhyThe reservoir behind the dam drowns farmland, woodland and sometimes villages, and changes the river downstream. Tidal barrages do something similar to estuaries, and wind farms change the landscape. No energy resource is entirely free of environmental cost.
- Over recent decades the UK has burned far less coal to generate electricity and has used far more wind and solar power. What is the main environmental reason for this change?
To cut carbon dioxide emissions
HintAsk what coal gives out, and wind does not, as electricity is produced.
WhyCoal releases more greenhouse gas for each unit of electricity than any other major resource, so replacing it is the quickest way to reduce a country's contribution to global warming. Falling costs of wind turbines and solar panels helped too. Explaining a pattern like this in how resources are used is a skill AQA lists.
- Scientists can show that a new wind farm would cut a region's carbon emissions. Local people object to how it would look, and it would cost more than the present supply. What does this show about what science alone can and cannot do?
Science can identify the problem, but the decision depends on social, economic, political and ethical factors
HintMeasuring emissions is one kind of question; deciding what a community should pay for or put up with is another.
WhyScientists are good at measuring the environmental effects of energy resources and predicting what will follow from each choice. Whether to act, and who should bear the cost, are matters of money, fairness, law and public opinion. AQA expects pupils to recognise this limit.
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Keep what you learn
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