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Physics · Energy

Efficiency

Calculate efficiency as a decimal or a percentage using energy or power, interpret Sankey diagrams, and describe ways to increase efficiency (Higher tier).

  • 6 key terms
  • All boards
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Warm-up

Answer each one, then check.

  1. 1

    What is dissipated energy?

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    Energy spread to the surroundings in less useful stores

  2. 2

    What is 0.35 as a percentage?

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    35%

  3. 3

    Write 60% as a decimal.

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    0.60

  4. 4

    Give the unit of power.

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    Watt

  5. 5

    What does 'useful' energy mean?

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    Energy transferred in the way we want

Learning Objectives

  1. 1Recall and apply the efficiency equations.
  2. 2Give efficiency as a decimal or a percentage.
  3. 3Interpret Sankey diagrams.
  4. 4Describe ways to increase the efficiency of an energy transfer (Higher tier).

EFFICIENCY

efficiency \(= \dfrac{\text{useful output energy transfer}}{\text{total input energy transfer}}\)

Also: efficiency \(= \dfrac{\text{useful power output}}{\text{total power input}}\). Efficiency has no units and is never more than 1 (100%).

Efficiency of a Lamp

A lamp transfers 100 J of electrical energy and 8 J of it is transferred as light. Calculate its efficiency.

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  1. 1 Write the equation efficiency \(= \dfrac{\text{useful output}}{\text{total input}}\)
  2. 2 Substitute \(\dfrac{8}{100}\)
  3. 3 Decimal \(0.08\)
  4. 4 Percentage \(0.08 \times 100 = 8\%\)

AnswerEfficiency \(= 0.08\) or \(8\%\).

Using Power

A motor has a total power input of 500 W and a useful power output of 350 W. Calculate its efficiency as a percentage.

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  1. 1 Substitute \(\dfrac{350}{500}\)
  2. 2 Decimal \(0.70\)
  3. 3 Percentage \(70\%\)

Answer70%

Finding the Useful Output

A machine is 85% efficient. How much useful energy does it transfer from a 400 J input?

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  1. 1 Efficiency as a decimal \(0.85\)
  2. 2 Multiply \(0.85 \times 400 = 340\) J

Answer340 J

Ways to Increase Efficiency (Higher Tier)

Reduce the energy that is dissipated.

  • Lubrication

    Reduces friction between moving parts.

  • Thermal insulation

    Reduces energy lost by heating, for example around a boiler or a house.

  • Streamlining

    Reduces air resistance so less energy is wasted.

  • Better design

    For example LED lamps transfer more input energy as light.

  • Higher tier

    The question may ask you to suggest a way suitable for a described machine.

Common Mistakes

Check your answer.

  • Efficiency above 1

    It cannot be greater than 1 (100%): useful output cannot be more than the input.

  • Wrong way up

    Useful output goes on top.

  • Units

    Do not write J or W after an efficiency.

  • Percent or decimal

    Read the question for the form required.

Compare the Lamps

LED lamp: efficiency 0.85, input power 8 W. Filament lamp: efficiency 0.10, input power 60 W. Calculate the useful power output of each and say which lamp is better.

1. Rearrange the equation for useful power.

2. Compare the two answers.

A good answer shows: LED: 0.85 × 8 = 6.8 W. Filament: 0.10 × 60 = 6.0 W. The LED gives more useful output from far less input, so it is better.

Can I...?

  1. 1Recall both efficiency equations.
  2. 2Calculate efficiency.
  3. 3Convert decimal and percentage.
  4. 4Interpret a Sankey diagram.
  5. 5Explain efficiency cannot exceed 1.
  6. 6Find useful output from an efficiency.
  7. 7Describe ways to increase efficiency.
  8. 8Compare devices.

Summary & Exam Focus

  • Efficiency = useful output ÷ total input.
  • Also useful power ÷ total power.
  • Multiply by 100 for a percentage.
  • Efficiency is never more than 1.

Exam focus

A device has an input of 400 J and a useful output of 100 J. Calculate the efficiency. (2 marks) (2 marks)

Put useful over total.

Key terms

The vocabulary this lesson expects you to use. Each one is linked from the first place it appears above.

Efficiency
The fraction of the input energy that is transferred usefully.
Useful output
Energy transferred in the way that is wanted.
Wasted energy
Energy transferred to stores that are not useful.
Sankey diagram
A diagram with arrow widths that show energy amounts.
Streamlining
Shaping an object to reduce air resistance.
Input
The energy or power supplied to a device.

Practice questions

Have a go at each one before you open its answer.

  1. Question 1 Calculate 2 marks

    A device transfers 400 J of energy as input and 100 J of useful energy. Calculate the efficiency of the device. Use the equation: efficiency = useful output energy transfer ÷ total input energy transfer

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    Model answer

    \(100 \div 400 = 0.25\) (25%)

    Mark scheme

    • Correct substitution — 1 mark
    • 0.25 or 25% — 1 mark
  2. Question 2 Use the diagram 3 marks

    The Sankey diagram shows the energy transfers in an electric motor. (a) Calculate the energy wasted every second. (b) Calculate the efficiency of the motor.

    A Sankey diagram of a motor with 300 J input and 240 J useful output.
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    Model answer

    (a) 300 − 240 = 60 J. (b) 240 ÷ 300 = 0.80 (80%).

    Mark scheme

    • 60 J — 1 mark
    • Correct substitution — 1 mark
    • 0.80 or 80% — 1 mark
  3. Question 3 Calculate 3 marks

    A lamp has an efficiency of 0.20 and a total power input of 60 W. Calculate the useful power output of the lamp.

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    Model answer

    \(0.20 \times 60 = 12\) W

    Mark scheme

    • Rearranges to power output = efficiency × input — 1 mark
    • Correct substitution — 1 mark
    • 12 W — 1 mark
  4. Question 4 Suggest 2 marks

    A car engine wastes a lot of energy. Suggest two ways to increase the efficiency of the car.

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    Model answer

    Any two from: lubricate moving parts to reduce friction; streamline the shape to reduce air resistance; improve insulation or design of the engine to reduce thermal losses.

    Mark scheme

    • First way — 1 mark
    • Second way — 1 mark
  5. Question 5 Compare 4 marks

    An LED lamp has an efficiency of 0.85 and an input power of 8 W. A filament lamp has an efficiency of 0.10 and an input power of 60 W. Compare the useful power output of the two lamps. Which is the better lamp? Show your calculations.

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    Model answer

    LED: 0.85 × 8 = 6.8 W. Filament: 0.10 × 60 = 6.0 W. The LED lamp transfers more useful power while using far less input power, so it is the better lamp.

    Mark scheme

    • 6.8 W — 1 mark
    • 6.0 W — 1 mark
    • LED gives more useful power — 1 mark
    • With much less input power — 1 mark
  6. Question 6 Explain 2 marks

    A student says that a machine has an efficiency of 120%. Explain why this cannot be correct.

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    Model answer

    Useful output cannot be greater than the input because energy cannot be created.

    Mark scheme

    • Energy cannot be created — 1 mark
    • Useful output cannot exceed the total input — 1 mark

Quick check

  1. Efficiency is calculated by...

    1. Atotal input ÷ useful output
    2. Buseful × total
    3. Cuseful output ÷ total input
    4. Dinput − output
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    C: useful output ÷ total input

    Useful over total.

  2. A device is 0.40 efficient. As a percentage this is...

    1. A4%
    2. B0.4%
    3. C400%
    4. D40%
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    D: 40%

    Multiply by 100.

  3. A machine takes in 200 J and gives 50 J useful. Efficiency is...

    1. A0.25
    2. B0.5
    3. C4
    4. D150
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    A: 0.25

    50 ÷ 200 = 0.25.

  4. Which reduces wasted energy in a machine?

    1. AMore friction
    2. BLubrication
    3. CRemoving insulation
    4. DIncreasing air resistance
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    B: Lubrication

    Lubrication reduces friction.

  5. The widths of arrows in a Sankey diagram show...

    1. Athe time
    2. Bthe temperature
    3. Cthe amount of energy
    4. Dthe efficiency only
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    C: the amount of energy

    Wider arrows mean more energy.

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