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Physics · Magnetism and electromagnetism

Alternators, dynamos and microphones

Describe how alternators and dynamos generate alternating and direct current, interpret potential difference–time graphs, and explain how a microphone works (Physics only; microphones Higher tier only).

  • 6 key terms
  • All boards
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Warm-up

Answer each one, then check.

  1. 1

    What is a.c.?

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    Alternating current

  2. 2

    What is d.c.?

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    Direct current

  3. 3

    What is the generator effect?

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    p.d. induced by a changing magnetic field

  4. 4

    What is the UK mains frequency?

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    50 Hz

  5. 5

    What is a slip ring?

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    A continuous ring that keeps contact with a brush

Learning Objectives

  1. 1Describe how an alternator generates an alternating current.
  2. 2Describe how a dynamo generates direct current.
  3. 3Interpret potential difference–time graphs from a.c. and d.c. generators.
  4. 4Describe how a microphone converts sound to an electrical signal (Higher).

GENERATORS

An alternator rotates a coil in a magnetic field using slip rings and brushes to produce an alternating potential difference. A dynamo uses a split-ring commutator so the output is direct current (p.d. in one direction).

The output increases with faster rotation, more turns or a stronger field. Faster rotation also increases the frequency.

Alternator or Dynamo?

Alternator

  • Coil rotates in a magnetic field.
  • Slip rings and brushes.
  • Output: alternating p.d., changing direction each half turn.

Dynamo

  • Coil rotates in a magnetic field.
  • Split-ring commutator and brushes.
  • Output: direct p.d., always in one direction.

Changing the Output

Learn what changes the graph.

  • Faster rotation

    Effect on the graph: Larger amplitude and higher frequency

  • Stronger magnet

    Effect on the graph: Larger amplitude

  • More turns

    Effect on the graph: Larger amplitude

  • Slower rotation

    Effect on the graph: Smaller amplitude and lower frequency

Reading an a.c. Graph

The graph shows a sine wave with period 0.020 s. Find the frequency.

Show the solutionHide the solution
  1. 1 Equation \(f = 1 \div T\)
  2. 2 Substitute \(f = 1 \div 0.020\)
  3. 3 Answer \(f = 50\) Hz

Answer50 Hz

How a Microphone Works (Higher)

Explain how a moving-coil microphone changes sound into an electrical signal.

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  1. 1 Sound waves Make a diaphragm vibrate
  2. 2 Coil Attached to the diaphragm, moves in the field of a magnet
  3. 3 Generator effect Induces an a.c. p.d. in the coil with the same frequency as the sound

AnswerSound vibrates the diaphragm, the coil moves in a magnetic field, and a p.d. is induced.

Generator Graphs

Sketch the p.d.–time graph for an alternator. Then sketch it when the coil spins twice as fast.

1. Count the number of cycles.

A good answer shows: Sine wave; twice as fast gives twice the amplitude and twice the frequency.

Can I...?

  1. 1Describe an alternator.
  2. 2Describe a dynamo.
  3. 3Name slip rings.
  4. 4Name the commutator.
  5. 5Sketch a.c. and d.c. graphs.
  6. 6Change the output.
  7. 7Describe a microphone.
  8. 8Calculate frequency.

Summary & Exam Focus

  • Alternator: slip rings, a.c.
  • Dynamo: split ring, d.c.
  • Faster rotation increases the p.d. and the frequency.
  • Microphone: sound makes a coil move in a field, inducing an a.c.

Exam focus

Explain the difference between the output of an alternator and a dynamo. (2 marks) (2 marks)

Alternator a.c., dynamo d.c.

Key terms

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

Alternator
A generator that produces alternating current.
Dynamo
A generator that produces direct current.
Slip rings
Rings that keep the coil connected to the brushes without reversing the output.
Commutator
A split ring that reverses the connections each half turn.
Microphone
A device that converts sound into an electrical signal.
Brush
A carbon contact that touches a ring.

Practice questions

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

  1. Question 1 State 2 marks

    State the type of current produced by (a) an alternator and (b) a dynamo.

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    Model answer

    (a) Alternating current. (b) Direct current.

    Mark scheme

    • Alternator a.c. — 1 mark
    • Dynamo d.c. — 1 mark
  2. Question 2 Explain 3 marks

    An alternator rotates at a constant speed. Describe how the output potential difference changes with time.

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    Model answer

    It is an alternating p.d. that changes from positive to negative and back in a regular sine wave. It reverses every half turn of the coil.

    Mark scheme

    • Alternating or repeating pattern — 1 mark
    • Positive and negative — 1 mark
    • Reverses every half turn — 1 mark
  3. Question 3 Explain 3 marks

    The speed of rotation of the coil in an alternator is doubled. Describe two changes to the potential difference–time graph.

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    Model answer

    The amplitude doubles (larger p.d.) and the frequency doubles (shorter period).

    Mark scheme

    • Larger amplitude — 1 mark
    • Higher frequency — 1 mark
    • Shorter period / more waves in same time — 1 mark
  4. Question 4 Calculate 2 marks

    A potential difference–time graph of an alternator shows one complete wave lasts 0.020 s. Calculate the frequency.

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    Model answer

    \(f = 1 \div T = 1 \div 0.020 = 50\) Hz

    Mark scheme

    • Substitution — 1 mark
    • 50 Hz — 1 mark
  5. Question 5 Explain 4 marks

    Explain how a moving-coil microphone converts sound waves into an electrical signal.

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    Model answer

    Sound waves make the diaphragm vibrate. The coil attached to it moves in the field of a magnet. By the generator effect, a potential difference is induced in the coil. It has the same frequency as the sound, so an a.c. signal is produced.

    Mark scheme

    • Sound makes the diaphragm vibrate — 1 mark
    • Coil moves in a magnetic field — 1 mark
    • Generator effect / induced p.d. — 1 mark
    • a.c. with the same frequency as the sound — 1 mark

Quick check

  1. An alternator produces...

    1. Adirect current only
    2. Bsound
    3. Clight
    4. Dalternating current
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    D: alternating current

    Slip rings.

  2. A dynamo produces...

    1. Adirect current
    2. Balternating current
    3. Cstatic
    4. Dsound
    Show answerHide answer

    A: direct current

    Commutator.

  3. Faster rotation makes the frequency...

    1. Adecrease
    2. Bincrease
    3. Cstay the same
    4. Dbecome zero
    Show answerHide answer

    B: increase

    More rotations a second.

  4. A period of 0.05 s gives a frequency of...

    1. A0.05 Hz
    2. B5 Hz
    3. C20 Hz
    4. D50 Hz
    Show answerHide answer

    C: 20 Hz

    1 ÷ 0.05.

  5. A microphone uses the...

    1. Amotor effect
    2. Bgreenhouse effect
    3. CDoppler effect
    4. Dgenerator effect
    Show answerHide answer

    D: generator effect

    Coil moves in a field.

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