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What is a wave?
January 28, 2015
How many types
of wave have you
heard of in
everyday use?
Do they have
anything in
common?
Aims
• Describe the origin of a wave
• Explain the properties of a wave
Key terms
• Displacement:
• Oscillation:
What is a wave?
What causes a wave?
• The source of a wave
is always something
that vibrates
• The material that the
wave travels through
is called the medium
Amplitude, A
• The maximum distance that each point in the
medium moves from its normal position as
the wave passes
• This is the number of waves that pass any
point in the medium every second, so it is the
same as the number of vibrations per second
• This is the speed at which each wave crest
moves through the medium.
• Measured in metres per second, m/s or ms-1
Wavelength, λ
• This is the length of a complete wave
measured from any point to the next identical
point – the distance is always the same no
matter which point you choose
λfv =
Where:
v = speed of wave / m/s
f = frequency of wave / Hz (1/s)
λ = wavelength of wave / m
How can we prove this?
What would happen if we increased the wavelength of a wave?
What would happen if we decreased the wavelength of a
wave?

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2.6 student

  • 1. What is a wave? January 28, 2015 How many types of wave have you heard of in everyday use? Do they have anything in common?
  • 2. Aims • Describe the origin of a wave • Explain the properties of a wave
  • 4. What is a wave?
  • 5. What causes a wave? • The source of a wave is always something that vibrates • The material that the wave travels through is called the medium
  • 6.
  • 7. Amplitude, A • The maximum distance that each point in the medium moves from its normal position as the wave passes
  • 8. • This is the number of waves that pass any point in the medium every second, so it is the same as the number of vibrations per second
  • 9. • This is the speed at which each wave crest moves through the medium. • Measured in metres per second, m/s or ms-1
  • 10. Wavelength, λ • This is the length of a complete wave measured from any point to the next identical point – the distance is always the same no matter which point you choose
  • 11. λfv = Where: v = speed of wave / m/s f = frequency of wave / Hz (1/s) λ = wavelength of wave / m
  • 12. How can we prove this? What would happen if we increased the wavelength of a wave? What would happen if we decreased the wavelength of a wave?