The Doppler Effect
The Doppler Effect
- When a source of sound moves, a stationary listener hears a different frequency: higher as it comes towards you, lower as it goes away.
- You have heard it whenever an ambulance passes: the siren drops in pitch the moment it goes by. This is the Doppler effect.
Why the pitch changes
- The source keeps making the same number of waves per second, but each new wave is sent from a slightly moved position.
- Ahead of the source the wavefronts are closer together (shorter wavelength, higher frequency); behind it they are further apart (lower frequency).
- Drag the source speed below to see the wavefronts move closer together ahead of the source.
v = 340 m s⁻¹·fs = 500 Hz·vs = 100 m s⁻¹·fo = 708.3 Hz
source approaching → pitch up
source moving →observerThe Doppler equation
Symbols
- = frequency the observer hears (Hz)
- = frequency the source emits (Hz)
- = speed of sound in the medium (m s⁻¹)
- = speed of the source (m s⁻¹)
- Use the minus sign when the source moves towards the observer (smaller denominator, higher ).
- Use the plus sign when it moves away (bigger denominator, lower ).
- The speed of sound is fixed by the air, not by the source. A moving source does not change how fast its sound travels.
Worked example
A train whistle approaching
A train sounds a whistle of frequency 800 Hz and moves towards a stationary observer at 60 m s−1. The speed of sound is 330 m s−1. What frequency is heard?
- Approaching, so use the minus sign.
- .
- .
Answer
Common mistake
Choosing the wrong sign. Check the direction: approaching must give a higher frequency, receding a lower one. If your answer goes the wrong way, you picked the wrong sign.
Variations you will meet
- Reverse questions give you and ask for the source speed: rearrange the same equation.
- Rotating source (a buzzer swung in a circle on a string): the highest pitch is heard when it moves straight at you, the lowest when it moves straight away.
- The syllabus only asks about a moving source with a stationary observer.
Your turn— tap to reveal the worked answer (9702/11/M/J/25 Q24)
An aircraft emits sound of frequency 30.0 Hz. A stationary observer hears 20.0 Hz as it recedes. The speed of sound is 330 m s−1. Find the aircraft's speed. (9702/11/M/J/25 Q24)
- Receding, so use the plus sign: .
- Rearrange: .
- .