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Q.Describe the Doppler effect for sound waves and derive the formula for apparent frequency when:

(i) the source is moving towards a stationary observer,
(ii) the observer is moving towards a stationary source.
Rajasthan RbseRajasthan Board Senior Secondary Part-I Examination 2018Subjective· 5mImportance★★★★★
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Doppler effect for sound: source moving toward observer gives nu' = nu0v/(v-vs); observer moving toward source gives nu' = nu0(v+v0)/v.

Let v = speed of sound in the medium, nu0 = actual (source) frequency, lambda0 = v/nu0 = actual wavelength.

  1. Source moving towards a stationary observer, with speed vs: The source emits one complete wave every time period T0 = 1/nu0. In this time, the source itself moves a distance vsT0 towards the observer. So the distance between two successive wavefronts (the apparent wavelength) as seen by the stationary observer is compressed: lambda' = lambda0 - vsT0 = vT0 - vsT0 = (v-vs)*T0 = (v-vs)/nu0 Since the observer is stationary, sound still reaches them at the normal speed v, so the apparent frequency is: nu' = v/lambda' = v / [(v-vs)/nu0] = nu0 * v/(v-vs) Since (v-vs) < v, we get nu' > nu0 - the observer hears a higher pitch as the source approaches (this is why an ambulance siren sounds higher-pitched as it approaches).
  2. Observer moving towards a stationary source, with speed v0: …

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