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III. Long Answer Questions · Q16

Q.What is meant by Doppler effect? Discuss the following cases:

(1) Source in motion and Observer at rest --
(a) Source moves towards observer,
(b) Source moves away from the observer.
(2) Observer in motion and Source at rest --
(a) Observer moves towards Source,
(b) Observer recedes away from the Source.
(3) Both are in motion --
(a) Source and Observer approach each other,
(b) Source and Observer recede from each other,
(c) Source chases Observer,
(d) Observer chases Source.
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Step 1. The Doppler effect is the change in the frequency of sound observed by a listener whenever there is relative motion between the sound source and the listener, even though the source's own emitted frequency never actually changes.

Step 2 (1a,1b -- source in motion, observer at rest). A source moving toward a stationary listener at speed vSv_S compresses the emitted wavelength ahead of it, giving observed frequency f′=fvv−vSf'=f\dfrac{v}{v-v_S} (raised pitch); a source moving away gives f′=fvv+vSf'=f\dfrac{v}{v+v_S} (lowered pitch).

Step 3 (2a,2b -- observer in motion, source at rest). A listener moving toward a stationary source at speed vLv_L meets wavefronts at an increased relative speed, giving f′=fv+vLvf'=f\dfrac{v+v_L}{v} (raised pitch); a listener moving away gives f′=fv−vLvf'=f\dfrac{v-v_L}{v} (lowered pitch).

Step 4 (3a -- approach each other). Combining both effects: f′=fv+vLv−vSf'=f\dfrac{v+v_L}{v-v_S} -- the largest possible raised pitch.

Step 5 (3b -- recede from each other). f′=fv−vLv+vSf'=f\dfrac{v-v_L}{v+v_S} -- the largest possible lowered pitch.

Step 6 (3c -- source chases listener). With the source behind, chasing a listener who is fleeing ahead of it: f′=fv−vLv−vSf'=f\dfrac{v-v_L}{v-v_S}. …

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