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Question

Two loudspeakers M and N are located 20 m apart and emit sound at frequencies 118 Hz and 121 Hzrespectively. A car is initially at a point P, 1800 m away from the midpoint Q of the line MN and moves towards Q constantly at 60 km/hr along perpendicular bisector of MN. It crosses Q and eventually reaches a point R, 1800 m away from Q. Let ν(t) represent the beat frequency measured by a person sitting in the car at time t. Let νp, νQ and νR be the beat frequencies measured at locationsP, Q and R, respectively. The speed of sound in air is 330 ms−1. Which of the following statement (s) is (are) true regarding the sound heard by the person?

A
A plot below represents schematically the variation of beat frequency with time
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B
The rate of change in beat frequency is maximum when the car passes through Q
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C
νP+νR=2νQ
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D
The plot below represents schematically the variation of beat frequency with time
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Solution

The correct option is D The plot below represents schematically the variation of beat frequency with time



Apparent frequency of M and N at P,

fm=v+v0vfmfm=330+503330118=1040990118fN=v+v0vfN=1040990121fP=fNfm=1040330Hz

Apparent frequency of M and N at R,

fm=vv0vfmfm=330503330118=940990118fN=vv0vfN=940990121fR=fNfm=940330Hz
Beat frequency at Q,

fQ=121118=3Hz
fP+fR=2fQ
hence, option (c) is correct.

velocity of car at point M.
v=3[110+vcosθ110]|dvdt|=v110sinθdθdt
θ=1 is maximum at 90o, so option (b) is correct.

Now, tan α=10xdαdt=10vx2sec2αx=10cotα|dvdt|=v110sinα(10vx2sec2α)|dvdt|=ksin3α
at |dvdt|=90o is maximum at Q.
So, option (d) is correct.
Hence, option B, C and D matches correctly.

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