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Question

A train moves toward a stationary observer at a speed 34ms. The train sounds a whistle and its frequency registered by the observer is f1. If the train's speed is reduced to 17ms, the frequency registered is f2. If the speed of sound of 340ms, then the ratio f1f2 is


A

187

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B

2120

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C

2019

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D

1918

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Solution

The correct option is D

1918


Step1: Given data and assumptions.

The velocity of train's sound, vs=34ms-1

The velocity of train's sound, v's=17ms-1

The velocity of the sound wave, v=340ms-1

The actual frequency=f

The frequency registered by the observer=f1

The frequency registered after the train speed reduced=f2

Step2: Find the frequency registered by the observer.

Formula used:

f'=v+v0v-vs×f

Where,

f'is the apparent frequency,

f is the actual frequency,

v is the sound wave velocity,

v0 is observer velocity,

vs is the sound velocity.

Now,

f1=v+v0v-vs×f

f1=340+0340-34f v0=0

f1=340306f ..i

Step3: Find the frequency registered after the train speed is reduced.

f2=v+v0v-vs×f

f2=340+0340-17f v0=0

f2=340323f ..ii

Step4: Find the ratio, f1f2.

We have,

Dividing the equation i by ii we get.

f1f2=340306340323

f1f2=323306

f1f2=1918

Hence, option D is correct.


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