A car traveling due North at a4.1 m/s. A bicycist benind the car is traveling at 18.3 mis in the same dırection. The dniver of Hthe car blows her horn at 739 Hz. What frequency does the bicyclist hear? Sound Speed in air : 341 mis

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter17: Sound Waves
Section: Chapter Questions
Problem 17.39P: A driver travels northbound on a highway at a speed of 25.0 m/s. A police car. traveling southbound...
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A car traveling due North at a4.1 m/S. A bicycist
benind the car is traveling at 18.3 mis in the same
dırection. The driver of the car blows her horn at 739 Hz.
What frequency does the bicyclist hear?
Sound Speed in air : 341 mis
Transcribed Image Text:A car traveling due North at a4.1 m/S. A bicycist benind the car is traveling at 18.3 mis in the same dırection. The driver of the car blows her horn at 739 Hz. What frequency does the bicyclist hear? Sound Speed in air : 341 mis
Expert Solution
Step 1

Given

Speed of the car is vs=24.1 m/s

Speed of the bicyclist is vo=18.3 m/s

Frequency of the source is f0=739 Hz

Speed of sound in air is V=341 m/s

 

Formula 

From Doppler's effect we get the frequency heard by the bicyclist as f=f0(V+voV+vs).........................(1)

Here both the observer and the source are moving and the observer moving behind the source.

 

 

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