a) An ambulance, moving with a speed of 26.15m/s, produces a siren of frequency 491HZ, is receding from an observer A who is moving in the opposite direction with a speed of Vo. If the frequency heard by the observer A is 408 Hz, and the speed of the sound is 339 m/s, calculate the

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
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Chapter17: Physics Of Hearing
Section: Chapter Questions
Problem 31PE: (a) At an air show a jet flies directly toward the stands at a speed of 1200 km/h, emitting a...
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a) An ambulance, moving with a speed
of 26.15m/s, produces a siren of frequency
491HZ, is receding from an observer A who is
moving in the opposite direction with a speed of
Vo. If the frequency heard by the observer A is
408 Hz, and the speed of the sound is 339 m/s,
calculate the
Speed of the observer A, V, in (m/s)
b) If now, the observer B approaches the
ambulance with the same speed as the observer
A, calculate the
Frequency heard by the observer B in Hertz :
Transcribed Image Text:A a) An ambulance, moving with a speed of 26.15m/s, produces a siren of frequency 491HZ, is receding from an observer A who is moving in the opposite direction with a speed of Vo. If the frequency heard by the observer A is 408 Hz, and the speed of the sound is 339 m/s, calculate the Speed of the observer A, V, in (m/s) b) If now, the observer B approaches the ambulance with the same speed as the observer A, calculate the Frequency heard by the observer B in Hertz :
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