13) A sound wave traveling in air has velocity vo; frequency fo and wavelength ho, when it encounters a balloon filled with a gas of much greater density than air. Inside the balloon the wave has velocity vi; frequency fi and wavelength A. Indicate the true situation: a) The velocity is unchanged vi = vo; but the wavelength increases A1> lo, b) The frequency is unchanged fi = fo; but the wavelength increases A> Ào, c) The wavelength is unchanged A1 = ho; but the velocity decreases vi> Vo, d) The velocity is unchanged vi = Vo; but the wavelength increases A1> do, e) The frequency is unchanged fi = fo; but the velocity decreases vi> Vo

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 17.70AP: A siren mounted 011 the roof of a firehouse emits sound at a frequency of 900 Hz. A steady wind is...
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13) A sound wave traveling in air has velocity vo; frequency fo and wavelength ho, when it
encounters a balloon filled with a gas of much greater density than air.
Inside the balloon the wave has velocity vi; frequency fi and wavelength A.
Indicate the true situation:
a) The velocity is unchanged vi = vo; but the wavelength increases A1> lo,
b) The frequency is unchanged fi = fo; but the wavelength increases A> Ào,
c) The wavelength is unchanged A1 = ho; but the velocity decreases vi> Vo,
d) The velocity is unchanged vi = Vo; but the wavelength increases A1> do,
e) The frequency is unchanged fi = fo; but the velocity decreases vi> Vo
Transcribed Image Text:13) A sound wave traveling in air has velocity vo; frequency fo and wavelength ho, when it encounters a balloon filled with a gas of much greater density than air. Inside the balloon the wave has velocity vi; frequency fi and wavelength A. Indicate the true situation: a) The velocity is unchanged vi = vo; but the wavelength increases A1> lo, b) The frequency is unchanged fi = fo; but the wavelength increases A> Ào, c) The wavelength is unchanged A1 = ho; but the velocity decreases vi> Vo, d) The velocity is unchanged vi = Vo; but the wavelength increases A1> do, e) The frequency is unchanged fi = fo; but the velocity decreases vi> Vo
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