Modeling it as a pipe, find the frequency of the second overtone for a shower 2.60 m tall. Is this frequency audible?

University Physics Volume 1
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Chapter17: Sound
Section: Chapter Questions
Problem 17.6CYU: Check Your Understanding How is it possible to use a standing wave’s node and antinode to determine...
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  • Modeling it as a pipe, find the frequency of the second overtone for a shower 2.60 m tall.
  • Is this frequency audible?

 

A pipe closed at both ends can have standing waves inside of it, but you normally don't
hear them because little of the sound can get out. But you can hear them if you are inside
the pipe, such as someone singing in the shower. The wavelengths of standing waves in a
pipe of length I that is closed at both ends are λ = 2L/n and the frequencies are given
by fn = nv/2L=nf₁, where n = 1, 2, 3, ....
Transcribed Image Text:A pipe closed at both ends can have standing waves inside of it, but you normally don't hear them because little of the sound can get out. But you can hear them if you are inside the pipe, such as someone singing in the shower. The wavelengths of standing waves in a pipe of length I that is closed at both ends are λ = 2L/n and the frequencies are given by fn = nv/2L=nf₁, where n = 1, 2, 3, ....
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