A sound wave is modeled as AP = 2.27 Pa sin (50.46 m¯1 . x – 17156 s · t). What is the maximum change in pressure, the wavelength, the frequency, and the speed of the sound wave? APmax 2.27 o Pa 0.1245 17156 X Hz %3D 2731.8 X m/s

University Physics Volume 1
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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter17: Sound
Section: Chapter Questions
Problem 60P: A sound wave traveling in air has a pressure amplitude of 0.5 Pa. What is the intensity of the wave?
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A sound wave is modeled as ΔP=2.27 Pasin(50.46 m−1⋅x−17156 s−1⋅t)ΔP=2.27 Pasin(50.46 m-1⋅x-17156 s-1⋅t). What is the maximum change in pressure, the wavelength, the frequency, and the speed of the sound wave?

 ΔPmax=ΔPmax= Correct Pa

λ=λ= Correct m

f=f= Incorrect Hz

v=v= Incorrect m/s

A sound wave is modeled as AP = 2.27 Pa sin (50.46 m¯1 . x – 17156 s
· t). What is the maximum
change in pressure, the wavelength, the frequency, and the speed of the sound wave?
APmax
2.27
o Pa
X = |0.1245
f =
17156
X Hz
2731.8
X m/s
Transcribed Image Text:A sound wave is modeled as AP = 2.27 Pa sin (50.46 m¯1 . x – 17156 s · t). What is the maximum change in pressure, the wavelength, the frequency, and the speed of the sound wave? APmax 2.27 o Pa X = |0.1245 f = 17156 X Hz 2731.8 X m/s
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