3. Two identical waves travelling towards each other produce a standing wave. Given the equation of the individual wave: and y, -0.6sin x where y and x in metres and r in seconds. a) b) c) Write the equation of the standing wave. Determine the amplitude of a particle which at x =0.35 m. Calculate the speed of this wave. (DIY] (0.95 m) (0.56 m s)

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter17: Sound Waves
Section: Chapter Questions
Problem 17.62AP
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3.
Two identical waves travelling towards each other produce a standing wave. Given the
equation of the individual wave:
3
y = 0.6 sinzt +-xx
3
Y: = 0.6 sin
and
where y and x in metres and r in seconds.
a)
b)
c)
Write the equation of the standing wave.
Determine the amplitude of a particle which at x =0.35 m.
Calculate the speed of this wave.
[DIY]
[0.95 m)
[0.56 m s]
Transcribed Image Text:3. Two identical waves travelling towards each other produce a standing wave. Given the equation of the individual wave: 3 y = 0.6 sinzt +-xx 3 Y: = 0.6 sin and where y and x in metres and r in seconds. a) b) c) Write the equation of the standing wave. Determine the amplitude of a particle which at x =0.35 m. Calculate the speed of this wave. [DIY] [0.95 m) [0.56 m s]
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