The superposition of two waves y1=A sin(kx-wt) and y2=A sin(kx-wt+p) results in a wave described by: y=0.3 sin(kx- wt+Tt/3) where x and y are in meters and t in seconds.The amplitude A of y1 and y2 and the phase difference p are: O A=0.3 m,p=r/3 rad O A=0.3m,p=2 t/3 rad A=0.15 m,µ=2t/3 rad O A=0.15 m,p=r/3 rad

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter18: Superposition And Standing Waves
Section: Chapter Questions
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The superposition of two waves y1=A
sin(kx-wt) and y2=A sin(kx-wt+p) results
in a wave described by: y=0.3 sin(kx-
wt+rt/3) where x and y are in meters and t
in seconds.The amplitude A of y1 and y2
and the phase difference p are:
A=0.3 m,p=n/3 rad
A=0.3m,p=2 n/3 rad
A=0.15 m,p=2n/3 rad
O A=0.15 m,p=n/3 rad
O None of the above
Transcribed Image Text:The superposition of two waves y1=A sin(kx-wt) and y2=A sin(kx-wt+p) results in a wave described by: y=0.3 sin(kx- wt+rt/3) where x and y are in meters and t in seconds.The amplitude A of y1 and y2 and the phase difference p are: A=0.3 m,p=n/3 rad A=0.3m,p=2 n/3 rad A=0.15 m,p=2n/3 rad O A=0.15 m,p=n/3 rad O None of the above
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