1. Consider two sinusoidal waves traveling along a string, modeled as y,(x,t) = (0.3m)sin([4m']x+[3s1t) and y2(x,t) = (0.6m)sin([8mx-[6s'1). What is the height of the resultant wave formed by the interference of the two waves at the position x-1.1 m at time t-0.6 s? y(1.1 m, 0.6 s) = Note: Assume the phase is in radians.

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1. Consider two sinusoidal waves traveling along a string, modeled as y,(x,t) = (0.3m)sin([4m]x+[3s¯]t)
and y2(x,t) = (0.6m)sin(18mx-[6s '1).
What is the height of the resultant wave formed by the interference of the two waves at the position
x=1.1 m at time t=0.6 s?
y(1.1 m, 0.6 s) =
Note: Assume the phase is in radians.
Transcribed Image Text:1. Consider two sinusoidal waves traveling along a string, modeled as y,(x,t) = (0.3m)sin([4m]x+[3s¯]t) and y2(x,t) = (0.6m)sin(18mx-[6s '1). What is the height of the resultant wave formed by the interference of the two waves at the position x=1.1 m at time t=0.6 s? y(1.1 m, 0.6 s) = Note: Assume the phase is in radians.
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