At a connection of two ropes with a tension of 10 N the incident wave is reflected by the equation x (y, t) = 0,08 cos t (2x - 10 t) (y in meters and t in seconds). If the amplitude of the transmitted wave is equal to 5/2 of the amplitude of the incoming wave, determine (a) the amplitude of the incident wave and the amplitude of the transmission wave (b) incident wave function, and transmission wave (c) the impedance of each rope (d) the density of each rope
At a connection of two ropes with a tension of 10 N the incident wave is reflected by the equation x (y, t) = 0,08 cos t (2x - 10 t) (y in meters and t in seconds). If the amplitude of the transmitted wave is equal to 5/2 of the amplitude of the incoming wave, determine (a) the amplitude of the incident wave and the amplitude of the transmission wave (b) incident wave function, and transmission wave (c) the impedance of each rope (d) the density of each rope
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
Transcribed Image Text:At a connection of two ropes with a tension of 10 N the incident wave is
reflected by the equation x (y, t) = 0,08 cos n (2x – 10 t) (y in meters and t
in seconds). If the amplitude of the transmitted wave is equal to 5/2 of the
amplitude of the incoming wave, determine
(a) the amplitude of the incident wave and the amplitude of the
transmission wave
(b) incident wave function, and transmission wave
(c) the impedance of each rope
(d) the density of each rope
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