Two sinusoidal waves of wavelength λ = 2/3 m and amplitude A = 6 cm and differing with their phase constant, are travelling to the right with same velocity v = 50 m/s. The resultant wave function y_res (x,t) will have the form: Oy_res (x,t) = 12(cm) cos(p/2) sin(3rx+150rt+p/2). Oy_res (x,t) = 12(cm) cos(p/2) sin(3mx-180rt+p/2). Oy_res (x,t) = 12(cm) cos(p/2) sin(3rx-150rt+p/2). Oy_res (x,t) = 12(cm) cos(p/2) sin(150rx-3nt+p/2). Oy_res (x,t) = 12(cm) cos(p/2) sin(150mx+3mt+p/2).

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y2 = 0.01 sin(5rx+40rt),
O y1 = 0.04 sin(20x-320nt); y2 = 0.04 sin(20TDX-+320rt),
Two sinusoidal waves of wavelengthA = 2/3 m and amplitude A = 6 cm and
differing with their phase constant, are travelling to the right with same velocity v
= 50 m/s. The resultant wave function y_res (x,t) will have the form:
O y res (x,t) = 12(cm) cos(p/2) sin(3ttx+150rtt+p/2).
O y_res (x,t) = 12(cm) cos(p/2) sin(3nx-180nt+p/2).
y_res (x,t) = 12(cm) cos(p/2) sin(3nx-150nt+p/2).
O y res (x,t) = 12(cm) cos(p/2) sin(150rtx-3nt+p/2).
y_res (x,t) = 12(cm) cos(@/2) sin(150tx+3nt+p/2).
Two identical sinusoidal waves with wavelengths of 1.5 m travel in the same.
direction at a speed of 10 m/s. If the two waves originate from the same starting
Transcribed Image Text:y2 = 0.01 sin(5rx+40rt), O y1 = 0.04 sin(20x-320nt); y2 = 0.04 sin(20TDX-+320rt), Two sinusoidal waves of wavelengthA = 2/3 m and amplitude A = 6 cm and differing with their phase constant, are travelling to the right with same velocity v = 50 m/s. The resultant wave function y_res (x,t) will have the form: O y res (x,t) = 12(cm) cos(p/2) sin(3ttx+150rtt+p/2). O y_res (x,t) = 12(cm) cos(p/2) sin(3nx-180nt+p/2). y_res (x,t) = 12(cm) cos(p/2) sin(3nx-150nt+p/2). O y res (x,t) = 12(cm) cos(p/2) sin(150rtx-3nt+p/2). y_res (x,t) = 12(cm) cos(@/2) sin(150tx+3nt+p/2). Two identical sinusoidal waves with wavelengths of 1.5 m travel in the same. direction at a speed of 10 m/s. If the two waves originate from the same starting
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