resultant wave function

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Two sinusoidal waves of wavelength A = 2/3 m and amplitude A = 6
cm and differing with their phase constant, are travelling to the
right with same velocity v = 60 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(150tx+3tt+p/2).
O y_res (x,t) = 12(cm) cos(p/2) sin(3tx-150rtt+p/2).
O y_res (x,t) = 12(cm) cos(4/2) sin(150rtx-3rt+p/2).
O y_res (x,t) = 12(cm) cos(p/2) sin(3tx-180nt+p/2).
%3D
O y_res (x,t) = 12(cm) cos(4/2) sin(3nx+150nt+p/2).
%3D
Transcribed Image Text:Two sinusoidal waves of wavelength A = 2/3 m and amplitude A = 6 cm and differing with their phase constant, are travelling to the right with same velocity v = 60 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(150tx+3tt+p/2). O y_res (x,t) = 12(cm) cos(p/2) sin(3tx-150rtt+p/2). O y_res (x,t) = 12(cm) cos(4/2) sin(150rtx-3rt+p/2). O y_res (x,t) = 12(cm) cos(p/2) sin(3tx-180nt+p/2). %3D O y_res (x,t) = 12(cm) cos(4/2) sin(3nx+150nt+p/2). %3D
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