x and y are in meters andt is in seconds. The resultant interference wave function is expressed as: O y_res = 0.069 sin(0.5rx-10nt + n/6) %3D 0.035 sin(0 5Tx-10ut + T/6)

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Chapter1: Units, Trigonometry. And Vectors
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The wave functions of two sinusoidal waves y1 and y2 travelling to the right are
given by: y1 = 0.02 sin(0.5Ttx - 10rtt) and y2 0.02 sin(0.5TTX- 10Tt + T/3), where
x and y are in meters andt is in seconds. The resultant interference wave
function is expressed as:
O y_res = 0.069 sin(0.5nx - 10nt + n/6)
y_res 0.035 sin(0.5nx- 10nt + T/6)
O y_res = 0.069 sin(0.5nx- 10nt + n/3)
O y_res = 0.077 sin(0.5Ttx - 10nt + T/6)
O y_res = 0.035 sin(0.5Ttx - 10tt + T/3)
O y_res 0.077 sin(0.5tx - 10t + T/12)
Transcribed Image Text:The wave functions of two sinusoidal waves y1 and y2 travelling to the right are given by: y1 = 0.02 sin(0.5Ttx - 10rtt) and y2 0.02 sin(0.5TTX- 10Tt + T/3), where x and y are in meters andt is in seconds. The resultant interference wave function is expressed as: O y_res = 0.069 sin(0.5nx - 10nt + n/6) y_res 0.035 sin(0.5nx- 10nt + T/6) O y_res = 0.069 sin(0.5nx- 10nt + n/3) O y_res = 0.077 sin(0.5Ttx - 10nt + T/6) O y_res = 0.035 sin(0.5Ttx - 10tt + T/3) O y_res 0.077 sin(0.5tx - 10t + T/12)
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