sin(10Ttx+80TT),
Related questions
Question
100%

Transcribed Image Text:VoWiFI
The distance between the first and
the third nodes of a standing wave is
0.2 m, its maximum displacement is
0.02 m and its frequency is 40 Hz.
The wave-functions of the two
travelling waves which interfere to
give the standing wave are then:
y1 = 0.02 sin(20tx-320nt) ; y2 =
0.02 sin(20 πx+320πΐ),
y1 = 0.04 sin(20Ttx-320rt) ; y2 =
0.04 sin(20nx+320nt),
y1 = 0.01 sin(10tx-80rt) ; y2 = 0.01
sin(10πx+80πt),
%D
y1 = 0.005 sin(5rtx-40rtt); y2 =
0.005 sin(5Tx+40rt),
%D
y1 = 0.01 sin(5rx-40nt); y2 = 0.01
sin(5Ttx+40t),
%3D
Expert Solution

This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 2 steps with 1 images
