15 MCQS The wavefunction of a mechanical wave on a string is described by: y(x,t) = 0.012cos(tx-100t-2tt/3), where x and y are in meters and t is in seconds. The transverse velocity of an element on the string at the left end (x = 0), at time t = 0 is: %3D None of the listed O -0.6m m/s +0.6v3r m/s +0.6r m/s O -0.6v3n m/s

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Chapter16: Wave Motion
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15 MCQS
The wavefunction of a mechanical
wave on a string is described by:
y(x,t) = 0.012cos(TIX-100tt-2rt/3),
where x and y are in meters and t is in
seconds. The transverse velocity of
an element on the string at the left
end (x = 0), at time t = 0 is:
None of the listed
-0.6π m/s
+0.6v3n m/s
+0.6π m/s
-0.6V3n m/s
The equation of motion of a particle
in simple harmonic motion is given
a by: x(t) = 0.3cos(wt), where x is in
meters and t is in seconds. At x = 0,
Transcribed Image Text:8 O D: 55]| 4 4:33 docs.google.com/forms 19 15 MCQS The wavefunction of a mechanical wave on a string is described by: y(x,t) = 0.012cos(TIX-100tt-2rt/3), where x and y are in meters and t is in seconds. The transverse velocity of an element on the string at the left end (x = 0), at time t = 0 is: None of the listed -0.6π m/s +0.6v3n m/s +0.6π m/s -0.6V3n m/s The equation of motion of a particle in simple harmonic motion is given a by: x(t) = 0.3cos(wt), where x is in meters and t is in seconds. At x = 0,
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