A sinusoidal wave on a string travels to the right. The wave has the following characteristics: wavelength = 2.05 m, amplitude = 0.100 m, and speed = 1.25 m/s. Assume that at  t = 0,  the left end of the string is at the origin and its transverse velocity is negative. (d) Find the wave function for this wave in SI units. (Use the following as necessary: x and t. Assume x and y are in meters and t is in seconds. Do not include units in your answer.) (e) Determine the equation of motion in SI units for the left end of the string. (Use the following as necessary: t. Assume y is in meters and t is in seconds. Do not include units in your answer.) (f) Determine the equation of motion in SI units for the point on the string at x = 1.40 m to the right of the left end. (Use the following as necessary: t. Assume y is in meters and t is in seconds. Do not include units in your answer.)

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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A sinusoidal wave on a string travels to the right. The wave has the following characteristics: wavelength = 2.05 m, amplitude = 0.100 m, and speed = 1.25 m/s. Assume that at 
t = 0,
 the left end of the string is at the origin and its transverse velocity is negative.
(d)
Find the wave function for this wave in SI units. (Use the following as necessary: x and t. Assume x and y are in meters and t is in seconds. Do not include units in your answer.)
(e)
Determine the equation of motion in SI units for the left end of the string. (Use the following as necessary: t. Assume y is in meters and t is in seconds. Do not include units in your answer.)
(f)
Determine the equation of motion in SI units for the point on the string at x = 1.40 m to the right of the left end. (Use the following as necessary: t. Assume y is in meters and t is in seconds. Do not include units in your answer.)
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