A transverse sine wave is moving in the positive x direstion along a string stretched on the x axis. The wave has frequency 440 Hz and wavelength 0.341 m. The string has linear density 0.0032 kg/m. The amplitude in the y direction is 0.006 m. a. Find the velocity of the wave. b. Find the tension in the string. c. Find the maximum velocity of a small section of the string. d. Find the maximum acceleration of a small section of the string.
A transverse sine wave is moving in the positive x direstion along a string stretched on the x axis. The wave has frequency 440 Hz and wavelength 0.341 m. The string has linear density 0.0032 kg/m. The amplitude in the y direction is 0.006 m. a. Find the velocity of the wave. b. Find the tension in the string. c. Find the maximum velocity of a small section of the string. d. Find the maximum acceleration of a small section of the string.
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
Transcribed Image Text:A transverse sine wave is moving in the positive x direstion along a string stretched on the x axis. The wave has frequency 440 Hz and
wavelength 0.341 m. The string has linear density 0.0032 kg/m. The amplitude in the y direction is 0.006 m.
a. Find the velocity of the wave.
b. Find the tension in the string.
c. Find the maximum velocity of a small section of the string.
d. Find the maximum acceleration of a small section of the string.
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