3. Eric Clapton plucks a C on a guitar string, which causes a fundamental frequency of 261 Hz. The wave travels down the string at 400. m/s. a. Draw a picture of the standing wave. If the linear density of the string is .417g/m, what is the tension on the string? b. Determine the wavelength of the wave.

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3. Eric Clapton plucks a C on a guitar string, which eauses a fundamental frequency of 261 Hz.
The wave travels down the string at 400. m/s.
a. Draw a picture of the standing wave. If the linear density of the string is 417g/m, what is the
tension on the string?
b. Determine the wavelength of the wave.
4. Describe some factors that a guitar player can change to vary the frequency (pitch) of the sound
produced by a guitar. Describe the change that each one would produce in the pitch of the sound.
(Hint: you should be able to identify four changes that affect the pitch.)
OModeling Instruction Program 2003
2
W2-Mechanical Waves in 1D.
Transcribed Image Text:3. Eric Clapton plucks a C on a guitar string, which eauses a fundamental frequency of 261 Hz. The wave travels down the string at 400. m/s. a. Draw a picture of the standing wave. If the linear density of the string is 417g/m, what is the tension on the string? b. Determine the wavelength of the wave. 4. Describe some factors that a guitar player can change to vary the frequency (pitch) of the sound produced by a guitar. Describe the change that each one would produce in the pitch of the sound. (Hint: you should be able to identify four changes that affect the pitch.) OModeling Instruction Program 2003 2 W2-Mechanical Waves in 1D.
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