A steel wire with mass 287 g and length 16 m is strung on a


A steel wire with mass 28.7 g and length 1.6 m is strung on a bass so that the distance from the nut to the bridge is 1.10 m.

(a) Compute the linear density of the string.

kg/m

(b) What velocity wave on the string will produce the desired fundamental frequency of the E1 string, 36.36 Hz?

m/s

(c) Calculate the tension required to obtain the proper frequency.

N

(d) Calculate the wavelength of the string's vibration.

m

(e) What is the wavelength of the sound produced in air? (Assume the speed of sound in air is 343 m/s.)

m

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Physics: A steel wire with mass 287 g and length 16 m is strung on a
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