A musical note on a piano has a frequency of 40 Hz. If the tension in the 2-m string is 308 N, and one-half wavelength occupies the string, what is the mass of the wire? 0.047 kg 0.031 kg 0.019 kg 0.040 kg O 0.024 kg

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Chapter17: Sound
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4:29 O M E
A musical note on a piano has a frequency
of 40 Hz. If the tension in the 2-m string is
308 N, and one-half wavelength occupies
the string, what is the mass of the wire?
0.047 kg
0.031 kg
0.019 kg
0.040 kg
0.024 kg
A simple pendulum is set into motion at two
different times with different initial
conditions. The first time: the bob is in its
equilibrium position and is given an initial
velocity + 2 m/s. The maximum height
reached by the bob is h1,max and the
period of motion is T1. The second time: the
bob is in its equilibrium position and is given
an initial velocity + 4 m/s. The maximum
height reached by the bob is h2,max and
the period of motion is T2. Assume that the
motion is simple harmonic, which of the
following is true?
II
Transcribed Image Text:4:29 O M E A musical note on a piano has a frequency of 40 Hz. If the tension in the 2-m string is 308 N, and one-half wavelength occupies the string, what is the mass of the wire? 0.047 kg 0.031 kg 0.019 kg 0.040 kg 0.024 kg A simple pendulum is set into motion at two different times with different initial conditions. The first time: the bob is in its equilibrium position and is given an initial velocity + 2 m/s. The maximum height reached by the bob is h1,max and the period of motion is T1. The second time: the bob is in its equilibrium position and is given an initial velocity + 4 m/s. The maximum height reached by the bob is h2,max and the period of motion is T2. Assume that the motion is simple harmonic, which of the following is true? II
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