3 4 Each end of a filament with μ = 5.20 g/m is attached to two opposite walls. The distance between the walls is the length of the filament. A block of mass m hangs from the middle of the filament. Neglect the mass of the filament in calculating the tension. 3L 4 M. (a) Find an expression for the transverse wave speed in the filament as a function of the mass of the block. (Use the following as necessary: m. Do not include units in your answer. Assume that m is measured in kg and vis measured in m/s.) V = (b) What is the mass of the block (in kg) if the wave speed is 56.0 m/s? kg

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Each end of a filament with μ = 5.20 g/m is attached to two opposite walls. The distance between the walls is the length of the filament. A block of mass m
hangs from the middle of the filament. Neglect the mass of the filament in calculating the tension.
3L
4
M.
(a) Find an expression for the transverse wave speed in the filament as a function of the mass of the block. (Use the following as necessary: m. Do not include
units in your answer. Assume that m is measured in kg and vis measured in m/s.)
V =
(b) What is the mass of the block (in kg) if the wave speed is 56.0 m/s?
kg
Transcribed Image Text:3 4 Each end of a filament with μ = 5.20 g/m is attached to two opposite walls. The distance between the walls is the length of the filament. A block of mass m hangs from the middle of the filament. Neglect the mass of the filament in calculating the tension. 3L 4 M. (a) Find an expression for the transverse wave speed in the filament as a function of the mass of the block. (Use the following as necessary: m. Do not include units in your answer. Assume that m is measured in kg and vis measured in m/s.) V = (b) What is the mass of the block (in kg) if the wave speed is 56.0 m/s? kg
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