M1 M2 .25 A uniform rope of mass m and length L hangs from a ceiling. (a) Show that the speed of a trans- verse wave on the rope is a function of y, the distance from the lower end, and is given by v = Vgy. (b) Show that the time a transverse wave takes to travel the length of the rope is given by t = 2VLIg. (6) Figure 16-36 Problem 24.

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Chapter1: Units, Trigonometry. And Vectors
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M1 M2
.25 A uniform rope of mass m
and length L hangs from a ceiling.
(a) Show that the speed of a trans-
verse wave on the rope is a function
of y, the distance from the lower end, and is given by v = Vgy. (b)
Show that the time a transverse wave takes to travel the length of
the rope is given by t = 2VLIg.
(6)
Figure 16-36 Problem 24.
Transcribed Image Text:M1 M2 .25 A uniform rope of mass m and length L hangs from a ceiling. (a) Show that the speed of a trans- verse wave on the rope is a function of y, the distance from the lower end, and is given by v = Vgy. (b) Show that the time a transverse wave takes to travel the length of the rope is given by t = 2VLIg. (6) Figure 16-36 Problem 24.
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