Suppose the waves on a string are described by the wave function (length in m, time in s) The rope of length 1.875 m has its initial end movable and its final end fixed. If the string is subjected to a tension of 14 N, the linear mass density of the string in international system is.
Suppose the waves on a string are described by the wave function (length in m, time in s) The rope of length 1.875 m has its initial end movable and its final end fixed. If the string is subjected to a tension of 14 N, the linear mass density of the string in international system is.
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Suppose the waves on a string are described by the wave function (length in m, time in s)
The rope of length 1.875 m has its initial end movable and its final end fixed.
If the string is subjected to a tension of 14 N, the linear mass density of the string in international system is.
![E(7, t) = 6 × 10cos(4.189y)sen(1727.876t)i](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9abdcd7c-3107-4fd8-9ce3-09f7e73c94bb%2F98ce6747-c6e3-4994-becf-c5ceab668fc2%2Fl09htom_processed.png&w=3840&q=75)
Transcribed Image Text:E(7, t) = 6 × 10cos(4.189y)sen(1727.876t)i
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