A standing wave on a stretched string fixed at both ends is described by: y(x,t) = 0.1 sin(2Ttx) cos(100rtt). The string has a length L = 1 m. For t > 0, an element on the string located at x = 0.75 cm would have its maximum speed for the first time at: O t= 0.005 sec t = 0.025 sec O t= 0.015 sec O t= 0.01 sec O t= 0.02 sec
A standing wave on a stretched string fixed at both ends is described by: y(x,t) = 0.1 sin(2Ttx) cos(100rtt). The string has a length L = 1 m. For t > 0, an element on the string located at x = 0.75 cm would have its maximum speed for the first time at: O t= 0.005 sec t = 0.025 sec O t= 0.015 sec O t= 0.01 sec O t= 0.02 sec
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![A standing wave on a stretched string fixed
at both ends is described by: y(x,t) = 0.1
sin(2Ttx) cos(100rtt). The string has a length
L = 1 m. For t > 0, an element on the string
%D
located at x = 0.75 cm would have its
maximum speed for the first time at:
t = 0.005 sec
t = 0.025 sec
%3D
t = 0.015 sec
t = 0.01 sec
t = 0.02 sec](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8ffd4f5a-ae66-44af-8600-4002ac3113ec%2Ff02b23b6-6225-4400-b573-a873adbdb7eb%2F1vgu44_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A standing wave on a stretched string fixed
at both ends is described by: y(x,t) = 0.1
sin(2Ttx) cos(100rtt). The string has a length
L = 1 m. For t > 0, an element on the string
%D
located at x = 0.75 cm would have its
maximum speed for the first time at:
t = 0.005 sec
t = 0.025 sec
%3D
t = 0.015 sec
t = 0.01 sec
t = 0.02 sec
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