A standing wave has the following wave-function: y(x,t) = 0.2 sin(3tx) cos(12nt), where x and y are in meters, and t is in seconds. If the length of the string is L = 2 m and it is fixed at both ends, then the harmonic, n, in which the string is vibrating is: O n= 2 O n= 6

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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g-2021 Exam-2
DLSftAU8klm9bEaU2Evc7eJ5rklHKPs3rRHs5vu52Z6RJJIQu5Q/formResponse
A standing wave has the following wave-function: y(x,t) = 0.2 sin(3Ttx) cos(12tt),
where x and y are in meters, and t is in seconds. If the length of the string is L = 2
m and it is fixed at both ends, then the harmonic, n, in which the string is
vibrating is:
O n= 2
O n= 6
O n= 5
O n= 3
On= 4
Two identical sinusoidal waves with wavelengths of 1.5 m travel in the same
direction at a speed of 10 m/s, If the two waves originate from the same starting
point, but with time delay At between them, and with resultant amplitude
A_resultant = 13 A then At will be equal to:
O 0.00625 sec
O 0.01 sec
00125 sec
1\
O O O O O
Transcribed Image Text:g-2021 Exam-2 DLSftAU8klm9bEaU2Evc7eJ5rklHKPs3rRHs5vu52Z6RJJIQu5Q/formResponse A standing wave has the following wave-function: y(x,t) = 0.2 sin(3Ttx) cos(12tt), where x and y are in meters, and t is in seconds. If the length of the string is L = 2 m and it is fixed at both ends, then the harmonic, n, in which the string is vibrating is: O n= 2 O n= 6 O n= 5 O n= 3 On= 4 Two identical sinusoidal waves with wavelengths of 1.5 m travel in the same direction at a speed of 10 m/s, If the two waves originate from the same starting point, but with time delay At between them, and with resultant amplitude A_resultant = 13 A then At will be equal to: O 0.00625 sec O 0.01 sec 00125 sec 1\ O O O O O
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