A travelling wave on a taut string is given by the wave function: y(x,t) = 0.1 sin(2tx - 300t), where x and y are in meters and t is in seconds. The linear mass density of the string is u = 300 g/m, and the string is 7-m long The total energy on the string is: 134 J 19 J O 945 J 60 J 420 J
A travelling wave on a taut string is given by the wave function: y(x,t) = 0.1 sin(2tx - 300t), where x and y are in meters and t is in seconds. The linear mass density of the string is u = 300 g/m, and the string is 7-m long The total energy on the string is: 134 J 19 J O 945 J 60 J 420 J
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![3:11 O O
0 6 (48
docs.google.com
The interference is fully destructive.
The interference is partially
constructive.
A travelling wave on a taut string is
given by the wave function: y(x,t) =
0.1 sin(2ttx - 300t), where x and y are
in meters and t is in seconds. The
linear mass density of the string is u
= 300 g/m, and the string is 7-m long.
The total energy on the string is:
134 J
19 J
945 J
60 J
420 J
To get a full destructive interference
11
K](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6c4ab7c4-8629-4856-9789-5c0101d43e6c%2F5d352c41-747f-4409-8824-5a51c9b9832a%2Fbjewb9h_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3:11 O O
0 6 (48
docs.google.com
The interference is fully destructive.
The interference is partially
constructive.
A travelling wave on a taut string is
given by the wave function: y(x,t) =
0.1 sin(2ttx - 300t), where x and y are
in meters and t is in seconds. The
linear mass density of the string is u
= 300 g/m, and the string is 7-m long.
The total energy on the string is:
134 J
19 J
945 J
60 J
420 J
To get a full destructive interference
11
K
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