A one dimensional wave propagates through a string which propagates in z direction of linear mass density u = 39 is given by the following equation of wave x(z, t) = 5e-4Zsin(2nz – wt). (a) Calculate the power transferred by this pulse at a point z (Detailed analysis should be given). (b) Find the power carried by this wave at z=0.
A one dimensional wave propagates through a string which propagates in z direction of linear mass density u = 39 is given by the following equation of wave x(z, t) = 5e-4Zsin(2nz – wt). (a) Calculate the power transferred by this pulse at a point z (Detailed analysis should be given). (b) Find the power carried by this wave at z=0.
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![Prob.2
A one dimensional wave propagates through a string which propagates in z direction of linear mass
density u = 34 is given by the following equation of wave x(z, t) = 5e-42sin(2nz – wt).
(a) Calculate the power transferred by this pulse at a point z (Detailed analysis should be given).
(b) Find the power carried by this wave at z=0.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F14fd36c0-3a49-4a88-81ab-55b58dc815b9%2F42427089-82e3-41ca-84d3-2b02b9799ace%2Fr6e3qu5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Prob.2
A one dimensional wave propagates through a string which propagates in z direction of linear mass
density u = 34 is given by the following equation of wave x(z, t) = 5e-42sin(2nz – wt).
(a) Calculate the power transferred by this pulse at a point z (Detailed analysis should be given).
(b) Find the power carried by this wave at z=0.
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