A long string held by two men, one on each end. Man A oscillates the end that hold producing a wave described by a function y(x, t) = A sin(kx-ut) and student B oscillates the string producing at twice the frequency, moving in the opposite direction. Both waves move at the same speed v= ok. The two waves interfere to form a resulting wave whose wave function is 3₁ (x, t) = y, (x, t) + y₂ (x, t). Find the velocity of the resulting wave using the linear wave equation dx²
A long string held by two men, one on each end. Man A oscillates the end that hold producing a wave described by a function y(x, t) = A sin(kx-ut) and student B oscillates the string producing at twice the frequency, moving in the opposite direction. Both waves move at the same speed v= ok. The two waves interfere to form a resulting wave whose wave function is 3₁ (x, t) = y, (x, t) + y₂ (x, t). Find the velocity of the resulting wave using the linear wave equation dx²
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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