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The amplitude of wave disturbance propagating in the positive x-direction is given by  at time t = 0 and y =  at t = 1 s, where x and y are in metres. The shape of wave does not change during the propagation. The velocity of the wave will be _________ m/s.
    Correct answer is '2'. Can you explain this answer?
    Most Upvoted Answer
    The amplitude of wave disturbance propagating in the positive x-direct...
    As per question,
    at time t = 0 and y =  
    and at t = 1s, 
    As we know,

    So, at t = 1s,

    On comparing Eqs. (i) and (ii), we get
    v = 2 ms-1
    Hence, the velocity of the wave will be 2 m/s.
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    The amplitude of wave disturbance propagating in the positive x-direction is given byat time t = 0 and y = at t = 1 s, where x and y are in metres. The shape of wave does not change during the propagation. The velocity of the wave will be _________ m/s.Correct answer is '2'. Can you explain this answer?
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    The amplitude of wave disturbance propagating in the positive x-direction is given byat time t = 0 and y = at t = 1 s, where x and y are in metres. The shape of wave does not change during the propagation. The velocity of the wave will be _________ m/s.Correct answer is '2'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about The amplitude of wave disturbance propagating in the positive x-direction is given byat time t = 0 and y = at t = 1 s, where x and y are in metres. The shape of wave does not change during the propagation. The velocity of the wave will be _________ m/s.Correct answer is '2'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The amplitude of wave disturbance propagating in the positive x-direction is given byat time t = 0 and y = at t = 1 s, where x and y are in metres. The shape of wave does not change during the propagation. The velocity of the wave will be _________ m/s.Correct answer is '2'. Can you explain this answer?.
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