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The vibration of a string can be described by the equation y = (0.75 cm) {cos(2π/ 5cm-1)x} sin{(60πs-1)t}. The speed (cm/s) of the waves travelling in the string is_______
    Correct answer is '150'. Can you explain this answer?
    Verified Answer
    The vibration of a string can be described by the equation y = (0.75 c...
     Comparing this with the standard equation of standing wave given as

    where velocity of wave v = ω / k
    We have, 
    ⇒  = 150 cm/s
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    The vibration of a string can be described by the equation y = (0.75 c...
    The equation is incomplete. The equation for the vibration of a string can be described by the equation y = (0.75 cm) cos(2πft), where y represents the displacement of the string at a particular time, f represents the frequency of the vibration, and t represents time.
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    The vibration of a string can be described by the equation y = (0.75 c...
     Comparing this with the standard equation of standing wave given as

    where velocity of wave v = ω / k
    We have, 
    ⇒  = 150 cm/s
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    The vibration of a string can be described by the equation y = (0.75 cm) {cos(2π/ 5cm-1)x} sin{(60πs-1)t}. The speed (cm/s) of the waves travelling in the string is_______Correct answer is '150'. Can you explain this answer?
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    The vibration of a string can be described by the equation y = (0.75 cm) {cos(2π/ 5cm-1)x} sin{(60πs-1)t}. The speed (cm/s) of the waves travelling in the string is_______Correct answer is '150'. Can you explain this answer? for Physics 2024 is part of Physics preparation. The Question and answers have been prepared according to the Physics exam syllabus. Information about The vibration of a string can be described by the equation y = (0.75 cm) {cos(2π/ 5cm-1)x} sin{(60πs-1)t}. The speed (cm/s) of the waves travelling in the string is_______Correct answer is '150'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The vibration of a string can be described by the equation y = (0.75 cm) {cos(2π/ 5cm-1)x} sin{(60πs-1)t}. The speed (cm/s) of the waves travelling in the string is_______Correct answer is '150'. Can you explain this answer?.
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