The transverse displacement of a string fixed at both ends is given by y=0.06sin(2πx3)cos(120πt)
where x and y are in metres and t is in seconds. The length of the string is 1.5 m and its mass is 3.0×10−2kg. What is the tension in the string?
A
648 N
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B
724 N
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C
832 N
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D
980 N
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Solution
The correct option is A 648 N Let λ be the wavelength, f the frequency and v the speed of the wave. Then 2πλ= Coefficient of x in the argument of the sine funciton ⇒2πλ=2π3 ⇒λ=3m
Also, ω=2πf = Coefficient of t in the argument of the cos funciton ⇒2πf=120π ⇒f=60Hz
Hence, velocity of the wave, v=fλ=60×3=180ms−1
Mass per unit length, μ=3.0×10−21.5=2.0×10−2kgm−1
We know that, v=√Tμ, where T is tension in the string. ∴T=μv2=2.0×10−2×(180)2=648N
Hence, the correct choice is (a).