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A string 25 cm long fixed at both endds ...

A string `25 cm` long fixed at both endds and having a mass of `2.5 g` is under tension. A pipe closed from one end is `40 cm` long. When the strin is set vibrating in its first overtone and the air in the pipe in its fundamental frequency, `8` beats per second are heard. If is observed that decreasing the tension in the string decreases the beat frequency. If the speed of sound in air is `320 m//s`. Find tension in the string.

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`mu = (2.5)/(25) = 0.1 g // cm = 10^(-2) Kg//m`
`1^(st)` overtone

`lambda_(s) = 25 cm = 0.25 m rArr f_(s) = (1)/(lambda_(s)) sqrt((T)/(mu))`
pipe is fundamental freq
`lambda_(p) = 160 cm = 1.6 m rArr f_(p) = (V)/(lambda_(p))`

`:'` by decreasing the tension, beat freq is decreased
`:. f_(s) lt f_(p) rArr f_(s) - f_(p) = 8 rArr (1)/(0.25) sqrt((T)/(10^(-2))) - (320)/(1.6) = 8 rArr T = 27.04 N`
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