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Two wires of different densities but sam...

Two wires of different densities but same area of cross section are soldered together at one end and are stretched to a tension T. The velocity of a transverse wave in the first wire is double of that in the second wire. Find the ration of the denstiy of the first wire to that of the second wire.

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The correct Answer is:
B

Let `upsilon_1 = velocity in the 1st string`
`rArr = upsilon_1 = sqrt((T)/(m))`
Because, `m_1` = mass per unit length
`=((p_1 alpha_1)/(I_1))`
` = p_1 alpha_1`
where `alpha_1` = Area of cross - section
`rArr upsilon_1 = sqrt((T)/(p_1 alpha_1)).... (1)`
Let `upsilon_2`= velocity in the second string
`rArr = upsilon_2 = sqrt((T)/(m_2))`
`rArr upsilon_2 = sqrt((T)/(p_2a_2))...(2)`
Given that,
`rArr upsilon_1 = 2upsilon_2`
`rArr = sqrt((T)/(a_1p_1)) = 2sqrt((T)/(a_2p_2))`
`rArr ((T)/(a_1p_1)) = 2((T)/(a_2p_2))`
`rArr (p_1)/(p_2) =(1)/(4)`
`rArr p_1 : p_2 = 1 :4`
`a_1 = a_2`
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HC VERMA-WAVE MOTION AND WAVES ON A STRING-Exercises
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  2. A string of linear mass density 0.5 g cm^-1 and a total length 30 cm i...

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  3. Two wires of different densities but same area of cross section are s...

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  8. In the arrangement shown in figure, the string has a mass of 4.5 g. Ho...

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  12. A heavy but uniform rope of lenth L is suspended from a ceiling. (a) W...

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  13. Two long strings A and B, each having linear mass density 1.2×10−2kgm−...

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  14. A transverse wave of amplitude 0.50 mm and frequency 100 Hz is produce...

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  15. A 200 Hz wave with amplitude 1 mm travels on a long string of linear m...

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  17. Two waves, travelling in the same direction through the same region, h...

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  18. Figure shows two wave opulses at t=0 travelling on a string i opposite...

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  19. Two waves, each having a frequency of 100 Hz and a wavelength of 2.0 c...

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  20. If the speed of a transverse wave on a stretched string of length 1 m ...

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