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A travelling wave represented by y=Asin ...

A travelling wave represented by `y=Asin (omegat-kx)` is superimposed on another wave represented by`y=Asin(omegat+kx).` The resultant is

A

A standing wave having node at `x=(n+1/2)lambda/2,` `n=0, 1, 2`

B

A wave travelling along + x-direction

C

A wave travelling along - x-direction

D

A standing wave having nodes at `x=(nlambda)/2,n=0,1,2`

Text Solution

Verified by Experts

The correct Answer is:
a

`y=y_(1)+ y_(2) = a sin (omegat-kx)+a sin (omega t+kx)`
`y= 2a sin omegat cos kx`
Clearly it is equation of standing wave for position of
nodes `y = 0 `
i.e `x=(2n+1)lambda/4`
`= (n+1/2)lambda/2,n=0,1,2,3`
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MHTCET PREVIOUS YEAR PAPERS AND PRACTICE PAPERS-STATIONARY WAVES -EXERCISE 2
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  4. The extension in a string, obeying Hooke's law, is x. The speed of sou...

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  5. A Uniform rope having mass m hags vertically from a rigid support. A t...

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  6. The frequency of the third overtone of a closed pipe of length L(c) is...

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  10. The lengths of two organ pipes open at both ends are L and L + d. If t...

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  11. The equation of a standing wave is y=0.2 sinfrac{2pi}{0.3}xcdot cos f...

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  12. Tube A has both ends open while tube B has one end closed. Otherwise t...

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  13. In a resonance tube, using a tuning fork of frequency 325 Hz, the firs...

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  14. A string fixed at both ends oscillates in 5 segments, length 10 m and ...

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  15. A hollow pipe of length 0.8m is closed at one end. At its open end a 0...

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  16. A hollow cylinder with both sides open generates a frequency v in air....

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  17. A pipe open at both produces a note of fundamental frequency v(1) When...

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  18. Match the columns for each of the properties of sound in List l primar...

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  19. For a certain organ pipe, three successive resonant frequencies are ob...

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  20. A travelling wave represented by y=Asin (omegat-kx) is superimposed on...

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