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The wave generated from up and down jerk...

The wave generated from up and down jerk given to
the string or by up and down motion of the piston at
the end of the pipe is

A

transverse or longitudinal

B

progressive

C

standing

D

Both (a) and (b)

Text Solution

Verified by Experts

The correct Answer is:
d

The wave generated in first case in transverse wave
while in second case, the wave is longitudinal. Both
waves are travelling waves (Progressive).
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MHTCET PREVIOUS YEAR PAPERS AND PRACTICE PAPERS-STATIONARY WAVES -EXERCISE 1
  1. A string of mass 2.50kg is under a tension os 200N. The length of the ...

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  2. The equation of a stationary wave along a stretched string is given by...

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  3. The wave generated from up and down jerk given to the string or by up ...

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  4. A wave frequency 100 Hz travels along a string towards its fixed end ....

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  5. The equation of a stationary wave on a string clamped at both ends and...

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  6. For a stationary wave, t = 8 sin ((pix)/(20)) cos (50 pit). What is th...

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  7. Two instruments having stretched strings are being played in unison . ...

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  8. A string vibrates with a frequency of 200Hz. Its length is doubled and...

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  9. The speed of a wave on a string is 150 "ms"^(-1) when the tension is 1...

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  10. A string has tension T. For tripling the frequency. The tension is str...

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  11. A string of length 0.4 m and mass 10^(-2)kg is tightly clamped at its ...

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  12. A wave of length 2m is superimposed on its reflected wave to form a st...

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  13. Equation of a plane progressive wave is given by y=0.6 sin 2pi(t-(x)/(...

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  14. Two uniform strings A and B made of steel are made to vibrate under th...

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  15. A string of mass 0.2 kg/m and length l= 0.6 m is fixed at both ends a...

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  16. A stretched string of length l, fixed at both ends can sustain station...

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  17. Two strings of the same material and the same area of cross-section ar...

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  18. A segment of wire vibrates with fundamental frequency of 40 Hz under a...

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  19. The equation of stationary wave along a stretched string is given by ...

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  20. The temperature at which the speed of sound in air becomes double its ...

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