Home
Class 11
PHYSICS
Figure shows a string of linear mass den...

Figure shows a string of linear mass density `1.0g cm^(-1)` on which a wave pulse is travelling. Find the time taken by pulse in travelling through a distance of `50 cm` on the string. Take `g = 10 ms^(-2)`

Text Solution

Verified by Experts

The correct Answer is:
`0.05 s`

`v=sqrt((1xx10)/(10^(-3)//10^(-2)))=10m//s,t=(L)/(v)=(0.5)/(10)=0.05 sec`
Promotional Banner

Topper's Solved these Questions

  • WAVES AND OSCILLATIONS

    ALLEN|Exercise Part-1(Exercise-04)[B]|13 Videos
  • WAVES AND OSCILLATIONS

    ALLEN|Exercise Part-1(Exercise-05)[A]|28 Videos
  • WAVES AND OSCILLATIONS

    ALLEN|Exercise Part-1(Exercise-03)|31 Videos
  • SEMICONDUCTORS

    ALLEN|Exercise Part-3(Exercise-4)|51 Videos

Similar Questions

Explore conceptually related problems

Figure showa a string of linear mass density 1.0gcm^-1 on which a wave pulse is travelling. Find the time taken by the pulse in travelling through a distance of 50 cm on the string. Take g=10 ms^-2 .

Figure shows a string of linear mass density 1.0 g//cm on which a wave pulse is travelling. Find the time taken (in milli second) by the pulse in travelling through a distance of 60 cm on the string. Take g = 10 m//s^(2) .

A wave pulse is travelling on a string of linear mass density 1.0 g cm^(-1) under a tension of 1 kg wt. Calculate the time taken by the pulse to travel a distance of 50 cm on the string.Given g = 10 ms^(-2) .

A wave pulse is travelling on a string of linear mass density 10gcm^(-1) under a tension of 1kg wt. Calculate the time taken by the pulse to travel a distance of 50cm on the string. Take g=10m//s^(2).

A way pulse is travelling on a string of linear mass density 6.4 xx 10^(-3)kg m^(-1) under a load of 80 kgf . Calculate the time taken by the pulse to traverse the string, if its length is 0.7 m .

An harmonic wave has been set up on a very long string which travels along the length of the string. The wave has a frequency of 50 Hz, amplitude 1 cm and wavelength 0.5 m. find (a) the time taken by the wave to travel a distance of 8 m along the length of string (b) the time taken by a point on the string to travel a distance of 8 m, once the wave has reached the point and sets it into motion (c ) also. consider the above case when the amplitude gets doubled

Calculate the tension in the string shown in the figure. All the surfaces are frictionless. (Take g = 10// ms^(-1) )

ALLEN-WAVES AND OSCILLATIONS-Part-1(Exercise-04)[A]
  1. A steel wire of length 1m, mass 0.1kg and uniform cross-sectional area...

    Text Solution

    |

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

    Text Solution

    |

  3. Figure shows a string of linear mass density 1.0g cm^(-1) on which a w...

    Text Solution

    |

  4. A string vibrate according to the equation y = 5 sin ((pi x)/(3)) cos ...

    Text Solution

    |

  5. A bat emits ultrasonic sound of frequency 100 kHz in air. If this soun...

    Text Solution

    |

  6. The vibrations of a string of length 60cm fixed at both ends are repre...

    Text Solution

    |

  7. Given below are some functions of x and t to represent the displacemen...

    Text Solution

    |

  8. If the bulk modulus of water is 4000 MPa, what is the speed of sound i...

    Text Solution

    |

  9. A steel rod 100 cm long is clamped at its middle. The fundamental freq...

    Text Solution

    |

  10. Two successive resonance frequencies in an open organ pipe are 1944 Hz...

    Text Solution

    |

  11. A flute which we treat as a pipe open at both ends is 60 cm long. (a) ...

    Text Solution

    |

  12. A string 25cm long and having a mass of 2.5 gm is under tension. A pip...

    Text Solution

    |

  13. Two tuning fork having frequency 300 Hz & 305 Hz produce beat phenomen...

    Text Solution

    |

  14. Two sitar strings A and B playing the note 'Dha' are slightly out of t...

    Text Solution

    |

  15. A source of sound of frequency 256 Hz is moving towards a wall with a ...

    Text Solution

    |

  16. A person going away from a factory on his scooter at a speed of 36 km/...

    Text Solution

    |

  17. A car has two horns having a difference in frequency of 180 Hz. The ca...

    Text Solution

    |

  18. A whistle emitting a sound of frequency 440 Hz is tied to string of 1....

    Text Solution

    |

  19. Two tuning forks with natural frequencies of 340 Hz each move relative...

    Text Solution

    |

  20. A SONAR system fixed in a submarine operates at a frequency 40.0kHz. A...

    Text Solution

    |