Home
Class 12
PHYSICS
A wire having a lineat density of 0.05 g...

A wire having a lineat density of 0.05 gm/ cc is stretched between two rigid supports with a tension of `4.5 xx 10^(7)` dynes. It is observed that the wire resonates at a frequency of 420 cycles /sec. the next resonation frequency at which the same wire resonates is 490 cycels / sec . the length of wire is approximately.

Text Solution

Verified by Experts

The correct Answer is:
6

`V = sqrt((T)/(mu)) = sqrt((4.5 xx 10^(7))/(0.05))`
`(n)/(2l) sqrt((4.5 xx 10^(7))/(0.05)) = 420 "___"(1)`
`(n + 1)/(2l) sqrt((4..5 xx 10^(7))/(0.05)) = 490 "__"(2)`
From equation `(1)` & `(2) rArr (n)/(n + 1) = (6)/(7) rArr n = 6`
Put `n` in `(1) :. (6)/(2l) 3 xx 10^(2) = 420`
`l = (30000)/(140) , l = (1500)/(7) = 214 cm`
Promotional Banner

Topper's Solved these Questions

  • TRAVELLING WAVES

    RESONANCE ENGLISH|Exercise Exercise- 2 PART III|15 Videos
  • TRAVELLING WAVES

    RESONANCE ENGLISH|Exercise Exercise- 2 PART IV|9 Videos
  • TRAVELLING WAVES

    RESONANCE ENGLISH|Exercise Exercise- 2 PART I|21 Videos
  • TEST SERIES

    RESONANCE ENGLISH|Exercise PHYSICS|130 Videos
  • WAVE ON STRING

    RESONANCE ENGLISH|Exercise Exercise- 3 PART II|7 Videos

Similar Questions

Explore conceptually related problems

A wire having a linear density of 0.05 g//cm is stretched between two rigid supports with a tension of 450N. It is observed that the wire resonates at a frequency of 420 Hz. The next higher frequency at which the same wire resonates is 490 Hz. Find the length of the wire.

A wire having a linear density of 0.05 g//cm is stretched between two rigid supports with a tension of 450N . It is observed that the wire resonates at a frequency of 420 Hz . The next higher frequency at which the same wire resonates is 490 Hz . Find the length of the wire.

A wire having a linear mass density 5.0 xx 10^(-3) kg//m is stretched between two rigid supports with a tension of 450 N. The wire resonates at a frequency of 420 Hz. The next higher frequency at which the same wire resonates is 490 Hz. Find the length of the wire.

A wire having a linear mass density 5.0xx10^(3) kg//m is stretched between two rigid supports with tension of 450 N. The wire resonates at a frequency of 420 Hz . The next higher frequency at which the same wire resonates is 480 N . The length of the wire is

A wire having a linear density 0.1 kg//m is kept under a tension of 490N. It is observed that it resonates at a frequency of 400 Hz. The next higher frequency is 450 Hz. Find the length of the wire.

A wire of length 1 m and mass density 4 x 10^3 kg/m^3 is stretched between two clamps and subjected to an extension of 3.6 x 10^-4 m. If Young's modulus of the wire is (4 x 10^10 N/m^2) then the frequency of the first overtone of the transverse vibration in the wire is

A string is stretched betweeb fixed points separated by 75.0 cm . It observed to have resonant frequencies of 420 Hz and 315 Hz . There are no other resonant frequencies between these two. The lowest resonant frequency for this strings is

A 40 cm wire having a mass of 3.2 g is stretched between two fixed supports 40.05 cm apart. In its fundamental mode, the wire vibrates at 220 Hz. If the area of cross section of the wire is 1.0 mm^2 , find its Young modulus.

A 40 cm wire having a mass of 3.2 g is stretched between two fixed supports 40.05 cm apart. In its fundamental mode, the wire vibrates at 220 Hz. If the area of cross section of the wire is 1.0 mm^2 , find its Young modulus.

A wire of density 9 xx 10^(3) kg//m^(3) is stretched between two clamps 1 m apart and is subjected to an extension of 4.9 xx 10^(-4) m . The lowest frequency of transverse vibration in the wire is (Y = 9 xx 10^(10) N//m^(2))

RESONANCE ENGLISH-TRAVELLING WAVES-Exercise- 2 PART II
  1. A certain transvers sinusoidal wave of wavelength 20 cm is moving in t...

    Text Solution

    |

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

    Text Solution

    |

  3. A wire of 9.8 xx 10^(-3) kg per meter mass passes over a fricationless...

    Text Solution

    |

  4. A uniform rope of elngth l and mass m hangs vertically from a rigid su...

    Text Solution

    |

  5. A non-uniform wire of length l and mass M has a variable linear mass d...

    Text Solution

    |

  6. A man generates a symmetrical pulse in a string by moving his hand up ...

    Text Solution

    |

  7. A uniform horizontal rod of length 40 cm and mass 1.2 kg is supported ...

    Text Solution

    |

  8. A string of length 'l' is fixed at both ends. It is vibrating in tis 3...

    Text Solution

    |

  9. A string of mass 'm' and length l, fixed at both ends is vibrating in ...

    Text Solution

    |

  10. A travelling wave of amplitude 5 A is partically reflected from a boun...

    Text Solution

    |

  11. A 50 cm long wire of mass 20 g suports a mass of 1.6 kg as shown in f...

    Text Solution

    |

  12. A 2.00 m-long rope, having a mass of 80 g, is fixed at one end and is ...

    Text Solution

    |

  13. In an experiment of standing waves, a string 90 cm long is attached to...

    Text Solution

    |

  14. Three resonant frequencies of string with both rigid ends are 90, 150 ...

    Text Solution

    |

  15. A steel wire of length 1 m, mass 0.1 kg and uniform cross-sectional ar...

    Text Solution

    |

  16. A wire having a lineat density of 0.05 gm/ cc is stretched between two...

    Text Solution

    |

  17. Figure shows a string stretched by a block going over a pulley. The st...

    Text Solution

    |

  18. Figure shows an aluminium wire of length 60 cm joined to a steel wire ...

    Text Solution

    |

  19. A metallic wire with tension T and at temperature 30^(@)C vibrates wit...

    Text Solution

    |