Home
Class 12
PHYSICS
A steel wire of length 1m, mass 0.1kg an...

A steel wire of length `1m`, mass `0.1kg` and uniform cross-sectional area `10^(-6)m^(2)` is rigidly fixed at both ends. The temperature of the wire is lowered by `20^(@)C`. If transverse waves are set up by plucking the string in the middle.Calculate the frequency of the fundamental mode of vibration.
Given for steel `Y = 2 xx 10^(11)N//m^(2)`
`alpha = 1.21 xx 10^(-5) per ^(@)C`

Text Solution

Verified by Experts

The correct Answer is:
11
Promotional Banner

Topper's Solved these Questions

  • WAVE ON STRING

    RESONANCE|Exercise Exercise- 2 PART III|15 Videos
  • WAVE ON STRING

    RESONANCE|Exercise Exercise- 2 PART IV|9 Videos
  • WAVE ON STRING

    RESONANCE|Exercise Exercise- 2 PART I|21 Videos
  • TRAVELLING WAVES

    RESONANCE|Exercise Exercise- 3 PART II|7 Videos
  • WAVE OPTICS

    RESONANCE|Exercise Advanced Level Problems|8 Videos

Similar Questions

Explore conceptually related problems

A steel wire of length 1m , mass 0.1kg and uniform cross-sectional area 10^(-6)m^(2) is rigidly fixed at both ends. The temperature of the wire is lowered by 20^(@)C . If transverse calculate the frequency of the fundamental mode of vibration. Given for steel Y = 2 xx 10^(11)N//m^(2) alpha = 1.21 xx 10^(-5) per ^(@)C

A steel wire of length 1 m and mass 0.1 kg and having a uniform cross-sectional area of 10^(-6) m^(2) is rigidly fixed at both ends. The temperature of the wire is lowered by 20^(@)C . If the wire is vibrating in fundamental mode, find the frequency (in Hz). (Y_(steel)=2xx 10^(11) N//m^(2),alpha_(steel)=1.21 xx 10^(-5)//.^(@)C) .

A steel wire of length 20 cm and uniform cross-sectional area of 1 mm^(2) is tied rigidly at both the ends at 45^(@)C . If the temperature of the wire is decreased to 20^(@)C , then the change in the tension of the wire will be [Y for steel = 2 xx 10^(11 Nm^(-2) , the coefficient of linear expansion for steel = 1.1 xx 10^(-5)//.^(@)CC^(-1) ]

A steel wire of length 20 cm and uniform cross-sectional 1 mm^(2) is tied rigidly at both the ends. The temperature of the wire is altered from 40^(@)C to 20^(@)C . Coefficient of linear expansion of steel is alpha = 1.1 xx 10^(-5) .^(@)C^(-1) and Y for steel is 2.0 xx 10^(11) Nm^(2) , the tension in the wire is

A steel wire is rigidly fixed at both ends its length mass and cross sectional area are 1m, 0.1 kg and 10^(6)m^(2) respectively then the temperature of the wire is lowered by 20^(@)C if the transverse waves are setup by plucking the wire at 0.25m from one end and assuming that wire vibrates with minimum number of loops possible for such a case. Find the frequency of vibration (in Hz). [coefficient of linear expansion of steel =1.21xx10^(-6)//.^(@)C and young's modulus =2xx10^(11)//N//m^(2) ]

A steel wire of length 20 cm and uniform cross-section 1mm^(2) is tied rigidly at both the ends. If the temperature of the wire is altered from 40^(@)C to 20^(@)C , the change in tension. [Given coefficient of linear expansion of steel is 1.1xx10^(5) .^(@)C^(-1) and Young's modulus for steel is 2.0xx10^(11) Nm^(-2) ]

A steel wire of length 20 cm and unifrom crossection mm^(2) is tied rigidly at both the ends. If temperature of the wre is altered from 40^(@)C to 20^(@)C , calcutlate the change in tension. Given coeffeicient of linear expansion of steel is 1.1 xx 10^(-5) .^(@)C^(-1) and Young's modulus for steel is 2.0 xx 10^(11) Nm^(-2) .

A steel wire of uniform cross-sectional area 2mm^(2) is heated upto 50^(@) and clamped rigidly at two ends . If the temperature of wire falls to 30^(@) then change in tension in the wire will be , if coefficient of linear expansion of steel is 1.1 xx 10^(-5)//"^(@)C and young's modulus of elasticity of steel is 2 xx 10^(11) N//m^(2)

A steel wire of length 20 cm and cross - section 1 mm^(2) is tied rigidly at both ends at room temperature 30^(@)C . If the temperature falls 10^(@)C , what will be the change in tension ? Given that Y = 2xx10^(11)N//m^(2) and alpha = 1.1xx10^(-5)//^(@)C

A steel wire fo length 5m and cross-sectional area 2xx10^(-6)m^(2) streches by the same amount as a copper wire of length 4m and cross sectional area of 3xx10^(-6) m^(2) under a given load. The ratio of young's mouduls of steel to that of copper is

RESONANCE-WAVE ON STRING -Exercise- 2 PART II
  1. A certain transverse sinusoidal wave of wavelength 20 cm is moving in ...

    Text Solution

    |

  2. Figure shows a string of linear mass density 1.0 g//cm on which a wave...

    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 rope of mass M and length L has a variable linear mass d...

    Text Solution

    |

  6. A man gerates a symmetrical pulse in a strin by moving his hand up and...

    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 its 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 supports a mass of 1.6 kg as shown in f...

    Text Solution

    |

  12. A 1 m long rope, having a mass of 40 g, is fixed at one end and is tie...

    Text Solution

    |

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

    Text Solution

    |

  14. Three consecutive resonant frequencies of a string are 90, 150 and 210...

    Text Solution

    |

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

    Text Solution

    |

  16. A wire having a linear density of 0.05 gm//c 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

    |