Home
Class 11
PHYSICS
A uniform horizontal rod of length 40 cm...

A uniform horizontal rod of length 40 cm and mass 1.2 kg is supported by two identical wires as shown in figure. Where should a mass of 4.8 kg be placed on the rod so that the same tuning fork may excite the wire on left into its fundamental vibrations and that on right into its first overtone ? Take `g=10ms^-2`

Text Solution

Verified by Experts

The correct Answer is:
5cm

Length of the rod, L=40cm=0.4m
mass of the rod =m=1.2kg
let the 4.8 kg mass be placed at a distance x from the left end.
Given `f_d=2f_2`
`:. 1/(2L)sqrt(T_1/m)=2/(2L)sqrt(T_2/m)`
`rarr sqrt(T_1/T_2)=2`
`rarr T_1/T_2=4`.
From the free body diagram
`T_1+T_2=48+12=60N `
`rarr 4T_r+T_r=5T_r=60N`
`:. T_r=12N`
`and T_1=48N`
now taking moment about point A
`T_rxx(0.4)=48x+12(0.2)`
`rarr 4.8=48x-2.4`
`rarr 4.8x=2.4`
`-x=24/48=1/20m=5cm`
so, the mass should be placed at a distance 5 cm from tehleft end.
Promotional Banner

Topper's Solved these Questions

  • WAVE MOTION AND WAVES ON A STRING

    HC VERMA|Exercise Objective -2|8 Videos
  • THE FORCES

    HC VERMA|Exercise Exercises|12 Videos
  • WORK AND ENERGY

    HC VERMA|Exercise Exercises|64 Videos

Similar Questions

Explore conceptually related problems

A straight horizontal conducting rod of length 0.45 m and mass 60 g is suspended by two vertical wires at its ends. A current of 5.0 A is set up in the rod through the wires. a. What magnetic field should be set up normal to the conductor in order that the tension in the wires is zero? b. What will be the total tension in the wires if the direction of current is reversed keeping the magnetic field same as before? (Ignore the mass of the wires.) g = 9.8 ms^2 ?

A straight horizontal wire of mass 10mg and length 1.0 m carries a current of 2.0 A. what minimum magnetic field B should be applied in the region so that the magnetic force on the wire may balance its weight?

A light wire AB of length 10 cm can slide on a vertical frame as shown in figure. There is a film of soap solution trapped between the frame and the wire. Find the load W that should be suspended from the wire to keep it in equilibrium. Neglect friction. Surface tension of soat solution =25 dyne cm^-1 . Take g=10 ms^-2

Consider the situation shown in figure. The wire which has a mass of 4.00 g oscillates in its second harmonic and sets the air column in the tube into vibrations in its fundamental mode. Assuming that the speed of sound in air is 40 m s^-1 , find the tension in the wire. .

A 50 cm long wire of mass 20 g suports a mass of 1.6 kg as shown in figure. Find the fundamental frequency of the portioin of the strig between the wall and the pulley. Take g=10 ms^-2 .

The convex surface of a thin concave-convex lens of glass of refractive index 1.5 has a radius of curvature 20 cm. The concave surface has a radius of curvature 60 cm. The convex side is silvered and placed on a horizontal surface as shown in figure. (a) Where should a pin be placed on the axis so that its image is formed at the same place ? (b) If the concave part is filled with water (mu = 4/3), find the distance through which the pin should be moved so that the image of the pin again coincides with the pin.

Each of the three blocks P, Q and R shown in figure has a mass of 3 kg. Each of the wires A and B has cross sectional area 0.005 cm^2 and Young modulus 2xx10^11Nm^-2 . Neglect friction. Find the longitudinal strain developed in each of the wires. Take g=10ms^-2

A light rod of length 1 m is pivoted at its centre and two masses of 5 kg and 2 kg are hung from the ends as shown in the figure. Find the initial angular acceleration of the rod assuming that it was horizontal in the beginning.

HC VERMA-WAVE MOTION AND WAVES ON A STRING-Exercises
  1. A sonometer wire having a length of 1.50 m between the bridges vibrate...

    Text Solution

    |

  2. The length of the wire shown in figure between the pulley is 1.5 m and...

    Text Solution

    |

  3. A one-metre long stretched string having a mass of 40 g is attached to...

    Text Solution

    |

  4. A wire, fixed at both ends is seen to vibrate at a resonant frequency ...

    Text Solution

    |

  5. A string, fixed at both ends, vibrates in a resonant mode with a separ...

    Text Solution

    |

  6. A 660 Hz tuning fork sets up vibration in a string clamped at both end...

    Text Solution

    |

  7. A particular guitar wire is 30.0 cm long and vibrates at a frequency o...

    Text Solution

    |

  8. A steel wire fixed at both ends has a fundamental frequency of 200 Hz....

    Text Solution

    |

  9. Three resonant frequencies of a string are 90, 150 and 210 Hz. (a) Fin...

    Text Solution

    |

  10. Two wires are kept tight between the same pair of supports. The tensio...

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |

  13. A string of length L fixed at both ends vibrates in its fundamental mo...

    Text Solution

    |

  14. A 2 m-long string fixed at both ends is set into vibrations in its fir...

    Text Solution

    |

  15. The equation for the vibration of a string, fixed at both ends vibrati...

    Text Solution

    |

  16. The equation of a standing wave, produced on a string fixed at both en...

    Text Solution

    |

  17. A 40 cm wire having a mass of 3.2 g is stretched between two fixed sup...

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |

  20. A heavy string is tied at one end to a movable support and to a light ...

    Text Solution

    |