Home
Class 12
PHYSICS
A weightless rigid rod with a small iron...

A weightless rigid rod with a small iron bob at the end is hinged at point A by a ball and socket joint to the wall so that it can rotate in all directions. The rod is kept in the horizontal position by a vertical inextensible string of length 20 cm, fixed at its midpoint. The bob is displaced slightly, perpendicular to the plane of the figure. If the period of small oscillations of the system is `(x pi)/(10)`s ,then what is the value of `x` ? [Take `g = 10 ms^(-2)]`

Text Solution

Verified by Experts

The bob will execute SHM about a stationary axis passing through AB. If its effective length is l' then `T=2pisqrt((l')/(g'))`
`l'=l//sin theta=sqrt(2)l ` (because `theta=45`)
`g'= g cos theta=g//sqrt(2)`
`T=2pisqrt((2l)/g)=2pisqrt((2xx0.2)/10)=(2pi)/5 s`
Promotional Banner

Topper's Solved these Questions

  • NUCLEAR PHYSICS

    RESONANCE ENGLISH|Exercise Advanced level solutions|16 Videos
  • SEMICONDUCTORS

    RESONANCE ENGLISH|Exercise Exercise 3|88 Videos

Similar Questions

Explore conceptually related problems

A weightless rigid rod with a small iron bob at the end is hinged at point A to the wall so that it can rotate in all directions. The rod is kept in the horizontal position by a vertical inextensible string of length 20cm , fixed at its midpoint. The bob is displaced slightly perpenducular to the plane of the rod and string. Find period of small oscillations of the system in the form (piX)/(10)s and fill the value of X.

A weightless rigid rod with a small iron bob at the end is hinged at point A to the wall so that it can rotate in all directions. The rod is kept in the horizontal position by a vertical inextensible string of length 20cm , fixed at its midpoint. The bob is displaced slightly perpenducular to the plane of the rod and string. Find period of small oscillations of the system in the form (piX)/(10)s and fill the value of X.

A weightless rigid rod with a load at the end is hinged at point A to the wall so that it can rotate in all directions (Fig). The rod is kept in the horizontal position by a vertical inextensible thread of length 1, fixed at its midpoint. The load receives a momentum in the direction perpendicular to the plane of the figure. Determine the period T of small oscillations of the system.

Ball-and-Socket joint and hinge joint

Discuss about Ball and socket joint and Hinge joint

A wire is bent an an angle theta . A rod of mass m can slide along the bended wire without friction as shown in Fig. A soap film is maintained in the frame kept in a vertical position and the rod is in equilibrium as shown in the figure. If rod is displaced slightly in vertical direction, then the time period of small oscillation of the rod is

A wire is bent an an angle theta . A rod of mass m can slide along the bended wire without friction as shown in Fig. A soap film is maintained in the frame kept in a vertical position and the rod is in equilibrium as shown in the figure. If rod is displaced slightly in vertical direction, then the time period of small oscillation of the rod is

A uniform rod of mass m and length L is hinged at one of its end with the ceiling and another end of the rod is attached with a thread which is attached with the horizontal ceiling at point P. If one end of the rod is slightly displaced horizontally and perpendicular to the rod and released. If the time period of small oscillation is 2pisqrt((2lsintheta)/(xg)) . Find x.

Two light strings, each of length l are fixed at points A and B on a fixed horizontal and xy A small are making angle 45^(@) with the bob if the bob is displaced normal to the plane of the string and released then period of the resulting small oscillation will be

A uniform rod AB hinged about a fixed point P is initially vertical. A rod is released from vertical position. When rod is in horizontal position: The acceleration of the centre of mass of the rod is

RESONANCE ENGLISH-REVISION DPP-All Questions
  1. A 20gm particle is subjected to two simple harmonic motions x(1)=2 s...

    Text Solution

    |

  2. Three identical horizontal rods AB, CD and EF each of length 2m are on...

    Text Solution

    |

  3. A weightless rigid rod with a small iron bob at the end is hinged at p...

    Text Solution

    |

  4. A uniform rod of mass 200 grams and length L = 1m is initially at rest...

    Text Solution

    |

  5. A small block is kept on a platform executing SHM in the horizontal pl...

    Text Solution

    |

  6. Two particles P(1) and P(2) are performing SHM along the same line abo...

    Text Solution

    |

  7. A solid sphere (radius = R) rolls without slipping in a cylindrical th...

    Text Solution

    |

  8. Two opposite forcesF(1) = 120 N and F(2) = 80 N act on an elastic plan...

    Text Solution

    |

  9. A ring of radius r made of wire of density rho is rotated about a stat...

    Text Solution

    |

  10. The length of an elastic string is 5 metre when the longitudinal tensi...

    Text Solution

    |

  11. A block of mass m=2kg of shown dimensions is placed on a plank of mass...

    Text Solution

    |

  12. There are two ideal springs of force constants K1 and K2 respectively....

    Text Solution

    |

  13. There are two ideal springs of force constants K1 and K2 respectively....

    Text Solution

    |

  14. There are two ideal springs of force constants K1 and K2 respectively....

    Text Solution

    |

  15. A rod of mass 'm and length L is attached to a L shaped plank at 'A'. ...

    Text Solution

    |

  16. A rod of mass 'm and length L is attached to a L shaped plank at 'A'. ...

    Text Solution

    |

  17. A rod of mass 'm and length L is attached to a L shaped plank at 'A'. ...

    Text Solution

    |

  18. Two blocks A and B of masses m and 2m are placed on a smooth horizonta...

    Text Solution

    |

  19. A uniform rod of mass M and length L, area of cross section A is place...

    Text Solution

    |

  20. A uniform rod of mass M and length L, area of cross section A is place...

    Text Solution

    |