Home
Class 12
PHYSICS
A solid uniform cylinder of mass M attac...

A solid uniform cylinder of mass `M` attached to a massless spring of force constant k is placed on a horizontal surface in such a way that cylinder can roll without slipping. If system is released from the stretched position of the spring, then the period will be-

A

`2pisqrt((M)/(k)`

B

`2pisqrt((3m)/(2k))`

C

`2pisqrt((M)/(2k))`

D

`2pisqrt((2M)/(3k))`

Text Solution

Verified by Experts

The correct Answer is:
B

Let small angular displacement of cylinder be `theta` then restoring torque
`Ialpha = -k(Rtheta) R` where `I = 3/2 MR^(2)`
`rArr (d^(2)theta)/(dt^(2)) + (kR^(2))/((3)/(2)MR^(2)) theta = 0 rArr (d^(2)theta)/(dt^(2)) + (2k)/(3M)theta = 0 rArr omega^(2) = (2k)/(3m)`
Promotional Banner

Topper's Solved these Questions

  • SIMPLE HARMONIC MOTION

    ALLEN |Exercise Exercise- 3 Match The Column|1 Videos
  • SIMPLE HARMONIC MOTION

    ALLEN |Exercise Asseration & Reason|7 Videos
  • SIMPLE HARMONIC MOTION

    ALLEN |Exercise Exercise-01|117 Videos
  • RACE

    ALLEN |Exercise Basic Maths (Wave Motion & Dopplers Effect) (Stationary waves & doppler effect, beats)|25 Videos
  • TEST PAPER

    ALLEN |Exercise PHYSICS|4 Videos

Similar Questions

Explore conceptually related problems

A particle of mass m is attached to one end of a mass-less spring of force constant k, lying on a frictionless horizontal plane. The other end of the spring is fixed. The particle starts moving horizontally from its equilibrium position at time t=0 with an initial velocity u_0 . when the speed of the particle is 0.5u_0 , it collides elastically with a rigid wall. After this collision

A uniform solid cylindrical roller of mass ' m ' is being pulled on a horizontal surface with force F parallel to the surface and applied at its centre. If the acceleration of the cylinder is ' a ' and it is rolling without slipping, then the value of ' F ' is :-

A uniform thin cylindrical disk of mass M and radius R is attaached to two identical massless springs of spring constatn k which are fixed to the wall as shown in the figure. The springs are attached to the axle of the disk symmetrically on either side at a distance d from its centre. The axle is massless and both the springs and the axle are in horizontal plane. the unstretched length of each spring is L. The disk is initially at its equilibrium position with its centre of mass (CM) at a distance L from the wall. The disk rolls without slipping with velocity vecV_0 = vacV_0hati. The coefficinet of friction is mu. The maximum value of V_0 for whic the disk will roll without slipping is-

A uniform thin cylindrical disk of mass M and radius R is attaached to two identical massless springs of spring constatn k which are fixed to the wall as shown in the figure. The springs are attached to the axle of the disk symmetrically on either side at a distance d from its centre. The axle is massless and both the springs and the axle are in horizontal plane. the unstretched length of each spring is L. The disk is initially at its equilibrium position with its centre of mass (CM) at a distance L from the wall. The disk rolls without slipping with velocity vecV_0 = vacV_0hati. The coefficinet of friction is mu. The centre of mass of the disk undergoes simple harmonic motion with angular frequency omega equal to -

A uniform thin cylindrical disk of mass M and radius R is attaached to two identical massless springs of spring constatn k which are fixed to the wall as shown in the figure. The springs are attached to the axle of the disk symmetrically on either side at a distance d from its centre. The axle is massless and both the springs and the axle are in horizontal plane. the unstretched length of each spring is L. The disk is initially at its equilibrium position with its centre of mass (CM) at a distance L from the wall. The disk rolls without slipping with velocity vecV_0 = vacV_0hati. The coefficinet of friction is mu. The net external force acting on the disk when its centre of mass is at displacement x with respect to its equilibrium position is.

A uniform cylinder of mass M lies on a fixed plane inclined at a angle theta with the horizontal. A light string is tied to the cylinder at the rightmost point, and a mass m hangs from the string as shown. Assume that the coefficient of friction between the cylinder and the incline plane is sufficiently large to prevent slipping. for the cylinder to remain static the value of m is

A block of mass M is attached to the lower end of a vertical spring. The spring is hung from a ceiling and has force constant value k. The mass is released from rest with spring initially unstretched. The maximum extension produced in the length of the spring will be............

Passage VIII A disc of mass m and radius R is attached with a spring of force contant k at its center as shown in figure. At x-0, spring is unstretched. The disc is moved to x=A and then released. There is no slipping between disc and ground. Let f be the force of friction on the disc from the ground. f versus t (time) graph will be as

A solid cylinder C and a hollow pipe P of same diameter are in contact when they are released from rest as shown in the figure on a long incline plane. Cylinder C and pipe P roll with out slipping. Determine the clear gap (in m) between them after 4 seconds.

A block of mass 0.9 kg attached to a spring of force constant k is lying on a frictionless floor. The spring is compressed to sqrt(2) cm and the block is at a distance 1//sqrt(2) cm from the wall as shown in the figure. When the block is released, it makes elastic collision with the wall and its period of motion is 0.2 sec . Find the approximate value of k

ALLEN -SIMPLE HARMONIC MOTION-Exercise-02
  1. A mass M is performing linear simple harmonic motion. Then correct gra...

    Text Solution

    |

  2. A uniform cylinder of length (L) and mass (M) having cross sectional a...

    Text Solution

    |

  3. Two identical springs are fixed at one end and masses 1kg and 4kg are ...

    Text Solution

    |

  4. A cylindrical block of the density rho is partically immersed in a liw...

    Text Solution

    |

  5. A mass of 0.2 Kg is attached to the lower end of a massles spring of f...

    Text Solution

    |

  6. A horizontal plank has a rectangular block placed on it. The plank sta...

    Text Solution

    |

  7. A particle is subjected to two simple harmonic motions along x and y d...

    Text Solution

    |

  8. A particle moves in the x-y the accoding to the equation, r = (hati + ...

    Text Solution

    |

  9. Two blocks A and B, each of mass m, are connected by a masslesss sprin...

    Text Solution

    |

  10. A solid uniform cylinder of mass M attached to a massless spring of fo...

    Text Solution

    |

  11. A ball is suspended by a thread of length l at the point O on an incl...

    Text Solution

    |

  12. A cage of mass M hangs from a light spring of force constant k. A body...

    Text Solution

    |

  13. In the above problem, the frequnecy of oscillations of the cage will b...

    Text Solution

    |

  14. The amplitude of a particle executing SHM about O is 10 cm. Then

    Text Solution

    |

  15. The angular frequency of a spring block system is omega(0). This syste...

    Text Solution

    |

  16. The x-coordinate of a particle moving on x-axis is given by x = 3 sin...

    Text Solution

    |

  17. Two blocks of masses 3 kg and 6kg rest on horizontal smooth surface. T...

    Text Solution

    |

  18. A disc of mass 3 m and a disc of mass m are connected by a massless sp...

    Text Solution

    |

  19. The displacement-time graph of a particle executing SHM is shown in fi...

    Text Solution

    |