Home
Class 11
PHYSICS
A wheel of radius r and moment of inerti...

A wheel of radius r and moment of inertia I about its axis is fixed at top of an inclined plane of inclination `theta` as shown in figure. A string is wrapped round the wheel and its free end supports a block of mass M which can slide on the plane. Initially, the wheel is rotating at a speed `omega` in direction such that the block slides up the plane. How far will the block move before stopping?

Text Solution

Verified by Experts

Suppose the deceleration of the block is a. The linear decelerationof the rim of the wheel is also a. The angular decelratinof the wheel is `alpha=a/r`. I the tension in the string is T, the equations of motion are as follows:
`Mgsintheta-T=Ma`
and `Tr=Ialpha=Ia/r`
ElimiN/Ating T from these equations
`Mgsintheta-Ia/r^2=Ma`
giving `a=(Mgr^2sintheta)/(I+Mr^2)`
THe initial velocity of the block up the incline is v=omegar`. Thus the distance moved by the block before stopping is
`x=v^2/(2a) =(omega^2r^2(I+Mr^2))/(2Mgr^2sintheta)=((I+Mr^2)omega^2)/(2Mgsintheta)`
Promotional Banner

Topper's Solved these Questions

  • ROTATIONAL MECHANICS

    HC VERMA ENGLISH|Exercise Objective -1|26 Videos
  • ROTATIONAL MECHANICS

    HC VERMA ENGLISH|Exercise Objective -2|14 Videos
  • ROTATIONAL MECHANICS

    HC VERMA ENGLISH|Exercise Questions for short Answer|21 Videos
  • REST AND MOTION : KINEMATICS

    HC VERMA ENGLISH|Exercise Question for short Answer|13 Videos
  • SIMPLE HARMONIC MOTION

    HC VERMA ENGLISH|Exercise Question for short Answer|15 Videos

Similar Questions

Explore conceptually related problems

A wheel of moment of inertia I and radius r is free to rotate about its centre as shown in figure. A string is wrapped over its rim and a block of mass m is attached to the free end of the string. The system is released from rest. Find the speed of the block as it descends through a height h.

A horizontal force F is applied to a block of mass m on a smooth fixed inclined plane of inclination theta to the horizontal as shown in the figure. Resultant force on the block up the plane is:

A wheel having moment of inertia 2 kg m^2 about its axis, rotates at 50 rpm about this axis. Find the torque that can stop the wheel in one minute.

A block of mass m slides down a rough inclined plane with an acceleration g/2

A block of mass m moves with constant speed down the inclined plane of inclination theta . Find the coefficient of kinetic friction.

A wheel of mass M and radius a and M.I. I_G (about centre of mass) is set rolling with angular velocity omega up a rough inclined plane of inclination theta . The distance traveled by it up the plane is

A block of mass m slides down an inclined plane of inclination theta with uniform speed. The coefficient of friction between the block and the plane is mu . The contact force between the block and the plane is

A disc of mass m and radius r is free to rotate about its centre as shown in the figure. A string is wrapped over its rim and a block of mass m is attached to the free end of the string. The system is released from rest. The speed of the block as it descends through a height h, is :-

A block of mass m is placed on a smooth inclined plane of inclination theta with the horizontal. The force exerted by the plane on the block has a magnitude

A block of mass m is placed on a smooth inclined plane of inclination theta with the horizontal. The force exerted by the plane on the block has a magnitude

HC VERMA ENGLISH-ROTATIONAL MECHANICS-worked out Examples
  1. A wheel having moment of inertia 2 kg m^2 about its axis, rotates at 5...

    Text Solution

    |

  2. A string is wrapped around the rim of a wheel of moment of inertia 0.2...

    Text Solution

    |

  3. A wheel of radius r and moment of inertia I about its axis is fixed at...

    Text Solution

    |

  4. The pulley shown in figure has a moment of inertia I about it's axis a...

    Text Solution

    |

  5. Two small kids weighing 10 kg and 15 kg respectively are trying to bal...

    Text Solution

    |

  6. A uniform ladder of mass 10 kg leans against a smooth vertical wall ma...

    Text Solution

    |

  7. The ladder shown in figure has negligible mass and rests on a friction...

    Text Solution

    |

  8. Two small balls A and B each of mass m, are attached tightly to the en...

    Text Solution

    |

  9. Two particles of mass m each are attached to a light rod of length d, ...

    Text Solution

    |

  10. A particle is projected at time t=0 from a point P wilth a speed v0 at...

    Text Solution

    |

  11. A uniform circular disc of mass 200 g and radius 4.0 cm is rotated abo...

    Text Solution

    |

  12. A wheel rotating at an angular speed of 20 rad/s is brought to rest by...

    Text Solution

    |

  13. Two masses m and M(m lt M) are joined by a light string passing over a...

    Text Solution

    |

  14. Figure shows a mass m placed on a frictionless horizontal table and at...

    Text Solution

    |

  15. A uniform rod of mas m and length l is kept vertical with the lower en...

    Text Solution

    |

  16. Four particles each of mass 'm' are kept at the four corners of a squa...

    Text Solution

    |

  17. Two identical spheres each of mass 1.20 kg and radius 10.0 cm are fixe...

    Text Solution

    |

  18. Two uniform identicla rods each of mass M and length l are joined to f...

    Text Solution

    |

  19. A uniform rod of mass M and length a lies on a smooth horizontal plane...

    Text Solution

    |

  20. A wheel of perimeter 220 cm rolls on a level road at a speed of 9 km/h...

    Text Solution

    |