Home
Class 11
PHYSICS
A flywheel of moment of inertia 5.0 kg m...

A flywheel of moment of inertia 5.0 kg m^2 is rotated at a speed of 60 rad/s. Because of the friction at the axle, it comes to rest in 5.0 minutes. Find a. The average torque of the friction. B. the total work done by the friction and c. the angular momentum of the wheel 1 minute before it stops rotating.

Text Solution

Verified by Experts

The correct Answer is:
A, B, C

A fly wheel of moment of inertia 5 kg m is rotated at a speed of 60 rad/s. The fly wheel comes to rest due to the friction at the axis after 5 minutes.
therefore the angular deceleration poroduced due to friction force
`omega=omega_0+at`

`rarr omega_0=-at`
`rarr a=-(60/5xx60)`
`=-1/5rad/s^2`
a. therefore total work done in stopping the wheel by frictioN/Al force
`W=1/2 Iomega^2
`=1/2xx5xx(60xx60)`
`=1N-mopposite to the rotation of wheel
c. Angular velocity after 4 minutes
`rarr omega=omega_0+at`
`=60-240/5`
`60/5=12rad/s`
Therefore angular mometum abut the centre
`=Ixxomega`
`=5xx12=60kg-m^2/s`
Promotional Banner

Topper's Solved these Questions

  • ROTATIONAL MECHANICS

    HC VERMA ENGLISH|Exercise Questions for short Answer|21 Videos
  • ROTATIONAL MECHANICS

    HC VERMA ENGLISH|Exercise Objective -2|14 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 flywheel of moment of inertia 5.0kg-m^(2) is rotated at a speed of 10rad//s because of the friction at the axis it comes to rest in 10s. Find the average torque of the friction.

A flywheel of moment of inertia 2 "kg-m"^(2) is rotated at a speed of 30 "rad/s" . A tangential force at the rim stops the wheel in 15 second. Average torque of the force is

A fan of moment of inertia 0.6kgm^(2) is moving with a speed of 0.5 r.p.s. The angular momentum of the fan 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 uniform disc of moment of inertia 1 kg m^2 rotates with a speed of 120 rpm, Calculate the torque required to stop the disc in 10 revolutions ?

A wheel of moment of inertia 30 kg m^(2) is rotating at 10 rotations per minute. The work done in increasing its speed to 5 times its initial value will be

A wheel of moment of inertia 2 kgm^(2) is rotating about an axis passing through centre and perpendicular to its plane at a speed 60 rad//s . Due to friction, it comes to rest in 5 minutes. The angular momentum of the wheel three minutes before it stops rotating is

A flywheel of moment of inertia 10kg m^(2) is rotating at 50 rad//s . It must be brought to stop in 10 s . (a) How much work must be done to stop it? (b) What is the required average power?

A wheel whose moment of inertial is 0.03kgm^(2) , is accelerated from rest to 20rad//s in 5 s. When the external torque is removed, the wheel stops in 1 min. Find (a). The frictional torque. (b). The external torque.

A wheel having moment of inertia 4 kg m^(2) about its axis, rotates at rate of 240 rpm about it. The torque which can stop the rotation of the wheel in one minute is :-

HC VERMA ENGLISH-ROTATIONAL MECHANICS-Exercises
  1. A square plate of mass 120g and edge 5.00 cm rotates about one of the ...

    Text Solution

    |

  2. Calculate the torque on the square plate of the previous problem if it...

    Text Solution

    |

  3. A flywheel of moment of inertia 5.0 kg m^2 is rotated at a speed of 6...

    Text Solution

    |

  4. Because of the friction between the water in oceans with the earth's s...

    Text Solution

    |

  5. A flywheel rotating at a speed of 600 rpm about its axis is brought t...

    Text Solution

    |

  6. A wheel of mass 10 kg and radius 0.2 m is rotating at an angular speed...

    Text Solution

    |

  7. A cylinder rotating at an angular speed of 50 rev/s is brought in cont...

    Text Solution

    |

  8. A body rotating at 20 rad/s is acted upon by a constant torque providi...

    Text Solution

    |

  9. A light rod of length 1 m is pivoted at its centre and two masses of 5...

    Text Solution

    |

  10. A wheel of mass 1.4 kg and radius 0.4 m is mounted on a frictionless, ...

    Text Solution

    |

  11. Figure shows two blocks of masses m and M connected by a string passin...

    Text Solution

    |

  12. A string is wrapped on a wheel of moment of inertia 0.20 kg-m^2 and ra...

    Text Solution

    |

  13. Suppose the smaller pulley of the previous problem has its radius 5.0 ...

    Text Solution

    |

  14. The pulleys in figure are identical, each having a radius R and moment...

    Text Solution

    |

  15. The pulleys in figure are identical, each having a radius R and moment...

    Text Solution

    |

  16. The pulley shown in figure has a radius 10 cm and moment of inertia 0....

    Text Solution

    |

  17. Solve the previous problem if the firction coefficient between the 2.0...

    Text Solution

    |

  18. A uniform metre stick of mass 200 g is suspended from the ceiling thro...

    Text Solution

    |

  19. A uniform ladder of length 10.0 m and mass 16.0 kg is resting against ...

    Text Solution

    |

  20. Suppose the friction coefficient between the ground and the ladder of ...

    Text Solution

    |