Home
Class 12
PHYSICS
A conducting ring of mass 2kg and radius...

A conducting ring of mass 2kg and radius `0.5m` is placed on a smooth plane. The ring carries a current of `i=4A`. A horizontal magnetic field `B=10 T` is switched on at time `t=0` as shown in fig The initial angular acceleration of the ring will be
.

A

`40pirad s^-2`

B

`20pirad s^-2`

C

`5pirad s^-2`

D

`15pirad s^-2`

Text Solution

Verified by Experts

The correct Answer is:
a

Due to torque of magnetic field, ring will rotate about vertical
diameter. `tau=Ialphaimplies MB=Ialpha`
`implies ipir^2B=1/2mr^2alpha`
`implies alpha=(2iBpi)/m=(2xx4xx10pi)/2=40pi rads^-2`
Promotional Banner

Topper's Solved these Questions

  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS|Exercise Exercises Multiple Correct|25 Videos
  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS|Exercise Exercises Assertion -reasoning|8 Videos
  • MAGNETIC FIELD AND MAGNETIC FORCES

    CENGAGE PHYSICS|Exercise Exercises Subjective|10 Videos
  • KINETIC THEORY

    CENGAGE PHYSICS|Exercise Question Bank|31 Videos
  • Magnetism and Matter

    CENGAGE PHYSICS|Exercise Question Bank|50 Videos

Similar Questions

Explore conceptually related problems

A conducting ring of mass 2 kg and radius 0.5 m is placed on a smooth horizontal plane. The ring carries a current . A horizontal magnetic field B = 10T is switched on at time t = 0 as shown in figure. The initial angular acceleration of the ring will be:

A conducting rign of mass 100 gram and radius 0*5m is placed on a smooth horizontal plane. The ring carries a current of I=4A . A horizontal magnetic field B=10T is switched on at time t=0 as shown in figure. The initial angular acceleration of the ring is

In the shown figure a conducting ring of mass = 2kg and radius R = 0.5 m. lies on a smooth horizontal plane with its plane vertical. The ring carries a current of I = (1)/(pi)A . A horizontal uniform magnetic field of B = 12T is switched on at t =0. The initial angular acceleration alpha in rad//sec^(2) of the ring will be 4x if x is :

A conducting ring of mass m = pi kg and radius R = (1)/(2)m is kept on a flat horizontal surface (xy plane). A uniform magnetic field is switched on in the region which changes with time (t) as vec(B) = (2hatj +t^(2) hatk)T . Resistance of the ring is r = pi Omega and g = 10 ms^(-2) . (a) Calculate the induced electric field at the circumference of the ring at the instant it begins to topple. (b) Calculate the heat generated in the ring till the instant it starts to topple.

A uniform current carrying ring of mass m and radius R is connected by a massless string as shown in Fig. 1.142. A uniform magnetic field B_0 exists in the region to keep the ring in horizontal position, then the current in the ring is (l=length of string) .

A uniform conducting ring of mass pi kg and radius 1 m is kept on smooth horizontal table. A uniform but time varying magnetic field B = (hat (i) + t^(2) hat (j))T is present in the region, where t is time in seconds. Resistance of ring is 2 (Omega) . Then Induced electric field (in volt/meter) at the circumference of ring at the instant ring start toppling is

A non-conducting ring having q uniformly distributed over its circumference is placed on a rough horizontal surface. A vertical time varying magnetic field B = 4t^(2) is switched on at time t = 0. Mass of the ring is m and radius is R. The ring starts rotating after 2 s, the coefficient of friction between the ring and the table is

A uniform conducting ring of mass pi kg and radius 1 m is kept on smooth horizontal table. A uniform but time varying magnetic field B = (hat (i) + t^(2) hat (j))T is present in the region, where t is time in seconds. Resistance of ring is 2 (Omega) . Then Heat generated (in kJ) through the ring till the instant when ring start toppling is

A uniform conducting ring of mass pi kg and radius 1 m is kept on smooth horizontal table. A uniform but time varying magnetic field B = (hat (i) + t^(2) hat (j))T is present in the region, where t is time in seconds. Resistance of ring is 2 (Omega) . Then Time (in second) at which ring start toppling is

CENGAGE PHYSICS-MAGNETIC FIELD AND MAGNETIC FORCES-Exercises Single Correct
  1. In a region of space, a uniform magnetic field B exists in the x-direc...

    Text Solution

    |

  2. If a charged particle of charge to mass ratio (q/m) = alpha centers in...

    Text Solution

    |

  3. A conducting ring of mass 2kg and radius 0.5m is placed on a smooth pl...

    Text Solution

    |

  4. Figure shows an equilateral triangle ABC of side l carrying currents a...

    Text Solution

    |

  5. There exist uniform magnetic and electric fields of magnitudes 1T and ...

    Text Solution

    |

  6. A uniform magnetic field exist in a region which forms an equilateral ...

    Text Solution

    |

  7. A particle of positive charge q and mass m enters with velocity Vhati ...

    Text Solution

    |

  8. In the plane mirror, the coordinates of image of a charged particle (i...

    Text Solution

    |

  9. A uniform magnetic field of 1.5T exists in a cylindrical region of rad...

    Text Solution

    |

  10. An insulating rod of length I carries a charge q distrubuted uniformly...

    Text Solution

    |

  11. Two straight segments of wire ab and bc each carrying current I, are p...

    Text Solution

    |

  12. A current carrying loop is placed in the non-uniform magnetic field wh...

    Text Solution

    |

  13. A current carrying loop lies on a smooth horizontal plane. Then,

    Text Solution

    |

  14. A semicircular wire of radius R, carrying current I, is placed in a ma...

    Text Solution

    |

  15. A wire of cross-sectional area A forms three sides of a square and is ...

    Text Solution

    |

  16. A proton of mass 1.67xx10^(-27)kg and charge 1.6xx10^(-19)c is projec...

    Text Solution

    |

  17. A beam of mixture of alpha particle and protons are accelerted through...

    Text Solution

    |

  18. An electron is projected at an angle theta with a uniform magnetic fie...

    Text Solution

    |

  19. A charged particle moves in a uniform magnetic field perpendicular to ...

    Text Solution

    |

  20. A particle of specific charge alpha is projected from origin with velo...

    Text Solution

    |