Home
Class 12
PHYSICS
Figure show a square loop of side 0.5 m ...

Figure show a square loop of side `0.5 m` and resistance `10Omega`. The magnetic field has a magnitude `B=1.0T`. The work done in pulling the loop out of the field slowly and uniformly in `2.0s` is

A

(a) `3.125 xx 10^(-3)J`

B

(b) `6.25 xx 10^(-4)J`

C

( c) `1.25 xx 10^(-2)J`

D

(d) `5.0 xx 10^(-4)J`

Text Solution

Verified by Experts

The correct Answer is:
A

(a) Speed of the loop should be
`v = (l)/(t) = (0.5)/(2) = 0.25 m s^(-1)`
Induced emf, `e = Bvl = (1.0)(0.25)(0.5) = 0.125 V` `:.` Current in the loop, `I = (e)/(R ) = (0.125)/(10)`
`=1.25 xx 10^(-2)A`
The magnetic force on the left arm due to the magnetic field is
`F_(m) = ilB = (1.25 xx 10^(-2))(0.5)(1.0)`
`=6.25 xx 10^(-3) N`
To pull the loop uniformly an external force of `6.25 xx 10^(-3)`
`N` towards right must be applied.
`:.` `W = (6.25 xx 10^(-3) N)(0.5m) = 3.125 xx 10^(-3)J`
Promotional Banner

Topper's Solved these Questions

  • ELECTROMAGNETIC INDUCTION

    CENGAGE PHYSICS|Exercise Exercises Multiple Correct|23 Videos
  • ELECTROMAGNETIC INDUCTION

    CENGAGE PHYSICS|Exercise Exercises Asserton - Reasoning|8 Videos
  • ELECTROMAGNETIC INDUCTION

    CENGAGE PHYSICS|Exercise Exercises Subjective|13 Videos
  • ELECTROMAGENTIC INDUCTION

    CENGAGE PHYSICS|Exercise QUESTION BANK|40 Videos
  • ELECTRON,PHONTS,PHOTOELECTRIC EFFECT & X-RAYS

    CENGAGE PHYSICS|Exercise dpp 3.3|15 Videos

Similar Questions

Explore conceptually related problems

Figures shows a square loop of side 1m and resistance 1Omega . The magnetic field on left side of line PQ has a magnitude B=1.0T. The work done in pulling the loop out of the field uniformly in 1 s is

Figure shows loop of 200 turns and side a=3m and resistance of one coil R=1000 Omega . The work done in pulling the loop out of the field, slowly and uniformly in 1.0 s is

A conducting square loop of side 10 cm is placed in a region of uniform magnetic field 0.5 T as shown in the figure. Calculate the work done in slowly moving the loop out of the field in 2 seconds with a speed of 0.05 m s^(-1) . The resistance of loop is 10 Omega .

A circular conducting loop of area 100 cm^(2) and resistance 3 Omega is placed in a magnetic field with its plane perpendicular to the field. If the field is spatially uniform but varies with time t (in second) as B(t) = 1.5 cos omega t tesla, the peak value of the current in the loop is

A square loop of side 20 cm and resistance 0.30 Omega is placed in a magnetic field of 0.4 T. The magnetic field is at an angle of 45^(@) to the plane of loop. If the magnetic field is reduced to zero in 0.5 s, then find the induced emf and induced current in the loop in this time interval.

A square loop of side 20 cm is placed on a plane and magnetic field intensity of 0.1 T is applied at an angle 30 with the plane of the loop. Magnetic field is changed to zero uniformly within 0.8 second. Calculate the emf induced in the loop.

A current of 2*00 A exists in a square loop of edge 10*0 cm . Find the magnetic field B at the centre of the square loop.

A square loop of side 20 cm is placed on a plane and magnetic field intensity of 0.1 T is applied at an angle 30^(@) with the plane of the loop. Magnetic field is changed to zero uniformly within 0.8 second. Calculate the induced emf and current in the loop.

CENGAGE PHYSICS-ELECTROMAGNETIC INDUCTION-Exercises Single Correct
  1. A conducting wire frame is placed in a magnetic field which is directe...

    Text Solution

    |

  2. An equilateral triangular loop ADC having some resistance is pulled wi...

    Text Solution

    |

  3. Figure show a square loop of side 0.5 m and resistance 10Omega. The ma...

    Text Solution

    |

  4. A rectangular loop of wire with dimensions shown in figure is coplanar...

    Text Solution

    |

  5. The four wire loops shown figure have vertical edge lengths of either ...

    Text Solution

    |

  6. A rod lies across frictionless rails in a uniform magnetic field vec(B...

    Text Solution

    |

  7. The current through the coil in figure (i) varies as shown in figure (...

    Text Solution

    |

  8. An electron moves on a straight line path Y Y' as shown in figure. A c...

    Text Solution

    |

  9. In fig. there exists a uniform magnetic field B into the plane of pap...

    Text Solution

    |

  10. In figure, there is conducting ring having resistance R placed in the...

    Text Solution

    |

  11. In the space shown a non-uniform magnetic field vec(B) = B(0)(1+x)(-ha...

    Text Solution

    |

  12. There is a uniform magnetic field B in a circular region of radius R a...

    Text Solution

    |

  13. A gold rod of length l is accelerated in the horizontal direction wit...

    Text Solution

    |

  14. A square loop PQRS of side 'a' and resistance 'r' is placed near an in...

    Text Solution

    |

  15. A wooden stick of length 3l is rotated about an end with constant angu...

    Text Solution

    |

  16. PQ is an infinite current carrying conductor. AB and CD are smooth con...

    Text Solution

    |

  17. Loop A of radius rgtgtR moves toward loop B with a constant velocity V...

    Text Solution

    |

  18. Figure. shows three rigions of magnetic field each of area A, and in e...

    Text Solution

    |

  19. a semicircle wire of radius R is rotated with constant angular velocit...

    Text Solution

    |

  20. Two identical cycle wheels (geometrically have different number of spo...

    Text Solution

    |