Home
Class 12
PHYSICS
A conducting sphere A of radius a ,with ...

A conducting sphere `A` of radius `a` ,with charge `Q` , is placed concentrically inside a conducting shell `B` of radius `b` . `B` is earthed. `C` is the common centre of the `A` and `B`

A

The field at a distance `r` form `C` where `alerleb` is `(1)/(4piepsilon_(0))(Q)/(r^(2))`

B

The potential at a distance `r` form `C` where `a lt rlt b` is `(1)/(4piepsilon_(0))(Q)/(r )`

C

The potential difference between `A` and `B` is `(1)/(4piepsilon_(0))(Q)((1)/(a)-(1)/(b))`

D

The potentia at a distance `r` from `C` where `a le r le b` is ,`(1)/(4piepsilon_(0))Q((1)/(r )-(1)/(b))`

Text Solution

Verified by Experts

The correct Answer is:
A,C,D

`E=(1)/(4piepsilon_(0))(q)/(r_(0))`&`V=(1)/(4piepsilon_(0))(q)/(r )`
Promotional Banner

Topper's Solved these Questions

  • ELECTROSTATICS AND GAUSS LAW

    NARAYNA|Exercise Passage I|3 Videos
  • ELECTROSTATICS AND GAUSS LAW

    NARAYNA|Exercise Passage II|3 Videos
  • ELECTROSTATICS AND GAUSS LAW

    NARAYNA|Exercise NCERT based Question|14 Videos
  • ELECTROSTATIC POTENTIAL AND CAPACITANCE

    NARAYNA|Exercise ADDITIONAL PROBLEMS|14 Videos
  • EXPERIMENTAL PHYSICS

    NARAYNA|Exercise Comprehension type|6 Videos

Similar Questions

Explore conceptually related problems

A conducting sphere A of radius a , with charge Q , is placed concentrically inside a conducting shell B of radius b . B is earthed. C is the common center of A and B . Study the following statements. (i) The potential at a distance r from C , where a le r le b, is (1)/(4 pi epsilon_0)(q/( r)) (ii) The potential difference between A and B is (1)/(4 pi epsilon_0) Q ((1)/( r) - (1)/B) (iii) The potential at a distance r from C , where a le r le b, is (1)/(4 pi epsilon_0) Q ((1)/r - (1)/B) Which of the following statements are correct ? .

A conducting sphere A of radius a, with charge Q is placed concentrically inside a conducting shell B of radius b. B is earthed, C is the common centre of A and B. If P is the point between shells A and B at distance r from center C then Match the proper entries from column-2 to column-1 using the codes given below the columns, (use a=1m,b=3m,r=2m and K=(1)/(4piepsilon_(o)) )

A small conducting sphere of radius a, carrying a charge +Q , is placed inside an equal and oppositely charged conducting shell of radius b such that their centers coincide. Determine the potential at a point which is at a distance c from center such that a lt c lt b .

A conducting sphere of radius R, carrying charge Q, lies inside uncharged conducting shell of radius 2R. If they are joined by a metal wire,

A spherical conductor A of radius r is placed concentrically inside a conducting shell B of radius R(R gt r) . A charge Q is given to A , and then A is joined to B by a metal wire. The charge flowing from A to B will be

A solid conducting sphere of radius 'a' is surrounded by a thin uncharged concentric conducting shell of radius 2a . A point charge q is placed at a distance 4a from common centre of conducting sphere and shell. The inner sphere is then grounded The charge on solid sphere is

A solid conducting sphere of radius 'a' is surrounded by a thin uncharged concentric conducting shell of radius 2a . A point charge q is placed at a distance 4a from common centre of conducting sphere and shell. The inner sphere is then grounded The potential of outer shell is

A solid conducting sphere of radius 'a' is surrounded by a thin uncharged concentric conducting shell of radius 2a . A point charge q is placed at a distance 4a from common centre of conducting sphere and shell. The inner sphere is then grounded Pick up the correct statement.

NARAYNA-ELECTROSTATICS AND GAUSS LAW-Level V
  1. If we use permitivity epsilon, resistance R, gravitational constant G ...

    Text Solution

    |

  2. A thin walled spherical conducting shells S of radius R is given charg...

    Text Solution

    |

  3. A hollow closed conductor of irregular shape is given some charge . Wh...

    Text Solution

    |

  4. three points charges are placed at the cornors of an equilibrium trian...

    Text Solution

    |

  5. An electric dipole is placed at the centre of a sphere. Mark the corre...

    Text Solution

    |

  6. An electric field converges at the origin whose magnitude is given by ...

    Text Solution

    |

  7. A conducting sphere A of radius a ,with charge Q , is placed concentri...

    Text Solution

    |

  8. Two thin conducting shells of radii R and 3R are as shown in the fig. ...

    Text Solution

    |

  9. X and Y are large, parallel conducting plates close to each other. Eac...

    Text Solution

    |

  10. A particle of mass m and charge q is thrown in a region where uniform ...

    Text Solution

    |

  11. Two large parallel conducting plates are placed close to each other ,t...

    Text Solution

    |

  12. the electric potential in the region of space is given by :V(x)=A+Bx+C...

    Text Solution

    |

  13. A dipole is placed in x-y plane parallel to the line y=2x there exist ...

    Text Solution

    |

  14. A 10 C charge is given to a conducting spherical shell, and a-3 C poin...

    Text Solution

    |

  15. For Gauss 'law mark out the corrrect statement(s)

    Text Solution

    |

  16. Two infinite parallel,non- conducting sheets carry equal positive char...

    Text Solution

    |

  17. Consider two large ,identical paralllel conducting plates having surfa...

    Text Solution

    |

  18. A particle having charge 's' starts from rest in a region where the el...

    Text Solution

    |

  19. Two charge Q(1) and Q(2) are placed at the points A and B having separ...

    Text Solution

    |

  20. In a parallel capacitor the potential difference between the plates is...

    Text Solution

    |