Home
Class 12
PHYSICS
A point charge +q is held at a distance ...

A point charge `+q` is held at a distance R from the centre of an uncharged spherical conductor of radius ` a(a lt R)`. Calculate the potential of the conductor in the presence of q.

Text Solution

Verified by Experts

Remember that the superposition principle is valid enen in the presence of conductors.

'q' alone would produce an electric field at all points within the volume of the conductor . The conductor must some how cancel the field due to q at all poits interior to it. but there is no charge given to the conductor . the conductor solves this poroblem in a remarkable way. it pulls out positive and negative charges of equal magnitude from its volume and spreads them on its. surface in such a manner that at every point in its interior the field due to q is cancelled by the field due to the surface charges. the potential `phi` within the sphere is uniform , because it is a conducting sphere. if we can find the value of `phi` at any piont in the sphere, our problem is solved. All the points within the sphere, there is one point which is best suited for the the same distance 'a' from the centre of the sphere and therefore, the potential at C due . to all the surface charges (irrespective of their distribution ) is
`oint (sigma."ds")/(4 pi epsilon_(0)a) = (1)/(4 pi epsilon_(0)a) oint sigma`.ds = 0
Because the total charge on the surface of the sphere is zero in this problem . so only contribution to potential at C comes from q now, and this is equal to `(q)/(4 pi epsilon_(0) R)`
Thus the potential of the sphere is `(q)/(4 pi epsilon_(0)R)`
Note that the above discussion can be extended to the case where the net charge on the spherical conductor has any given value Q. Several point charges outside the conductor can also be taken into account.
Promotional Banner

Topper's Solved these Questions

  • ELECTROSTATIC POTENTIAL AND CAPACITANCE

    AAKASH INSTITUTE ENGLISH|Exercise EXERCISE|20 Videos
  • ELECTROSTATIC POTENTIAL AND CAPACITANCE

    AAKASH INSTITUTE ENGLISH|Exercise ASSIGNMENT SECTION - A|44 Videos
  • ELECTROSTATIC POTENTIAL AND CAPACITANCE

    AAKASH INSTITUTE ENGLISH|Exercise SECTION-J Aakash Challengers Questions|5 Videos
  • ELECTROMAGNETIC WAVES

    AAKASH INSTITUTE ENGLISH|Exercise ASSIGNMENT SECTION - D Assertion-Reason Type Questions|25 Videos
  • GRAVITATION

    AAKASH INSTITUTE ENGLISH|Exercise ASSIGNMENT SECTION - D (ASSERTION-REASON TYPE QUESTIONS)|15 Videos

Similar Questions

Explore conceptually related problems

A point charge q is placed at a distance of r from the centre O of an uncharged spherical shell of inner radius R and outer radius 2R. The electric potential at the centre of the shell will be

A point charge q , is placed at a distance r from the centre of an aluminium sphere, of radius R ( r gt R ) . Selectr the correct alternatives.

A point charge q is placed at a distance of r from cebtre of an uncharged conducting sphere of rad R(lt r) . The potential at any point on the sphere is

A point charge q'q is placed at distance 'a' from the centre of an uncharged thin spherical conducting shell of radius R=2a. A point 'P' is located at a distance 4a from the centre of the conducting shell as shown. The electric potential due to induced charge on the inner surface of the conducting shell at point 'P' is

A point charge q is placed at a distance of r from the centre O of an uncharged spherical shell of inner radius R and outer radius 2R.The distance r lt R .The electric potential at the centre of the shell will be

A point charge Q is situated (outside) at a distance r from the centre of an uncharged conducting solid sphere of radius R. The potential due to induced charges (on the conductor) at a point B inside the conductor whose distance form the point charge is d is ______

A charge q is placed at a distance of 2R from the centre of a spherical conducting shell of radius R. What is electrical potential, due to charges induced on the shell, at a point which is farthest from the point charge ?

A point charge +Q is placed at point B at a distance 2R from the center O of an uncharged thin conducting shell of radius R as shown in figure. If VA be the potential at point A, which is at a radial distance of R//2 from the center of the shell, then

A point charge q is placed at a distance d from the centre of a circular disc of radius R. Find electric flux flowing through the disc due to that charge

A small spherical conductor 'A' of radias 'a' is initially charged to a potential 'V' and then placed inside an uncharged spherical conducting shell 'B' of radius 6a as shown. The potential of the spherical conductor 'A' after closing the switch S is

AAKASH INSTITUTE ENGLISH-ELECTROSTATIC POTENTIAL AND CAPACITANCE -EXAMPLE
  1. An electric dipole in a uniform electric field e is turned from theta ...

    Text Solution

    |

  2. A charge q kept in front of a neutral metallic sphere. Find the elect...

    Text Solution

    |

  3. A point charge +q is held at a distance R from the centre of an unchar...

    Text Solution

    |

  4. A thin metallic spherical shell carries a charge Q on it. A point char...

    Text Solution

    |

  5. Two metallic spheres of radii a and b are placed faraway from each o...

    Text Solution

    |

  6. We know that the gravitational field strength is zero insdie a spereic...

    Text Solution

    |

  7. An uncharged metal sphere suspended by a silk thread is placed in a u...

    Text Solution

    |

  8. A charge is placed on an insulated conductor in the form of a perfect ...

    Text Solution

    |

  9. You are given two concentric charged conducting spheres of radii R(1) ...

    Text Solution

    |

  10. A charge Q has been divided on two concentirc conducting spheres of ra...

    Text Solution

    |

  11. Charge on the outer sphere is q, and the inner sphere is grounded. The...

    Text Solution

    |

  12. A sphere of 4 cm radius is suspended with in a hollow sphere of 6 cm r...

    Text Solution

    |

  13. Consider Two metallic charged sphere whose radii are 20 cm and 10 cm r...

    Text Solution

    |

  14. A capacitor of 0.75 muF is charged to a voltage of 16 V. What is the m...

    Text Solution

    |

  15. A parallel plate capacitor is constructed with plates of area 0.0280 m...

    Text Solution

    |

  16. The plates of a parallel plate capacitance 1.0 F are separated by a di...

    Text Solution

    |

  17. The capacitance of earth, treating it as a spherical conductor of radi...

    Text Solution

    |

  18. A parallel -plate capacitor is connected to a battery that maintains a...

    Text Solution

    |

  19. In the arrangement shown find the equivalent capacitance between A an...

    Text Solution

    |

  20. (i) Find the equivalent capacitance of the combination shown in the fi...

    Text Solution

    |