Home
Class 12
PHYSICS
A spherical volume contains a uniformaly...

A spherical volume contains a uniformaly distributed charge of density `2.0 xx 10^(4) C m^(3)`. Find the electric field at a piont inside the volume at a distance 4.0 cm from the centre.

Text Solution

Verified by Experts

Given: V = volume charge density
` = 2.0 xx (10^-4) c/(m^3)`
` In order to find the electric field at a point`
` 4 cm = 4 xx (10^-2) m from the centre.`
Let us assume a concentric spherical
surface inside the sphere.
Now, `E xx ds = (q/ epsilon_0)`
But `q = r xx 4/3 pi (r^3)`
So, `E= ( q/ (epsilon_0).ds) `
= (2 xx (10^-4) xx 4 pi (r^3) / (epsilon_0). 3 . 4 pi(r^2))`
= 2 xx (10^-4) xx r / (3 epsilon_0) `
` = 21.12/7 xx (10^5)N/C `
` = 3.0 xx (10^5) N/C. `
Promotional Banner

Topper's Solved these Questions

  • GAUSS LAW

    HC VERMA|Exercise Objective 2|8 Videos
  • ELECTROMAGNETIC WAVES

    HC VERMA|Exercise Exercises|9 Videos
  • GEOMETRICAL OPTICS

    HC VERMA|Exercise Exercises|77 Videos

Similar Questions

Explore conceptually related problems

An electric dipole is prepared by taking two electric charges of 2 xx 10^(-8) C separated by distance 2 mm. This dipole is kept near a line charge distribution having density 4 xx 10^(-4) C/m in such a way that the negative electric charge of the dipole is at a distance 2 cm from the wire as shown in the figure. Calculate the force acting on the dipole. [Take k=1/(4piepsilon_(0)) = 9 xx 10^(9) Nm^(2)C^(-2) ]

An electorn moves in a circle of radius 10cm with a constant speed of 4.0xx10^(6)ms^(-1) .Find the electric current at a point on the circle.

A point charge Q is placed at the centre of a spherical conducting shell. A total charge of -q is placed on the shell. The magnitude of the electric field at point P_1 at a distance R_1 from the centre is X. The magnitude of the electric field due to induced charges at point P_2 a distance R_2 from the centre is Y. The values of X and Y are respectively.

A spherical conductor of radius 12 cm has a charge of 1.6 xx 10^(-7) C distributed uniformly on its surface . What is the electric field (a) inside the sphere (b) just outside the sphere. (c) at a point 18 cm from the centre of the sphere ?

A solid non conducting sphere of radius R has a non-uniform charge distribution of volume charge density, rho=rho_(0)r/R , where rho_(0) is a constant and r is the distance from the centre of the sphere. Show that : (i) the total charge on the sphere is Q=pirho_(0)R^(3) (ii) the electric field inside the sphere has a magnitude given by, E=(KQr^(2))/R^(4)

A spherical conductor of radius 12 cm has a charge of 1.6 xx 10^(-7) C distributed uniformly on its surface. What is the electric field (a) inside the sphere (b) just outside the sphere (c) at a point 18 cm from the centre of the sphere?

The nuclear charge ( Ze ) is non uniformlly distribute with in a nucleus of radius r. The charge density rho(r) (charge per unit volume) is dependent only on the radial distance r form the centre of the nucleus s shown in figure. The electric field is only along the radial direction. The electric field at r=R is

Two spheres A and B are charged with the charges of +10 and +20 coulomb respectively and separated by a distance of 80 cm. The electric field at point on the line joining the centres of the two spheres will be zero at a distance from the sphere A :

A solid metallic sphere has a charge +3Q . Concentric with this sphere is a conducting spherical shell having charge -Q . The radius of the sphere is a and that of the spherical shell is b(bgta) What is the electric field at a distance R(a lt R lt b) from the centre

Charge Q is distributed uniformly over a non conducting sphere of radius R. Find the electric p-0tential at distance r from the centre of the sphere r (r lt R) . The electric field at a distance r from the centre of the sphere is given as (1)/(4pi epsilon_(0)). (Q)/(R^(3))hatr . Also find the potential at the centre of the sphere .

HC VERMA-GAUSS LAW-Exercises
  1. A charge Q is placed at the centre of a cub. Find the flux of the elec...

    Text Solution

    |

  2. A charge Q is placed at a distance alpha/2 above the centre of a horiz...

    Text Solution

    |

  3. Find the fluz f the electric field through a spherical surface of radi...

    Text Solution

    |

  4. A charge Q is placed at the centre of an inaginary hemispherical surfa...

    Text Solution

    |

  5. A spherical volume contains a uniformaly distributed charge of densit...

    Text Solution

    |

  6. The radius of a gold nucleus (Z=79) is about 7.0 xx 10^9-15) m. Assume...

    Text Solution

    |

  7. A Charge Q is distributed uniformly within the material of a hollow sp...

    Text Solution

    |

  8. A charge Q is placed at the centre of an uncharged, hollow metallic sp...

    Text Solution

    |

  9. Consider the following very rough model of a beryllium atom. The nucle...

    Text Solution

    |

  10. Find the magnitude of the electric field at a point 4 cm away from a l...

    Text Solution

    |

  11. A long cylindrical wire carries a positive charge of linear density 2....

    Text Solution

    |

  12. A long cylindrical volume contains a uniformly distributed charge of d...

    Text Solution

    |

  13. A nonconducting sheet of large surface area and thickness d contains u...

    Text Solution

    |

  14. A charged partical having a charge of -2.0 xx 10^(-6) C is placed cl...

    Text Solution

    |

  15. One end of a 10 cm long silk thread is fixed to a large vertical surfa...

    Text Solution

    |

  16. Consider the situation of the previous problum. (a) Find the tension ...

    Text Solution

    |

  17. Two large conducting plates are placed parallel to each other with a ...

    Text Solution

    |

  18. Two large conducting plates are placed parallel to each other nad they...

    Text Solution

    |

  19. Two large conducting plates X and Y. each having large surface area A...

    Text Solution

    |

  20. Three inentical metal plates with large surface areas are kept paralle...

    Text Solution

    |