Home
Class 12
PHYSICS
(i) Find the field intensity if potentia...

(i) Find the field intensity if potential `V = - k x y (k gt 0)`.
(ii) Draw the field pattern of the field in i.

Text Solution

AI Generated Solution

To solve the problem step by step, we will first find the electric field intensity from the given electric potential and then draw the field pattern. ### Step-by-Step Solution: **(i) Finding the Electric Field Intensity:** 1. **Understanding the Relationship**: The electric field intensity \( \vec{E} \) is related to the electric potential \( V \) by the equation: ...
Promotional Banner

Topper's Solved these Questions

  • ELECTRIC POTENTIAL

    CENGAGE PHYSICS ENGLISH|Exercise Examples|9 Videos
  • ELECTRIC POTENTIAL

    CENGAGE PHYSICS ENGLISH|Exercise Exercise 3.1|23 Videos
  • ELECTRIC FLUX AND GAUSS LAW

    CENGAGE PHYSICS ENGLISH|Exercise MCQ s|38 Videos
  • ELECTRICAL MEASURING INSTRUMENTS

    CENGAGE PHYSICS ENGLISH|Exercise M.C.Q|2 Videos

Similar Questions

Explore conceptually related problems

A chargo q is uniformly distributed on a ring-shaped conductor of radius a. Find the field potential in an arbitrary point on the conductor's axis a distance I away from the plane in which the conductor lies. Using the relation between the potential and the field intensity, find the field intensity at this point.

Electric potential at any point is V = - 5 x + 3y + sqrt(15) z , then the magnitude of the electric field is

A rectangular loop of area 0.06 m2 is placed in a magnetic field of 0.3T with its plane (i) normal to the field (ii) inclined 30^(@) to the field (iii) parallel to the field. Find the flux linked with the coil in each case.

At a certain distance from a point charge, the field intensity is 500 V//m and the potential is -3000 V . The distance to the charge and the magnitude of the charge respectively are

At a certain distance from a point charge, the field intensity is 500 V/m and the potential is -3000 V . The distance to the charge and the magnitude of the charge respectively are

If gravitational potential is V = xy^(2) , find the gravitational field at (2,1)

Gravitational field intensity is given by E = Ax/((A^2 + x^2)^(3/2)) then find out potential at x (Assume potential at infinity = 0)

The variation of electric potential for an electric field directed parallel to the x - axis is shown in (Fig. 3.110). Draw the variation of electric field strength with the x- axis. .

An electric charge 2 xx 10^(-8) C is placed at the point (1,2,4) . At the point (3,2,1) , the electric (i) potential will be 50 V (ii) field will have no Y -component (iii) field will increase by a factor K if the space between the points is filled with a dielectric of constant K (iv) field will be along Y -axis

It costs Rs. 5400 to fence a square field at Rs. 13.50 per metre . Find (i) the length of the side of the field (ii) the area of the field.

CENGAGE PHYSICS ENGLISH-ELECTRIC POTENTIAL-DPP 3.5
  1. (i) Find the field intensity if potential V = - k x y (k gt 0). (ii)...

    Text Solution

    |

  2. In the figure shown a conducting sphere of inner radius 'a' and outer ...

    Text Solution

    |

  3. A point charge Q is situated (outside) at a distance r from the centre...

    Text Solution

    |

  4. Find the electric field potentail and strength at the centre of a hem...

    Text Solution

    |

  5. There are three concentric conducting spherical shells. All of them ar...

    Text Solution

    |

  6. Both the ring and the conducting sphere are given the same charge Q. D...

    Text Solution

    |

  7. A solid sphere of radius 'R' has a cavity of radius (R)/(2). The solid...

    Text Solution

    |

  8. A thibn spherical conducting shell of radius R has a charge q. Another...

    Text Solution

    |

  9. An arc of radius r carries charge. The linear density of charge is lam...

    Text Solution

    |

  10. Two identical thin rings, each of radius R, are coaxially placed at a...

    Text Solution

    |

  11. If the electric potential of the inner metal shell is 10 V and that of...

    Text Solution

    |

  12. Potential difference beween centre and surface of the sphere of radius...

    Text Solution

    |

  13. A mercury drop has potential 'V' on its surface. 1000 such drops combi...

    Text Solution

    |

  14. A solid conducting sphere of radius 'a' is surrounded by a thin unchar...

    Text Solution

    |

  15. A solid conducting sphere of radius 'a' is surrounded by a thin unchar...

    Text Solution

    |

  16. A solid conducting sphere of radius 'a' is surrounded by a thin unchar...

    Text Solution

    |