Home
Class 12
PHYSICS
The given two fixed rings of radius R li...

The given two fixed rings of radius `R` lie in `XY` plane as shown in the figure. Linear charge density of the rings `A` and `B` varies as per the relation`lambda=lambda_(0)sintheta` and `lambda=lambda_(0)costheta` respectively where theta is measured from `+x` axis. Distance between the centre of the two rings is `r gt gt R`

A

Force of interaction between the two ring is` (3)/(4)xx(lambda_(0)^(2)pi)/(in_(0))((R )/(r ))^(4)`

B

Force of interection between the two rings is` (3)/(2)xx(lambda_(0)^(2)pi)/(in_(0))((R )/(r ))^(4)`

C

Potential energy of interaction between the two ring of `(pilambda_(0)^(2)R^(4))/(4epsilon_(0)r^(3))`

D

Potential energy of interaction between the two ring is zero.

Text Solution

Verified by Experts

The correct Answer is:
A, D

`intdp=intdq(2Rsintheta)`

`p=underset(0)overset(pi)(int)(lambda_(0)sinthetaxxRd theta)(2Rsintheta)`
`p=pilambda_(0)R^(2)" ".....(i)`
`F=(3kp^(2))/(r^(4))`
`=(3lambda_(0)^(2)piR^(4))/(4epsilon_(0)r^(4))" ".....(ii)`

`U=-P_(2)E_(1)cos90^(@)=0" "......(iii)`
Promotional Banner

Topper's Solved these Questions

  • TEST PAPERS

    ALLEN|Exercise part-2 physic|48 Videos
  • TEST PAPERS

    ALLEN|Exercise PHYSICS|18 Videos
  • TEST PAPERS

    ALLEN|Exercise Part-1 Physics|15 Videos
  • TEST PAPER 4

    ALLEN|Exercise PHYSICS|45 Videos
  • UNIT & DIMENSIONS, BASIC MATHS AND VECTOR

    ALLEN|Exercise Exercise (J-A)|7 Videos

Similar Questions

Explore conceptually related problems

Potential on the axis of ring of radius 3R and at distance 4R from centre of ring is (charge on the ring is Q )

The linear charge density on a ring of radius R is lambda=lambda_0 sin (theta) where lambda_0 is a constant and theta is angle of radius vector of any point on the ring with x-axis. The electric potential at centre of ring is

A semicircular wire is uniformly charged with linear charge density dependent on the angle theta from y -direction as lambda=lambda_(0) |sin theta| , where lambda_(0) is a constant. The electric field intensity at the centre of the arc is

the linear charge density of a thin metallic rod varies with the distance x from the end as lambda=lambda_(0)x^(2)(0 le x lel) The total charge on the rod is

The linear charge density on a dielectric ring of radius R vanes with theta as lambda = lambda_0 cos theta//2 , where lambda_0 is constant. Find the potential at the center O of the ring [in volt].

The linear charge density of a uniform semicircular wire varies with theta shown in the figure as lambda=lambda_(0)costheta if R is the radius of the loop ,of the charge on the wire is

A thin non-conducting ring of radius R has a linear charge density lambda=lambda_(0) cos theta , where theta is measured as shown. The total electric dipole moment of the charge distribution is

Two thin wire rings each having a radius R are placed at a distance d apart with their axes coiciding. The charges on the two rings are +q and -q . The potential difference between the centres of the two rings is

A fixed ring of radius R is given a charge q. A charge q_0 is brought slowly from infinity to the centre of the ring. The wrong statement is-

For the hemisphere of radius R shown in the figure the surface charge density sigma varies with theta (shown in figure) as sigma=sigma_(0) costheta the total charge on the sphere is

ALLEN-TEST PAPERS-part-2 physics
  1. In front of an earthed conductor a point charge +q is placed a shown i...

    Text Solution

    |

  2. Particles A and B are moving with constant velocities along x and y ax...

    Text Solution

    |

  3. The given two fixed rings of radius R lie in XY plane as shown in the ...

    Text Solution

    |

  4. An asteroid orbiting around a planet in circular orbit suddenly explod...

    Text Solution

    |

  5. Two non-conducting hemispherical surface, which are having uniform cha...

    Text Solution

    |

  6. Two Earth's satellites move in a common plane along circular obrits. T...

    Text Solution

    |

  7. A block is released on the slant face of a wedge of equal mass placed ...

    Text Solution

    |

  8. A block is released on the slant face of a wedge of equal mass placed ...

    Text Solution

    |

  9. A block is released on the slant face of a wedge of equal mass placed ...

    Text Solution

    |

  10. Consider a non conduting ring of radius r and mass m and a particle of...

    Text Solution

    |

  11. Consider a non conduting ring of radius r and mass m and a particle of...

    Text Solution

    |

  12. Consider a non conduting ring of radius r and mass m and a particle of...

    Text Solution

    |

  13. A commander fires a shell at certain angle of projection from A which...

    Text Solution

    |

  14. A trinary star system which is a system of three orbiting around centr...

    Text Solution

    |

  15. A planet is made of two materials of density p(1) and p(2) as shown in...

    Text Solution

    |

  16. Two identical small elastic conducting balls of mass m and radius r ha...

    Text Solution

    |

  17. A long thin pliable carpet is laid on the floor. One end of the carpet...

    Text Solution

    |

  18. A regular tetrahedron frame is made up of homogeneous resitance wire o...

    Text Solution

    |

  19. A long straight wire of negligible resistance is bent into V shape, it...

    Text Solution

    |

  20. A solid cube is floating (completely submerged) in a container filled ...

    Text Solution

    |