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A positive charge is fixed at the origin...

A positive charge is fixed at the origin of coordinates. An electri dipole which is free to move and rotate is placed on the positive `x`-axis. Its moment is directed away from the origin. The dipole will

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A positive charge q is fixed at the origin. An electric dipole withe dipole moment vecP is placed ,.iong th ex-axis faraway from the origin with vecP pointing along thepositivex-axis and it is set free to move. The kinetic energy .when it reaches a distance x from the origin is Kand the magnitude of the force experienced by charge q at this moment is F. Then :

A charge +Q is fixed at the origin of the co-ordinate system while a small electric dipole of dipolement vecp pointing away from the charge along the x-axis is set free from a point far away from the origin. (a) Calculate the K.E. of the dipole when it reaches to a point (d, 0). (b) Calculate the force on the charge +Q at this moment.

A charge +Q is fixed at the origin of the co-ordinate system while a small electric dipole of dipolement vecp pointing away from the charge along the x-axis is set free from a point far away from the origin. (a) Calculate the K.E. of the dipole when it reaches to a point (d, 0). (b) Calculate the force on the charge +Q at this moment.

A charge +Q is fixed at the origin of the co-ordinate system while a small electric dipole of dipolement vecp pointing away from the charge along the x-axis is set free from a point far away from the origin. (a) Calculate the K.E. of the dipole when it reaches to a point (d, 0). (b) Calculate the force on the charge +Q at this moment.

An electric dipole is placed at origin in the xy plane with its orientation along the positive x-axis. The direction is electric field .

An electric dipole is placed at origin in the xy plane with its orientation along the positive x-axis. The direction is electric field .

A positive point charge q is fixed at origin. A dipole with a dipole momen vec(p) is placed along the x-axis for away from the orgin with vec(p) poiniting along positive x-axis . (i) If the kinetic energy of the diople when it reachers a distance d from the origin is ( qp)/( 4 pi epsi_(0) d^(n)) , then n is . (ii) If the force experienced by the charge q at this moment is (4qp)/(pi epsi_(0) d^(3)), hat(i) then x is.

A positive point charge q is fixed at origin. A dipole with a dipole momen vec(p) is placed along the x-axis for away from the orgin with vec(p) poiniting along positive x-axis . (i) If the kinetic energy of the diople when it reachers a distance d from the origin is ( qp)/( 4 pi epsi_(0) d^(n)) , then n is . (ii) If the force experienced by the charge q at this moment is (4qp)/(pi epsi_(0) d^(3)), hat(i) then x is.

An electric dipole is placed along x -axis with its centre at origin:

An electric dipole is placed along x -axis with its centre at origin: