Best answer: Is electric potential at equatorial line of a dipole is zero give your answer with proof?

Actually the potential due to one charge of the dipole is just equal and opposite to that of due to other charge on any point on the equatorial line,therefore the potential of a dipole vanishes on any point on the equatorial line.

What is the electric potential at point on the equatorial line of an electric dipole?

Electric potential at any point in the equatorial plane of dipole is zero.

How we can explain potential at any point on the equatorial line of dipole is zero find the minimum and maximum value of magnitude of the potential of a dipole?

The potential at a point due to an electric dipole will be maximum and minimum when the angles between the axis of the dipole and the line joining the point to the dipole are respectively. V=pcosθr2. If θ=0∘ then Va=max. If θ=180∘ then Ve=min.

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When the electric potential due to a dipole is zero?

What is the electric potential due to an electric dipole at an equatorial point? Zero, as potential on equatorial point, due to charges of electric dipole, are equal in magnitude but opposite in nature and hence their resultant is zero.

Why the electric potential at a point on equatorial line of an electric dipole is zero?

Actually the potential due to one charge of the dipole is just equal and opposite to that of due to other charge on any point on the equatorial line,therefore the potential of a dipole vanishes on any point on the equatorial line. the above is due to symmetry of the charges of dipole and their opposite character.

When the point P lies on the equatorial line of the dipole 90 and COS 0 then VP?

Answer: If the point P lies on the equatorial line of the dipole, then θ = 90°. Hence, V = 0.

Is electric potential on dipole axis maximum?

The electric potential will be maximum at the dipole axis. … The electric potential will be zero at the perpendicular axis of the dipole.

What is electric dipole explain its axial line and equatorial line?

Axial line is the line joining the centres of positive and negative charges forming an electric dipole. … Consider an electric dipole consisting of +q and -q charges separated by a distance 2l.

When a charge moves on equatorial line of an isolated electric dipole the work done is zero?

Assertion : No work is done in moving a charge along equatorial line. Reason : The electric potential is everywhere zero on the equatorial line of a dipole.

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