Advertisements
Advertisements
Question
(a) Consider an arbitrary electrostatic field configuration. A small test charge is placed at a null point (i.e., where E = 0) of the configuration. Show that the equilibrium of the test charge is necessarily unstable.
(b) Verify this result for the simple configuration of two charges of the same magnitude and sign placed a certain distance apart.
Solution
(a) Let the equilibrium of the test charge be stable. If a test charge is in equilibrium and displaced from its position in any direction, then it experiences a restoring force towards a null point, where the electric field is zero. All the field lines near the null point are directed inwards towards the null point. There is a net inward flux of electric field through a closed surface around the null point. According to Gauss’s law, the flux of electric field through a surface, which is not enclosing any charge, is zero. Hence, the equilibrium of the test charge can be stable.
(b) Two charges of the same magnitude and same sign are placed at a certain distance. The mid-point of the joining line of the charges is the null point. When a test charge is displaced along the line, it experiences a restoring force. If it is displaced normal to the joining line, then the net force takes it away from the null point. Hence, the charge is unstable because the stability of equilibrium requires restoring force in all directions.
APPEARS IN
RELATED QUESTIONS
What is the force of repulsion if each sphere is charged double the above amount, and the distance between them is halved?
Suppose the spheres A and B in Exercise 1.12 have identical sizes. A third sphere of the same size but uncharged is brought in contact with the first, then brought in contact with the second, and finally removed from both. What is the new force of repulsion between A and B?
In charging by Induction, a metallic object is charged ______.
A point charge + q is placed at a distance d from an isolated conducting plane. The field at a point P on the other side of the plane is ______.
Two small balls having the same mass and charge and located on the same vertical at heights h1 and h2 are thrown in the same direction along the horizontal at the same velocity v. The first ball touches the ground at a distance l from the initial vertical. At what height H2 will the second ball be at this instant ? The air drag and the effect of the charges induced on the ground should be neglected.
A positive charge Q is uniformly distributed along a circular ring of radius R. A small test charge q is placed at the centre of the ring (figure). Then
- If q > 0 and is displaced away from the centre in the plane of the ring, it will be pushed back towards the centre.
- If q < 0 and is displaced away from the centre in the plane of the ring, it will never return to the centre and will continue moving till it hits the ring.
- If q < 0, it will perform SHM for small displacement along the axis.
- q at the centre of the ring is in an unstable equilibrium within the plane of the ring for q > 0.