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9702 · 18.4

Electric field of a point charge — FAQ

Frequently asked questions for 9702 Electric field of a point charge. Direct answers first, then deeper explanation — then practise with marking.

What is the difference between electric field strength and electric potential?

Electric field strength (E) is a vector quantity, representing the force per unit charge. Electric potential (V) is a scalar quantity, representing the work done per unit charge (energy per charge). E tells you the force a charge experiences, while V tells you the potential energy a charge would have at that point.

Why does electric field strength follow an inverse square law, but electric potential follows an inverse law?

Electric field strength is derived from Coulomb's Law, which states force is inversely proportional to r2r^2. Since E=F/qE = F/q, E also follows 1/r21/r^2. Electric potential (V) is derived from the work done, which involves integrating the force over distance. This integration reduces the power of rr by one, resulting in V being inversely proportional to rr (V1/rV \propto 1/r).

Can electric potential be negative?

Yes! Electric potential can be negative if the source charge creating the field is negative. A negative potential means that positive work would be done by the field (or negative work against the field) to bring a positive test charge from infinity to that point.

What is the Principle of Superposition?

It states that the net electric field (or potential) at a point due to multiple charges is the sum of the fields (or potentials) from each individual charge. For fields, this is a vector sum, requiring you to consider direction. For potential, it's a simple scalar (algebraic) sum.