9702 · 18.1
Electric fields and field lines — FAQ
Frequently asked questions for 9702 Electric fields and field lines. Direct answers first, then deeper explanation — then practise with marking.
How is an electric field different from a magnetic field?
Electric fields are generated by stationary or moving charges and exert forces on other charges. Magnetic fields, however, are generated specifically by moving charges (electric currents) and exert forces on other moving charges or magnetic materials. Both are fundamental forces, but they arise from different aspects of charge interaction.
Can electric field lines ever cross?
No, electric field lines can never cross. If they were to cross, it would imply that at the point of intersection, a positive test charge would experience a force in two different directions simultaneously, which is physically impossible. The field at any point must have a unique direction.
What is the significance of the permittivity of free space ($\epsilon_0$)?
The permittivity of free space () is a fundamental physical constant that quantifies how an electric field affects, and is affected by, a vacuum. Essentially, it represents the resistance to the formation of an electric field in empty space and directly influences the strength of electrostatic interactions between charges.
What is a 'null point' in an electric field?
A null point, or neutral point, is a location where the net electric field strength is zero. This occurs when the electric fields from two or more charges cancel each other out. For example, between two positive charges, there is a point where the repulsive fields from each charge are equal in magnitude and opposite in direction, resulting in a net field of zero.