24.3
The electric potential energy of a test charge in a uniform electric field can be generalized for any electric field caused by static charge distribution.
Consider a static charge at point O and a test charge at point B. If the test charge displaces away from the static charge, then the work done by the electric field on the test charge is the integral of the dot product of force and displacement. Here the force is repulsive, resulting in positive work.
This work can be expressed as the negative difference of electric potential energy possessed by the test charge at the final and initial positions. Since the work done is positive, the system's potential energy decreases.
The electric potential energy is defined as zero at infinity. It is always positive for charges of the same polarity; for opposite charges, the potential energy is always negative.
Suppose the test charge is in an electric field caused by several point charges. The electric potential energy is an algebraic sum of electric potential energies due to all static charges.
The electric potential energy of a test charge in a uniform eclectic field can be generalized to any electric field produced by static charge distribu…
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