24.10
For a system of charged particles, the integral of the dot product of the electric field with the displacement of a test charge gives the difference in potential between the initial and final positions.
This change in potential will be infinitesimally small for an infinitesimally smaller displacement of a test charge.
Simplifying and expressing the above equation in component form gives the electric field as a partial derivative of the change in potential along a particular axis.
In vector notation, the electric field is expressed as a gradient of the electric potential. Here, the operator is called a del operator.
At each point in space, del operators give the electric field pointing in the direction along which the steepest decrease in the potential is present.
For a system with spherical or cylindrical symmetry, an appropriate del operator can be used.
For example, the electric potential of a positive point charge has spherical symmetry, and the corresponding electric field can be calculated using a del operator in spherical symmetry.
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