Electric flux
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In electromagnetism, electric flux is the total electric field that crosses a given surface.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The electric flux through a closed surface is directly proportional to the total charge contained within that surface.
The electric field E can exert a force on an electric charge at any point in space. The electric field is the gradient of the electric potential.
Overview
An electric charge, such as a single electron in space, has an electric field surrounding it. In pictorial form, this electric field is shown as "lines of flux" being radiated from a dot (the charge). These are called Gauss lines.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Note that field lines are a graphic illustration of field strength and direction and have no physical meaning as isolated lines. The density of these lines corresponds to the electric field strength, which could also be called the electric flux density: the number of "lines" per unit area. Electric flux is directly proportional to the total number of electric field lines going through a surface. For simplicity in calculations it is often convenient to consider a surface perpendicular to the flux lines. If the electric field is uniform, the electric flux passing through a surface of vector area AScript error: No such module "Check for unknown parameters". is where EScript error: No such module "Check for unknown parameters". is the electric field (having the unit V/mScript error: No such module "Check for unknown parameters".), EScript error: No such module "Check for unknown parameters". is its magnitude, AScript error: No such module "Check for unknown parameters". is the area of the surface, and θScript error: No such module "Check for unknown parameters". is the angle between the electric field lines and the normal (perpendicular) to AScript error: No such module "Check for unknown parameters"..
For a non-uniform electric field, the electric flux dΦEScript error: No such module "Check for unknown parameters". through a small surface area dAScript error: No such module "Check for unknown parameters". is given by (the electric field, EScript error: No such module "Check for unknown parameters"., multiplied by the component of area perpendicular to the field). The electric flux over a surface is therefore given by the surface integral: where EScript error: No such module "Check for unknown parameters". is the electric field and dAScript error: No such module "Check for unknown parameters". is an infinitesimal area on the surface with an outward facing surface normal defining its direction.
For a closed Gaussian surface, electric flux is given by: Template:Block indent where
- EScript error: No such module "Check for unknown parameters". is the electric field,
- dAScript error: No such module "Check for unknown parameters". is an infinitesimal area on the closed surface,
- QScript error: No such module "Check for unknown parameters". is the total electric charge inside the surface,
- ε0Script error: No such module "Check for unknown parameters". is the electric constant (a universal constant, also called the permittivity of free space) (ε0 ≈ Script error: No such module "val".Script error: No such module "Check for unknown parameters".)
This relation is known as Gauss's law for electric fields in its integral form and it is one of Maxwell's equations.
While the electric flux is not affected by charges that are not within the closed surface, the net electric field, EScript error: No such module "Check for unknown parameters". can be affected by charges that lie outside the closed surface. While Gauss's law holds for all situations, it is most useful for "by hand" calculations when high degrees of symmetry exist in the electric field. Examples include spherical and cylindrical symmetry.
The SI unit of electric flux is the volt-meter (V·mScript error: No such module "Check for unknown parameters".), or, equivalently, newton-meter squared per coulomb (N·m2·C−1Script error: No such module "Check for unknown parameters".). Thus, the unit of electric flux expressed in terms of SI base units is kg·m3·s−3·A−1Script error: No such module "Check for unknown parameters".. Its dimensional formula is Script error: No such module "Gaps"..
See also
Citations
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References
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