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  2. Work (electric field) - Wikipedia

    en.wikipedia.org/wiki/Work_(electric_field)

    The work can be done, for example, by generators, (electrochemical cells) or thermocouples generating an electromotive force. Electric field work is formally equivalent to work by other force fields in physics, [1] and the formalism for electrical work is identical to that of mechanical work.

  3. Electric potential energy - Wikipedia

    en.wikipedia.org/wiki/Electric_potential_energy

    The electrostatic potential energy, U E, of one point charge q at position r in the presence of an electric field E is defined as the negative of the work W done by the electrostatic force to bring it from the reference position r ref [note 1] to that position r.

  4. Electrostatics - Wikipedia

    en.wikipedia.org/wiki/Electrostatics

    Electrostatics is a branch of physics that studies slow-moving or stationary electric charges. Since classical times , it has been known that some materials, such as amber , attract lightweight particles after rubbing .

  5. Work (physics) - Wikipedia

    en.wikipedia.org/wiki/Work_(physics)

    The work done is given by the dot product of the two vectors, where the result is a scalar. When the force F is constant and the angle θ between the force and the displacement s is also constant, then the work done is given by: = ⁡ If the force is variable, then work is given by the line integral:

  6. Conservative force - Wikipedia

    en.wikipedia.org/wiki/Conservative_force

    In these cases, the above three conditions are not mathematically equivalent. For example, the magnetic force satisfies condition 2 (since the work done by a magnetic field on a charged particle is always zero), but does not satisfy condition 3, and condition 1 is not even defined (the force is not a vector field, so one cannot evaluate its curl).

  7. Electric potential - Wikipedia

    en.wikipedia.org/wiki/Electric_potential

    In classical electrostatics, the electrostatic field is a vector quantity expressed as the gradient of the electrostatic potential, which is a scalar quantity denoted by V or occasionally φ, [1] equal to the electric potential energy of any charged particle at any location (measured in joules) divided by the charge of that particle (measured ...

  8. Work function - Wikipedia

    en.wikipedia.org/wiki/Work_function

    The work function W for a given surface is defined by the difference [1] =, where −e is the charge of an electron, ϕ is the electrostatic potential in the vacuum nearby the surface, and E F is the Fermi level (electrochemical potential of electrons) inside the material.

  9. Electrostatic induction - Wikipedia

    en.wikipedia.org/wiki/Electrostatic_induction

    Work will have to be done on the charge by a force to make it move to against the opposing force of the electric field. Thus the electrostatic potential energy of the charge will increase. So the potential at point is higher than at point .