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The Electric Flux

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Electromagnetism is one of the four fundamental forces of nature

... electric charges which, following Ben Franklin, we call positive and negative. These exert electric forces on each other. Experimenting with static electricity (caused by charges at rest) we find: like charges repel (+ repels +, - repels -) and unlike charges attract (+ attracts -). Today we recogni ...
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... Use these to find the force on a point dipole due to a point charge. (b) The electric field of a point dipole d at distance r from the dipole is given by Eq. (1). The force on a point charge in the presence of an electric field is F = qE. ...
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Test Charge - physics1516

...  Q is the charge of the particle FEELING the field  Ex: A positive charge of 1x10-5 C experiences a force of 0.2 N when located at a certain point in an electric field created by a point charge of 3.4x10-3C. What is the electric field strength at that point? ...
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Physics 121 Practice Problem Solutions 03 Electric Field Contents:

... PROBLEM 121P03 - 8P*: In the figure, two fixed point charges q1 = +1.0 x 10-6 C and q2 = +3.0 x 10-6 C are separated by a distance d = 10 cm. Plot their net electric field E(x) as a function of x for both positive and negative values of x, taking E to be positive when the vector E points to the rig ...
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Electrostatics



Electrostatics is a branch of physics that deals with the phenomena and properties of stationary or slow-moving electric charges with no acceleration.Since classical physics, it has been known that some materials such as amber attract lightweight particles after rubbing. The Greek word for amber, ήλεκτρον electron, was the source of the word 'electricity'. Electrostatic phenomena arise from the forces that electric charges exert on each other. Such forces are described by Coulomb's law.Even though electrostatically induced forces seem to be rather weak, the electrostatic force between e.g. an electron and a proton, that together make up a hydrogen atom, is about 36 orders of magnitude stronger than the gravitational force acting between them.There are many examples of electrostatic phenomena, from those as simple as the attraction of the plastic wrap to your hand after you remove it from a package, and the attraction of paper to a charged scale, to the apparently spontaneous explosion of grain silos, the damage of electronic components during manufacturing, and the operation of photocopiers. Electrostatics involves the buildup of charge on the surface of objects due to contact with other surfaces. Although charge exchange happens whenever any two surfaces contact and separate, the effects of charge exchange are usually only noticed when at least one of the surfaces has a high resistance to electrical flow. This is because the charges that transfer to or from the highly resistive surface are more or less trapped there for a long enough time for their effects to be observed. These charges then remain on the object until they either bleed off to ground or are quickly neutralized by a discharge: e.g., the familiar phenomenon of a static 'shock' is caused by the neutralization of charge built up in the body from contact with insulated surfaces.
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