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Electricity and Magnetism
Electricity and Magnetism

Electricity & Magnetism
Electricity & Magnetism

... atoms…they can be moved.  A concentration of electrons in an atom creates a net negative charge.  If electrons are stripped away, the atom becomes positively charged. ...
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... Calculation of integrals to obtain values of electric field, electric potential, and magnetic field caused by continuous distributions of electric charge and current configurations (includes the Law of Biot and Savart for magnetic fields). Maxwell's equations - Maxwell's contribution and significanc ...
Electricity and Magnetism
Electricity and Magnetism

...  HS-PS3-5: Develop and use a model of two objects interacting through electric or magnetic fields to illustrate the forces between objects and the changes in energy of the objects due to the interaction. ...
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7TH CLASSES PHYSICS DAILY PLAN

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Chapter 21 Electromagnetic Induction and Faraday`s Law

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Chapter 29:Electromagnetic Induction and Faraday*s Law

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Title of PAPER - Department of Physics and Astronomy

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the emf induced in a moving conductor

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Steady electric currents. Magnetism. Generation of heat. Biot

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Pearson Prentice Hall Physical Science: Concepts in Action

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the mechanical universe - Binghamton City School District

yuval9
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θ B 21.2 Faraday’s Law of Induction and Lenz’s Law

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course outline - Modesto Junior College

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Eddy current

Eddy currents (also called Foucault currents) are circular electric currents induced within conductors by a changing magnetic field in the conductor, due to Faraday's law of induction. Eddy currents flow in closed loops within conductors, in planes perpendicular to the magnetic field. They can be induced within nearby stationary conductors by a time-varying magnetic field created by an AC electromagnet or transformer, for example, or by relative motion between a magnet and a nearby conductor. The magnitude of the current in a given loop is proportional to the strength of the magnetic field, the area of the loop, and the rate of change of flux, and inversely proportional to the resistivity of the material.By Lenz's law, an eddy current creates a magnetic field that opposes the magnetic field that created it, and thus eddy currents react back on the source of the magnetic field. For example, a nearby conductive surface will exert a drag force on a moving magnet that opposes its motion, due to eddy currents induced in the surface by the moving magnetic field. This effect is employed in eddy current brakes which are used to stop rotating power tools quickly when they are turned off. The current flowing through the resistance of the conductor also dissipates energy as heat in the material. Thus eddy currents are a source of energy loss in alternating current (AC) inductors, transformers, electric motors and generators, and other AC machinery, requiring special construction such as laminated magnetic cores to minimize them. Eddy currents are also used to heat objects in induction heating furnaces and equipment, and to detect cracks and flaws in metal parts using eddy-current testing instruments.
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