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modello di descrizione delle singole attivita`formative
modello di descrizione delle singole attivita`formative

... conductors; electric potential and potential energy; capacitors; energy density of the electric field; D field. Electric current: electromotive force; Ohm, Joule, Kirchhoff’s laws. Magnetism: magnets and magnetic dipoles; Lorenz force; Ampère’s equivalence principle; 1st and 2nd Laplace formula; Amp ...
Syllabus - NMT Electrical Engineering
Syllabus - NMT Electrical Engineering

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Electromagnetism

Fundamental nuclear symmetries meet classical electrodynamic
Fundamental nuclear symmetries meet classical electrodynamic

... • extends to quantum field theories • field is everywhere always E (x, t) • differentiable, integrable • field lines, equipotentials • PDE – boundary value problems • solution to physical problems ...
Homework on FTC [pdf]
Homework on FTC [pdf]

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Maxwell`s equations
Maxwell`s equations

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The Galilean Transformations E or B?
The Galilean Transformations E or B?

Electromagnetic Waves come in many varieties, including radio
Electromagnetic Waves come in many varieties, including radio

... visible and ultraviolet light; X-rays, gamma rays etc. About 1860, James Clerk Maxwell brought together all the known laws of electricity and magnetism: ...
1. Course Name : Electromagnetism
1. Course Name : Electromagnetism

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PHY2105

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DOC - Makerere University

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ELECTROMAGNETISM - Makerere University Courses

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Maxwell`s equations

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Lecture 7 Extra

... In the equations describing electric and magnetic fields and their propagation, three constants are normally used: • the speed of light c • The electric permittivity of free space ε0 • the magnetic permeability of free space, μ0, taken to have the exact value Contains the force unit N for Newton and ...
Electromagnetic fields
Electromagnetic fields

< 1 ... 110 111 112 113 114

Mathematical descriptions of the electromagnetic field

There are various mathematical descriptions of the electromagnetic field that are used in the study of electromagnetism, one of the four fundamental forces of nature. In this article three approaches are discussed, generally the equations are in terms of electric and magnetic fields, potentials, and charges with currents.
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