Force magnétomotriceLa force magnétomotrice (FMM) ou magnétomotricité (Unité SI : ampère) est une force physique motrice qui génère un flux magnétique. Dans ce contexte, l'expression « force motrice » est utilisée dans le sens général de « potentiel de travail », et est semblable, mais distincte de la force mesurée en newtons. La force magnétomotrice tire son nom de son rôle dans les circuits magnétiques analogue à celui de la force électromotrice dans les circuits électriques.
Rotor (électrotechnique)vignette|Rotor au centre relié à l'axe tournant, stator fixe externe. Le rotor en électrotechnique est la partie mobile, par rapport au stator, des machines électriques tournantes : machine à courant continu, machine synchrone, machine asynchrone Le rotor peut être un aimant qui lors de sa rotation induit un champ électrique dans les enroulements du stator du générateur/alternateur. Dans un moteur électrique, le courant passant dans les enroulements du rotor provoque un champ magnétique qui réagit avec celui permanent du stator pour faire tourner l'axe central.
Retarded timeIn electromagnetism, electromagnetic waves in vacuum travel at the speed of light c, according to Maxwell's Equations. The retarded time is the time when the field began to propagate from the point where it was emitted to an observer. The term "retarded" is used in this context (and the literature) in the sense of propagation delays. The calculation of the retarded time tr or t′ is nothing more than a simple "speed-distance-time" calculation for EM fields.
Demagnetizing fieldThe demagnetizing field, also called the stray field (outside the magnet), is the magnetic field (H-field) generated by the magnetization in a magnet. The total magnetic field in a region containing magnets is the sum of the demagnetizing fields of the magnets and the magnetic field due to any free currents or displacement currents. The term demagnetizing field reflects its tendency to act on the magnetization so as to reduce the total magnetic moment.
Electromagnetic stress–energy tensorIn relativistic physics, the electromagnetic stress–energy tensor is the contribution to the stress–energy tensor due to the electromagnetic field. The stress–energy tensor describes the flow of energy and momentum in spacetime. The electromagnetic stress–energy tensor contains the negative of the classical Maxwell stress tensor that governs the electromagnetic interactions. In free space and flat space–time, the electromagnetic stress–energy tensor in SI units is where is the electromagnetic tensor and where is the Minkowski metric tensor of metric signature (− + + +).
A History of the Theories of Aether and ElectricityA History of the Theories of Aether and Electricity is any of three books written by British mathematician Sir Edmund Taylor Whittaker FRS FRSE on the history of electromagnetic theory, covering the development of classical electromagnetism, optics, and aether theories. The book's first edition, subtitled from the Age of Descartes to the Close of the Nineteenth Century, was published in 1910 by Longmans, Green. The book covers the history of aether theories and the development of electromagnetic theory up to the 20th century.