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Four Expressions for Electromagnetic Field Momentum
Four Expressions for Electromagnetic Field Momentum

... of [3]. That Faraday associated with some kind of momentum with this state is hinted in sec. 1077 of [4]. The second form is due to J.J. Thomson, who speculated as to electromagnetic mass/momentum (1881) [5], and continued with a concept of momentum stored in the electromagnetic field (1891) [6, 7], ...
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Simulation Study of Aspects of the Classical Hydrogen Atom

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Class- IX- Science - Kendriya Vidyalaya No.1 Ichhanath Surat

... Q.1 Classify the following substances into true solutions and colloidal solutions. Milk , ink , starch dissolved in water. Q.2 A solution has been prepared by dissolving 5g of urea in 95 g of water. What is the mass percent of urea in the solution? Q.3 Give an example of an aqueous solution in which ...
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Glashow-Weinberg-Salam Model: An Example of Electroweak

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... 2. Instead of an infinity of orbits, only those orbits whose angular momentum L is an integral multiple of h/2-rr are allowed. 3. Electrons radiate energy only when moving from one allowed orbit to another. The energy E — hv of the emitted radiation is the difference between characteristic energies ...
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... Conservation of Momentum in 1-D Whenever two objects collide (or when they exert forces on each other without colliding, such as gravity) momentum of the system (both objects together) is conserved. This mean the total momentum of the objects is the same before and after the collision. (Choosing ri ...
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geometrization of electromagnetism in tetrad-spin
geometrization of electromagnetism in tetrad-spin

... In general relativity, the electromagnetic field and its sources are considered to be on the side of the matter tensor in the field equations, i.e. they act as sources of the gravitational field. In unified field theory, the electromagnetic field obtains the same geometric status as the gravitationa ...
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the problem book

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Resource Letter EM-1: Electromagnetic Momentum
Resource Letter EM-1: Electromagnetic Momentum

< 1 ... 12 13 14 15 16 17 18 19 20 ... 86 >

Electromagnetic mass

Electromagnetic mass was initially a concept of classical mechanics, denoting as to how much the electromagnetic field, or the self-energy, is contributing to the mass of charged particles. It was first derived by J. J. Thomson in 1881 and was for some time also considered as a dynamical explanation of inertial mass per se. Today, the relation of mass, momentum, velocity and all forms of energy, including electromagnetic energy, is analyzed on the basis of Albert Einstein's special relativity and mass–energy equivalence. As to the cause of mass of elementary particles, the Higgs mechanism in the framework of the relativistic Standard Model is currently used. In addition, some problems concerning the electromagnetic mass and self-energy of charged particles are still studied.
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