File:Lorentz force.svg

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Lorentz_force.svg(SVG file, nominally 650 × 524 pixels, file size: 11 KB)

Lorentz force. Meine rechte Hand, die die Rechte-Hand-Regel erklärt. Denkt euch Vektorpfeile über a,b,c / x,y,z (der Gimp ist zu unfähig für TeX-Formatierung). l,B,F stehen für die Formel

\vec F=i(\vec l \times \vec B),

die Kraft F, die auf einen stromdurchflossenen Leiter l ausgeübt wird, wenn auf ihn ein B-Feld einwirkt - ein klassischer Fall der Rechte-Hand-Regel.

--Jaro.p 23:48, 16 Apr 2005 (UTC)

English description: This diagram illustrates the behavior of a charged particle q moving with velocity v in a magnetic field B. The latter is oriented out of the page, as indicated by the dot in the circle. The particle is accelerated by the Lorentz force, with its behavior determined by the formula:

F = qE + \frac{q}{c}\left[ v \times B \right]

where F is the force vector, E is the electrical field, and c is the speed of light. The × symbol represents the mathematical curl operator. The direction of the electron's curved path is determined by the sign of its charge, which modifies the sign of the v × B in the formula above.


GNU head Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation License, Version 1.2 or any later version published by the Free Software Foundation; with no Invariant Sections, no Front-Cover Texts, and no Back-Cover Texts. A copy of the license is included in the section entitled GNU Free Documentation License.

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[edit] References

  • Wiedemann, Helmut (14 April 1999(1999-04-14)). Particle Accelerator Physics: Basic Principles and Linear Beam Dynamics (2nd edition ed.). Springer. ISBN 354064671X .

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Date/TimeThumbnailDimensionsUserComment
current08:59, 20 June 2006Thumbnail for version as of 08:59, 20 June 2006650 × 524 (11 KB)Jaro.pLorentz force. Meine rechte Hand, die die Rechte-Hand-Regel erklärt. Denkt euch Vektorpfeile über a,b,c / x,y,z (der Gimp ist zu unfähig für TeX-Formatierung). l,B,F stehen für die Formel <math>\vec F=i(\vec l \times \vec B)</math>, die Kraft F, d
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