Particle "Charge Inertia" in a Magnetic Field: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = Particle | | title = Particle "Charge Inertia" in a Magnetic Field | ||
| author = [[Jia-Qiang Cheng]] | | author = [[Jia-Qiang Cheng]] | ||
| keywords = magnetic field, particle, inertia, Charge, Lorentz force | |||
| published = 2006 | | published = 2006 | ||
| journal = [[Galilean Electrodynamics]] | | journal = [[Galilean Electrodynamics]] | ||
| volume = | | volume = 17 | ||
| number = | | number = 6 | ||
| pages = 118-120 | | pages = 118-120 | ||
}} | }} | ||
| Line 11: | Line 12: | ||
==Abstract== | ==Abstract== | ||
This paper presents a new concept called | This paper presents a new concept called "charge-inertia" and demonstrates its utility in re-explaining electromagnetic phenomena mechanically. The acceleration of a free, charged particle in a magnetic field can be re-explained as an inertia effect, whether the field is time-varying or not, and whether the particle has a relativistic speed or not. The new explanation denies the Lorentz force, the electromagnetic induction, and the relativistic mass, achieving a partial unification of classical mechanics with electrodynamics. | ||
[[Category:Scientific Paper|particle charge inertia magnetic field]] | [[Category:Scientific Paper|particle charge inertia magnetic field]] | ||
[[Category:Relativity|particle charge inertia magnetic field]] | [[Category:Relativity|particle charge inertia magnetic field]] | ||
Latest revision as of 09:38, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | Particle "Charge Inertia" in a Magnetic Field |
| Author(s) | Jia-Qiang Cheng |
| Keywords | magnetic field, particle, inertia, Charge, Lorentz force |
| Published | 2006 |
| Journal | Galilean Electrodynamics |
| Volume | 17 |
| Number | 6 |
| Pages | 118-120 |
Abstract
This paper presents a new concept called "charge-inertia" and demonstrates its utility in re-explaining electromagnetic phenomena mechanically. The acceleration of a free, charged particle in a magnetic field can be re-explained as an inertia effect, whether the field is time-varying or not, and whether the particle has a relativistic speed or not. The new explanation denies the Lorentz force, the electromagnetic induction, and the relativistic mass, achieving a partial unification of classical mechanics with electrodynamics.