1991
DOI: 10.4006/1.3028873
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Can a Steady Current Generate an Electric Field?

Abstract: We present the results Jor the electric and ma[?netic fields due to linear ami circular c.urrent di,lnbutions accordin[!, to Weber's theO!}'. We sholl' hoU' the electric field predicted kv Webers {au} is compatible with the anomalous diffusion in plasmas, Finan)" l1Je discu:,:<; ~vme modem experiments related to !hi, tOPic and compare the results of these experimenfs U'ith a predictioll based on Weber's law.

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Cited by 8 publications
(1 citation statement)
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“…Weber's electrodynamics has been shown to explain electromagnetic phenomena, such as longitudinal force inside electric wire [1,2], anomalous diffusion in plasmas [3], deriving gravitation from electromagnetism [4], electric and magnetic fields surrounding current [5,6], the London moment and Meissner effect of superconductivity [7], and electromagnetic induction [8,9], etc. Weber's electrodynamics has a much simpler form for particle-particle interaction than the popularly used Maxwell equations and Lorentz force [10].…”
Section: Introductionmentioning
confidence: 99%
“…Weber's electrodynamics has been shown to explain electromagnetic phenomena, such as longitudinal force inside electric wire [1,2], anomalous diffusion in plasmas [3], deriving gravitation from electromagnetism [4], electric and magnetic fields surrounding current [5,6], the London moment and Meissner effect of superconductivity [7], and electromagnetic induction [8,9], etc. Weber's electrodynamics has a much simpler form for particle-particle interaction than the popularly used Maxwell equations and Lorentz force [10].…”
Section: Introductionmentioning
confidence: 99%