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On the Non-Invariance of the Faraday Law of Induction
The paper confirms a known fact that the Faraday law of induction does not, in general, follow from Maxwell’s equations. It represents a separate and independent physical law, being establishedExpand
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On "hidden momentum" of magnetic dipoles
μπe×=GGG (6) (μG is the magnetic moment). Eq. (4) has been also derived in ref. [4] for a non-relativistic system of mechanically free charged particles, using the Darwin gauge. However, one can seeExpand
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The Faraday Induction Law In Covariant Ether Theories
The non-invariance of the Faraday induction law, revealed in [1] through calculation of an e.m.f. along a mathematical line, was further analyzed for integration over a conducting closed circuitExpand
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On the Relativistic Transformation of Force
in a laboratory frame. We establish an analogy between the total force in such system and e.m.f. in a closed deforming circuit with respect to the force transformation law. It has been concluded thatExpand
Do We Understand the Field Transformations in Classical Electrodynamics
This paper considers a number of physical problems, dealing with transformation of the non-radiating electric and magnetic fields between different inertial frames, and analyses an origin of theseExpand
The Faraday Induction Law and Field Transformations in Special Relativity
The non-invariance of the Faraday induction law, revealed in [1] through calculation of an e.m.f. along a mathematical line, is further analyzed for integration over a conducting closed circuit. TheExpand
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