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Energy conservation laws in classical electrodynamics
Valery P. Dmitriyev
There are three electromagnetic integrals of motion that can be interpreted as the energy. These are the background energy, the elastic energy and the integral in the torsion field…
Logic and thermodynamics: the heat-engine axiomatics of the second law
Valery P. Dmitriyev
We challenge the statement that the principle of Thomson and the principle of Clausius are equivalent. A logical mistake in the supposed textbook proof of their equivalency is indi…
Gravitation and electromagnetism
V. P. Dmitriyev
Maxwell's equations comprise both electromagnetic and gravitational fields. The transverse part of the vector potential belongs to magnetism, the longitudinal one is concerned with…
Mechanical scenario for the reaction: neutron --> proton + electron + antineutrino
V. P. Dmitriyev
Small perturbations of averaged ideal turbulence reproduce the electromagnetic field. The luminiferous medium has the relatively low pressure and high energy. A vapor bubble in the…
Elasticity and electromagnetism. Part 1: The Coulomb gauge
V. P. Dmitriyev
The Maxwell's electromagnetic equations are isomorphic to the motion equation of a linear elastic continuum which is hard to compression though liable to shear deformation. The Cou…
Mechanical models of physical fields and particles
Valery P. Dmitriyev
Earlier obtained results on mechanical analogies of physical fields and particles are reviewed. The approach rests on the concept of the substratum - a mechanical medium, which occ…