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Applied Physics and Mathematics Annotation << Back
CLASSIC CONVERSION OF ELECTROMAGNETIC FIELDS AND THEIR CONSEQUENCES |
F.F. MENDE
The laws of classical electrodynamics they refl ect experimental
facts they are phenomenological. Unfortunately, contemporary
classical electrodynamics is not deprived of the contradictions,
which did not up to now obtain their explanation.
The fundamental equations of contemporary classical
electrodynamics are Maksvell’s equations. But not all know that
those equations, which it is customary to assume as Maxwell’s
equations, not are those equations, which used itself Maxwell.
During writing of its equations it used the substantional
derivative, that are made themselves they invariant with
respect to the conversions of Galileo. Subsequently Hertz
and Heaviside excluded from the substantional derivative its
convective part, after writing down Maxwell’s equations in the
partial derivatives. In this form the equations are invariant to
the conversions of Lorenz and this approach laid way to the
creation of the special theory of relativity. In the article are
examined the conversions of electromagnetic pour on upon
transfer of one inertial system to another, obtained on the basis of the equations of electromagnetic and magnetoelectric induction with the use by the substantional derivative and they are examined the consequences, which escape from such
conversions.
Keywords: Maxwell’s equations, Lorenz’s conversions, substantional derivative, electromagnetic induction, magnetoelectric
induction.
Contacts: E-mail: mende_fedor@mail.ru
Pp. 59-71. |
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