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Volume 6
Research & Reviews: Journal of Material Sciences
ISSN: 2321-6212
Magnetic Materials 2018
October 22-23, 2018
October 22-23, 2018 | Rome, Italy
3
rd
International Conference on
Magnetism and Magnetic Materials
Res. Rev. J Mat. Sci. 2018, Volume 6
DOI: 10.4172/2321-6212-C6-030
Modeling of the superconductivity by using accelerating longitudinal vortices
Valentina Markova
Institute of Mathematics and Informatics, Bulgarian Academy of Sciences, Bulgaria
T
he report describes special kind of electromagnetic waves as accelerating longitudinal vortices. They pass through the
dielectric by polarizing it and forming dipoles. But they have an extra quality that they can insert each into other. They
can be nested one in the other and can form a tube. Each of them sucks in transverse direction free cross vortices as the form
of dipoles too. Because the accelerating longitudinal vortices suck in from the environment free cross vortices they add some
mass and energy to the tube. They also suck in the additional cross vortices from the nearest outside adjacent cylinders to
the inner cylinders of the tube and accelerate themselves further in time. In this way, longitudinal vortices forming the tube
are accelerating not only at a time and in a direction (from the periphery to the center). So the tube turns to a funnel. Due
to the fact that accelerating longitudinal vortices suck in free cross vortices from outside to the center, the magnetic field is
inserted into the electric field and the energy losses are minimal at normal room temperature. In this way, an object with
superconductivity at room temperature is modeled by an electromagnetic field. The theoretical basis of the proposed tube of
accelerating longitudinal vortices is described in previous articles. It consists of extending to Maxwell's main axiom (div rot
E=0) to a more universal axiom (div rot E≠0). This means that it replaces even motion (constant velocity) of vector E in a closed
loop with uneven motion (variable velocity) of vector E in open loop or in open vortex.
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