Phenomenon of Kinetic Energy and Inertia of Material Bodies
charge, inertia, kinetic energy, scalar-vector potential
Abstract
It is well known that for accelerating the material bodies it is necessary to spend energy, in this case the executed work passes into the kinetic energy. With the braking the body returns this energy to the surrounding bodies, for which required the forces, the reverse facts, which accelerated body. This is the phenomenon of the inertia. However, nature of this phenomenon was up to now not clear. In the article it is shown that the inertia and kinetic energy of material bodies are the consequence of the dependence of the scalar potential of charge on the speed. Are obtained the conversions pour on, which reflect this law.
Downloads
How to Cite
References
F Mende (1988) Abstracts of articles deposited at VINITI. 20(5), 554-556.
Anton Taran, Igor Garkusha, Alexander Timoshenko, Valerij Taran, Ivan Misiruk, Tamara Skoblo, Svetlana Romaniuk, Taras Maltsev, Vadym Starikov, Alexey Baturin, Yurij Gnidenko (2003) Characterization of Titanium Dioxide Coatings Obtained by Vacuum-arc Deposition. 2(1).
F Mende On refinement of certain laws of classical electrodynamics.
F Mende Conception of the scalar-vector potential in contemporary electrodynamics.
F Mende (2010) Preface. xix-xx.
F Mende (2014) Consideration and the Refinement of Some Laws and Concepts of Classical Electrodynamics and New Ideas in Modern Electrodynamics. 2(6), 231-263.
Richard Feynman, Robert Leighton, Matthew Sands, S Treiman (1977) The Feynman Lectures on Physics. 17(8), 45-46.
Published
2018-10-01
Issue
Section
License
Copyright (c) 2018 Authors and Global Journals Private Limited

This work is licensed under a Creative Commons Attribution 4.0 International License.