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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/56267
Title: Loretz Force in Vortex Electric Field
Other Titles: Сила Лоренца у вихровому електричному полі
Authors: Чабан, Василь
Tchaban, Vasyl
Affiliation: Lviv Polytechnic National University
Bibliographic description (Ukraine): Tchaban V. Loretz Force in Vortex Electric Field / Vasyl Tchaban // Computational Problems of Electrical Engineering. — Lviv : Lviv Politechnic Publishing House, 2020. — Vol 10. — No 2. — P. 33–36.
Bibliographic description (International): Tchaban V. Loretz Force in Vortex Electric Field / Vasyl Tchaban // Computational Problems of Electrical Engineering. — Lviv : Lviv Politechnic Publishing House, 2020. — Vol 10. — No 2. — P. 33–36.
Is part of: Computational Problems of Electrical Engineering, 2 (10), 2020
Issue: 2
Issue Date: 24-Feb-2020
Publisher: Видавництво Львівської політехніки
Lviv Politechnic Publishing House
Place of the edition/event: Львів
Lviv
Keywords: Lorentz force
moving charges
Eucli–dean space
finite rate of propagation of the electric field
Number of pages: 4
Page range: 33-36
Start page: 33
End page: 36
Abstract: У наш час функції закону взаємодії рухомих наладованих тіл перебрала на себе цілковито теорія відносности, прикриваючись псевдогаслом про неспроможність перетворень Галілея. Усупереч цьому в статті адаптовано силу Лоренца на випадок рухомих ладунків у всеможливому діапазоні швидкостей у звиклих тривимірному Евклідовому просторі і часі. При цьому враховано скінченну швидкість поширення електричного поля і закон збереження електричного ладуну. На цій підставі просимульовано траєкторію вільного руху електрона в нерівномірному електричному полі, зґенерованому позитивно наладованимним сферичним тілом.
In our time, the functions of the law of interaction of moving charged bodies have been taken over entirely by the relativistic theory under the guise of a pseudo-slogan about the inability of Galileo's transformations. In contrast, the article adapts the Lorentz force to the case of moving charges in the all-possible range of velocities in the usual three-dimensional Euclidean space and time. This takes into account the finite rate of propagation of an electric field and the law of conservation of electric charge. On this basis, the trajectory of the free motion of electron in a non-uniform electric field generated by a positively charged spherical body is simulated.
URI: https://ena.lpnu.ua/handle/ntb/56267
Copyright owner: © Національний університет “Львівська політехніка”, 2020
URL for reference material: http://www.decoder.ru/list/
https://en.wikipedia.org.wiki/Lorenz
http://new-idea.kulichki.net/pubfiles/151026192403
References (Ukraine): [1] A. Poincare, On Science (translated from Frans.). Moscow: Science, 1983. (Russian).
[2] S. Karavashkin, “On the curvature of space-time”. Selfie Proceedings, 2017. http://www.decoder.ru/list/ all/topic_312/. (Russian).
[3] https://en.wikipedia.org.wiki/Lorenz Force. (Russian).
[4] G. Ivchenkov, “Force interaction of moving charges with each other and with the fields “Relativistic” Coulomb's law”. http://new-idea.kulichki.net/pubfiles/151026192403. pdf. (Russian).
[5] R. F. Feynman., R. B. Leighton, and M. Sands, The Feinman lectures on Physics. Massachusetts, Palo Alto, London, USA: Addison-Wesley publ. comp., inc. reading, 1964.
[6] K. S. Demirchan, Movable charge in four-dimensional space according to Maxwell and Einstein. Мoscow: Komtekh-Print, 2008. (Russian)
[7] V. Tchaban, Non-standard problems of electricity, mechanics, philosophy. Lviv: Space M, 2019. (Ukrainia
References (International): [1] A. Poincare, On Science (translated from Frans.). Moscow: Science, 1983. (Russian).
[2] S. Karavashkin, "On the curvature of space-time". Selfie Proceedings, 2017. http://www.decoder.ru/list/ all/topic_312/. (Russian).
[3] https://en.wikipedia.org.wiki/Lorenz Force. (Russian).
[4] G. Ivchenkov, "Force interaction of moving charges with each other and with the fields "Relativistic" Coulomb's law". http://new-idea.kulichki.net/pubfiles/151026192403. pdf. (Russian).
[5] R. F. Feynman., R. B. Leighton, and M. Sands, The Feinman lectures on Physics. Massachusetts, Palo Alto, London, USA: Addison-Wesley publ. comp., inc. reading, 1964.
[6] K. S. Demirchan, Movable charge in four-dimensional space according to Maxwell and Einstein. Moscow: Komtekh-Print, 2008. (Russian)
[7] V. Tchaban, Non-standard problems of electricity, mechanics, philosophy. Lviv: Space M, 2019. (Ukrainia
Content type: Article
Appears in Collections:Computational Problems Of Electrical Engineering. – 2020 – Vol. 10, No. 2

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