Electrical Interaction of Electron-Proton Tandem
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Date
2021-10-10
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Видавництво Львівської політехніки
Lviv Politechnic Publishing House
Lviv Politechnic Publishing House
Abstract
На основі адаптованого закону Кулона на випадок
рухомих мас з урахуванням скінченної швидкости поширення електричного поля одержано диференціальні
рівняння електромеханічного стану тандема “електронпротон”. Просимульовано реальні стани, а також низку
нереальних перехідних станів захоплення електрона протоном на власну орбіту. Наперекір заборонам квантової фізики
в полі мікросвіту введено математичне поняття електромеханічної чорної діри з радіусом 15 5.6358 10-= × emr на кшталт тієї, що існує в небесній механіці. Просимульовано перехідні процеси, що засвідчують колапс законів електрики і
механіки за порогом r(t) < rem. З цього приводу розпочато дискусію.
Based on the adapted Coulomb's law for the case of moving masses, taking into account the finite velocity of electric field propagation, differential equations of the electromechanical state of the electronproton tandem are obtained. The real states are simulated, as well as a number of unreal transition states of electron capture by a proton into its own orbit. Contrary to the prohibitions of quantum physics in the field of microworld, the mathematical concept of an electromechanical black hole with a radius 15 5,6358 10 em r-= × m similar to that taking place in celestial mechanics has been introduced. The transients indicating the collapse of the laws of electricity and mechanics at distances r(t) < rem are simulated. A discussion has been started on this issue.
Based on the adapted Coulomb's law for the case of moving masses, taking into account the finite velocity of electric field propagation, differential equations of the electromechanical state of the electronproton tandem are obtained. The real states are simulated, as well as a number of unreal transition states of electron capture by a proton into its own orbit. Contrary to the prohibitions of quantum physics in the field of microworld, the mathematical concept of an electromechanical black hole with a radius 15 5,6358 10 em r-= × m similar to that taking place in celestial mechanics has been introduced. The transients indicating the collapse of the laws of electricity and mechanics at distances r(t) < rem are simulated. A discussion has been started on this issue.
Description
Keywords
Coulomb's law of moving masses, electron-proton pair, differential equations of electromechanical state, collapse of laws of electricity and mechanics
Citation
Tchaban V. Electrical Interaction of Electron-Proton Tandem / Vasyl Tchaban // Computational Problems of Electrical Engineering. — Lviv : Lviv Politechnic Publishing House, 2021. — Vol 11. — No 2. — P. 38–42.