Electric Fields in the Concept of the Scalar-Vector Potential

Authors

  • F. F. Mende

electrodynamics, electric field, emission laws, scalar- vector potential

Abstract

All dynamic laws of electrodynamics, connected with the motion of charge, follow from the concept of scalar-vector potential. From this concept follow the emission laws. These laws are introduced with the aid of the being late scalar vector potential. This approach gives the possibility to understand physics of the process of emission and to obtain all necessary laws of this process.

Downloads

How to Cite

Electric Fields in the Concept of the Scalar-Vector Potential. (2018). Global Journal of Science Frontier Research, 18(A9), 1-8. https://www.journalofscience.org/index.php/GJSFR/article/view/2342

References

Ф Менде (1988) К вопросу об уточнении уравнений элетромагнитной индукции. Харьков, депони рована в ВИНИТИ. 32.

Ф Менде, Новая Электродинамика (2012) Революция в современной физике.

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.

Ф Менде Новые подходы в современной классической электроди.

Намике, I Часть, Инженерная (2013) Unknown Title. 1, 35-49.

F Mende (2015) What is Not Taken into Account and they Did Not Notice Ampere, Faraday, Maxwell, Heaviside and Hertz. 1(1), 28-52.

F Mende (2014) Concept of Scalar-Vector Potential in the Contemporary Electrodynamic, Problem of Homopolar Induction and Its Solution. 2(6), 202-210.

F Mende (2015) Symmetrization and the Modification of the Equations of Induction and Material Equations of Maxwell. 1(3), 171-179.

Р Фейнман, Р Лейтон, М Сэндс (1977) Фейнмановские лекции по физике.

Г Николаев (2003) Современная электродинамика и причины ее парадоксальности. 2.

Electric Fields in the Concept of the Scalar-Vector Potential

Published

2018-10-01

How to Cite

Electric Fields in the Concept of the Scalar-Vector Potential. (2018). Global Journal of Science Frontier Research, 18(A9), 1-8. https://www.journalofscience.org/index.php/GJSFR/article/view/2342