Part 3: Electromagnetism as the Geometrodynamics of Space Light is a vibration (excitation) of the Electromagnetic field, which as we show is Space itself. Light is thus kind of a vibration of the Space lattice: Adopting the idea that space is a lattice (cellular structure), Space Density is defined as the number of space cells per unit volume (denoted 0 for space with no deformations). Based on this we define Electric Charge Density as: q=1/4π ∙ (ρ-ρ0)/ρ. This charge density is positive if > 0 (contracted space) and negative if < 0 (dilated space). This is all we need to derive electrostatics in this paper Part 1. By adding the Lorentz Transformation to the definition of q, we derive in this paper, Part 3, the entire Maxwell Electromagn...
Abstract: This research is about the special theory of relativity on electric permittivity and magne...
The Maxwell equations are formulated on an arbitrary (1+3)-dimensional manifold. Then, imposing a (c...
We will display the fundamental structure of classical electrodynamics. Starting from the axioms of ...
Part 3: Electromagnetism as the Geometrodynamics of Space Light is a vibration (excitation) of the E...
Part 3: Electromagnetism as the Geometrodynamics of Space Light is a vibration (excitation) of the E...
We consider electric charge to be a contracted (positive charge) or dilated (negative charge) zone o...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
This text proposes (as in previous works) that space is composed of photon holes (particles) mixed w...
A suggestive interpretation of classical gravitation and classical electromagnetism is proposed whic...
The geometry of the elementary charge is studied in the framework of the concept of space considered...
Abstract: This research is about the special theory of relativity on electric permittivity and magne...
The Maxwell equations are formulated on an arbitrary (1+3)-dimensional manifold. Then, imposing a (c...
We will display the fundamental structure of classical electrodynamics. Starting from the axioms of ...
Part 3: Electromagnetism as the Geometrodynamics of Space Light is a vibration (excitation) of the E...
Part 3: Electromagnetism as the Geometrodynamics of Space Light is a vibration (excitation) of the E...
We consider electric charge to be a contracted (positive charge) or dilated (negative charge) zone o...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 4: The Elementary Charges and Particles Electric charge, as we have shown (Barak 2019), is not ...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
Part 2: Our General Relativity Field Equation that Incorporates Electromagnetism All past efforts to...
This text proposes (as in previous works) that space is composed of photon holes (particles) mixed w...
A suggestive interpretation of classical gravitation and classical electromagnetism is proposed whic...
The geometry of the elementary charge is studied in the framework of the concept of space considered...
Abstract: This research is about the special theory of relativity on electric permittivity and magne...
The Maxwell equations are formulated on an arbitrary (1+3)-dimensional manifold. Then, imposing a (c...
We will display the fundamental structure of classical electrodynamics. Starting from the axioms of ...