Dynamics and electrodynamics of moving real systems in the Theory of Reference Frames
Daniele Sasso

TL;DR
This paper explores the dynamics and electrodynamics of moving systems within the Theory of Reference Frames, proposing new parameters like electrodynamic mass to better understand elementary particles and deriving generalized space-time equations.
Contribution
It introduces new physical parameters and relations, such as electrodynamic mass and a link between time and mass, extending classical dynamics to microphysical systems.
Findings
Electrodynamic mass differs from mechanical mass.
New space-time equations are derived for any reference frame.
Behavior of elementary particles analyzed in inertial and non-inertial frames.
Abstract
The purpose of the dynamics of moving systems is to search for the mathematical model that describes the link between the resultant applied force, that is the cause, and the speed of system that is the effect. This mathematical link provides the law of motion and from Newton forward it has been specified by an differential equation. Starting from the principles of the Theory of Reference Frames it is possible to arrive at new interesting results in the study and in the analysis of dynamical systems provided with linear symmetry and central symmetry. Really the most interesting consequences are relative to the behaviour of microphysical systems and elementary particles. Some kinematic and dynamic physical parameters, valid for analysis of mechanical systems, lose meaning in microphysical systems. For these systems it is necessary to define therefore new parameters on the ground of the…
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Taxonomy
TopicsGeophysics and Sensor Technology · Experimental and Theoretical Physics Studies · Mechanical and Optical Resonators
