Motion as Structure-Induced Expansion – A Conceptual Contribution to the LRAE

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1. Verfasser: Jung, Andreas
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Sprache:Englisch
Veröffentlicht: Zenodo 2025
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author Jung, Andreas
author_facet Jung, Andreas
contents <p>This paper introduces a novel interpretation of motion within the framework of the Theory of Locally Relative Expansion Units (LRAE). Unlike classical mechanics, motion is here described as a cyclic reorganization of the structure field f(xμ)f(x^\mu)f(xμ). The frequency of this restructuring depends on the impulse access TTT, the linearity LLL (interpreted as mass), and the local deformability ϵ(xμ)\epsilon(x^\mu)ϵ(xμ). Greater mass results in slower restructuring cycles — a structural foundation for inertia. Moreover, motion on a microscopic scale contributes cumulatively to the observable cosmic expansion. Acceleration is redefined: not as the addition of energy, but as an increase in structural frequency. This model offers a structurally grounded, causally coherent alternative to classical dynamic theories.</p> <p><strong>Authorship: Andreas Jung<br> In collaboration with: ChatGPT (OpenAI)<br>  Lizenz: Creative Commons Attribution Non Commercial No Derivatives 4.0 International (CC BY-NC-<em>ND</em> 4.0)<br> Published: July 2025<br>Kontakt: <br><span>info@logistika-system.de<br>Web: www.logistika-system.de</span><br></strong></p> <p> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16922525
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Motion as Structure-Induced Expansion – A Conceptual Contribution to the LRAE
Jung, Andreas
Local Relative Expansion Theory (LRAE)
Structural Field
Temporal Impulse Model
Time
Universe
Reality
Einstein
LRAE
Element 0
Nonlinearity
linearity
Relativity and Structure
Causal Spacetime Dynamics
Black Hole Theory
Mass and Structure
Universal Expansion
Structure Cycle
Light Decoupling
Structural Analogy Principles
Structural Relativity
Relativity
Metaempirical Framework
Cosmological Boundary Models
Dynamic Spacetime
Recursive Structures
Time Architecture
<p>This paper introduces a novel interpretation of motion within the framework of the Theory of Locally Relative Expansion Units (LRAE). Unlike classical mechanics, motion is here described as a cyclic reorganization of the structure field f(xμ)f(x^\mu)f(xμ). The frequency of this restructuring depends on the impulse access TTT, the linearity LLL (interpreted as mass), and the local deformability ϵ(xμ)\epsilon(x^\mu)ϵ(xμ). Greater mass results in slower restructuring cycles — a structural foundation for inertia. Moreover, motion on a microscopic scale contributes cumulatively to the observable cosmic expansion. Acceleration is redefined: not as the addition of energy, but as an increase in structural frequency. This model offers a structurally grounded, causally coherent alternative to classical dynamic theories.</p> <p><strong>Authorship: Andreas Jung<br> In collaboration with: ChatGPT (OpenAI)<br>  Lizenz: Creative Commons Attribution Non Commercial No Derivatives 4.0 International (CC BY-NC-<em>ND</em> 4.0)<br> Published: July 2025<br>Kontakt: <br><span>info@logistika-system.de<br>Web: www.logistika-system.de</span><br></strong></p> <p> </p>
title Motion as Structure-Induced Expansion – A Conceptual Contribution to the LRAE
topic Local Relative Expansion Theory (LRAE)
Structural Field
Temporal Impulse Model
Time
Universe
Reality
Einstein
LRAE
Element 0
Nonlinearity
linearity
Relativity and Structure
Causal Spacetime Dynamics
Black Hole Theory
Mass and Structure
Universal Expansion
Structure Cycle
Light Decoupling
Structural Analogy Principles
Structural Relativity
Relativity
Metaempirical Framework
Cosmological Boundary Models
Dynamic Spacetime
Recursive Structures
Time Architecture
url https://doi.org/10.5281/zenodo.16922525