Emergence Theory: A Conceptual Framework for the Co-Emergence of Space, Time, and Structure

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Main Author: White, Gregory
Format: Recurso digital
Published: Zenodo 2025
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author White, Gregory
author_facet White, Gregory
contents <blockquote><em>Emergence Theory proposes that space and time arise from the interaction of simple conceptual axioms rather than existing as pre-defined backgrounds. At the smallest scales, mass displaces spacetime along an infinite number of infinitely extended, straight-line gravitational vectors. The aggregate behavior of these vectors produces the macroscopic curvature associated with gravity. This framework introduces a Planck-scale translation process — a discrete “here/now” progression — which generates a holographic spacetime capable of encoding every possible perspective. Combined with the inverse-square law and the geometry of ellipses, the model provides an intuitive link between microscopic displacement and large-scale orbital behavior. The result is a unified, scale-consistent picture in which particulate interactions generate linear displacement fields, aggregated behavior produces curvature, and dimensionality expands as needed to support infinite vectors and relational completeness.</em></blockquote>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17643435
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Emergence Theory: A Conceptual Framework for the Co-Emergence of Space, Time, and Structure
White, Gregory
<blockquote><em>Emergence Theory proposes that space and time arise from the interaction of simple conceptual axioms rather than existing as pre-defined backgrounds. At the smallest scales, mass displaces spacetime along an infinite number of infinitely extended, straight-line gravitational vectors. The aggregate behavior of these vectors produces the macroscopic curvature associated with gravity. This framework introduces a Planck-scale translation process — a discrete “here/now” progression — which generates a holographic spacetime capable of encoding every possible perspective. Combined with the inverse-square law and the geometry of ellipses, the model provides an intuitive link between microscopic displacement and large-scale orbital behavior. The result is a unified, scale-consistent picture in which particulate interactions generate linear displacement fields, aggregated behavior produces curvature, and dimensionality expands as needed to support infinite vectors and relational completeness.</em></blockquote>
title Emergence Theory: A Conceptual Framework for the Co-Emergence of Space, Time, and Structure
url https://doi.org/10.5281/zenodo.17643435