A Magnetic Thought Experiment as a Demonstration of Space-Phase Action Independent of Local Gravity

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Autor principal: Beecham, James E.
Formato: Recurso digital
Publicado: Zenodo 2026
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author Beecham, James E.
author_facet Beecham, James E.
contents <p>A simple thought experiment involving two magnets placed like-pole to like-pole on a table<br>provides a clear and accessible demonstration of space-phase dynamics as distinct from<br>local environmental physics. When like magnetic poles are forced together, a repulsive<br>force is experienced that acts without contact and persists regardless of planetary setting.<br>This paper interprets the experiment within the Space-Phase-3 (SP3) framework, in which<br>magnetic repulsion arises from the enforced overlap of incompatible space-phase<br>conditioning regions rather than from direct object-to-object interaction. The experiment<br>further shows that while the generation of the repulsive impulse is independent of gravity<br>and atmosphere, the observed separation distance depends strongly on local conditions<br>such as gravitational acceleration and friction. By comparing outcomes on Earth and on<br>the Moon, the experiment illustrates how space-phase dynamics provide the initiating<br>physical action, while planetary environments only modulate how that action is dissipated.<br>The discussion is presented in an intuitive narrative form suitable for conceptual<br>understanding.</p>
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publishDate 2026
publisher Zenodo
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spellingShingle A Magnetic Thought Experiment as a Demonstration of Space-Phase Action Independent of Local Gravity
Beecham, James E.
<p>A simple thought experiment involving two magnets placed like-pole to like-pole on a table<br>provides a clear and accessible demonstration of space-phase dynamics as distinct from<br>local environmental physics. When like magnetic poles are forced together, a repulsive<br>force is experienced that acts without contact and persists regardless of planetary setting.<br>This paper interprets the experiment within the Space-Phase-3 (SP3) framework, in which<br>magnetic repulsion arises from the enforced overlap of incompatible space-phase<br>conditioning regions rather than from direct object-to-object interaction. The experiment<br>further shows that while the generation of the repulsive impulse is independent of gravity<br>and atmosphere, the observed separation distance depends strongly on local conditions<br>such as gravitational acceleration and friction. By comparing outcomes on Earth and on<br>the Moon, the experiment illustrates how space-phase dynamics provide the initiating<br>physical action, while planetary environments only modulate how that action is dissipated.<br>The discussion is presented in an intuitive narrative form suitable for conceptual<br>understanding.</p>
title A Magnetic Thought Experiment as a Demonstration of Space-Phase Action Independent of Local Gravity
url https://doi.org/10.5281/zenodo.18233736