Inscription, Accessibility, and the Emergence of Physical Law
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2026
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| _version_ | 1866902183329398784 |
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| author | prometheus engineering university |
| author_facet | prometheus engineering university |
| contents | <p>The Entropic Lattice Ontology (ELO) replaces the inherited foundational assumptions<br>of standard physics with a single ontological primitive: inscription, the irreversible<br>selection of one configuration from a continuously structured manifold of potential<br>states. From this primitive alone, the framework derives the Schrödinger equation,<br>the Born probability rule, the principle of least action, relativistic time dilation, the<br>hierarchy of fundamental force strengths, and the structural impossibility of gravity<br>quantisation. Each derivation is reviewed against the existing literature, and contact<br>points with Jacobson’s thermodynamic derivation of the Einstein equations, Horn-<br>deski scalar-tensor gravity, Wilson lattice gauge theory, and Wigner-Dyson nuclear<br>level statistics are identified precisely. A falsifiable experimental programme is pre-<br>sented spanning optical atomic clock measurements, tokamak disruption diagnostics,<br>gravitational-wave ringdown data, and high-energy collider physics. The epistemolog-<br>ical status of every class of claim is stated explicitly: what is independently established,<br>what is derived from the primitive, what is proposed as scientific hypothesis, and what<br>requires experimental determination. The ELO does not claim completeness. It claims<br>that inscription and the fourth spatial degree φ constitute the correct ontological floor<br>from which the foundational open problems of physics — the measurement problem,<br>the quantum-classical boundary, the non-renormalisability of gravity, the force hierar-<br>chy, and the thermodynamic arrow of time — become structurally dissoluble rather<br>than technically intractable.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20352569 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Inscription, Accessibility, and the Emergence of Physical Law prometheus engineering university quantum physics unification of quantum mechanics and general relativity quantum classical boundary resolved <p>The Entropic Lattice Ontology (ELO) replaces the inherited foundational assumptions<br>of standard physics with a single ontological primitive: inscription, the irreversible<br>selection of one configuration from a continuously structured manifold of potential<br>states. From this primitive alone, the framework derives the Schrödinger equation,<br>the Born probability rule, the principle of least action, relativistic time dilation, the<br>hierarchy of fundamental force strengths, and the structural impossibility of gravity<br>quantisation. Each derivation is reviewed against the existing literature, and contact<br>points with Jacobson’s thermodynamic derivation of the Einstein equations, Horn-<br>deski scalar-tensor gravity, Wilson lattice gauge theory, and Wigner-Dyson nuclear<br>level statistics are identified precisely. A falsifiable experimental programme is pre-<br>sented spanning optical atomic clock measurements, tokamak disruption diagnostics,<br>gravitational-wave ringdown data, and high-energy collider physics. The epistemolog-<br>ical status of every class of claim is stated explicitly: what is independently established,<br>what is derived from the primitive, what is proposed as scientific hypothesis, and what<br>requires experimental determination. The ELO does not claim completeness. It claims<br>that inscription and the fourth spatial degree φ constitute the correct ontological floor<br>from which the foundational open problems of physics — the measurement problem,<br>the quantum-classical boundary, the non-renormalisability of gravity, the force hierar-<br>chy, and the thermodynamic arrow of time — become structurally dissoluble rather<br>than technically intractable.</p> |
| title | Inscription, Accessibility, and the Emergence of Physical Law |
| topic | quantum physics unification of quantum mechanics and general relativity quantum classical boundary resolved |
| url | https://doi.org/10.5281/zenodo.20352569 |