_version_ 1866902125797179392
author Morton, Jeremy
author_facet Morton, Jeremy
contents <p class="font-claude-response-body break-words whitespace-normal leading-[1.7]"> </p> <p class="font-claude-response-body break-words whitespace-normal leading-[1.7]">This collection presents a unified electrodynamic ontology and four companion research papers proposing that physical reality is describable as a single electromagnetic process governed by one law (V = IR), expressed through one medium (the field, Z₀ = 376.73 Ω), and measurable through one coherent set of primitives. The master manuscript (<em>The Unified Electrodynamic Ontology</em>) establishes seven axiomatic foundations and derives from them a continuous explanatory architecture spanning particle physics, cosmology, quantum mechanics, atomic geometry, stellar nucleosynthesis, information theory, and consciousness. The four companion papers develop specific derivational branches: Paper 1 reinterprets cosmological redshift as inductive field depletion rather than metric expansion, deriving the Hubble constant from the geometry of the electromagnetic inductive window and resolving the Hubble tension as spatial variation in Z₀; Paper 2 proposes that stable particles are Platonic field topologies and unstable particles are Archimedean intermediates, with particle lifetime scaling log-linearly with geometric distance from the nearest stable configuration; Paper 3 reinterprets mass as inductive capacitance integrated across a particle's phase lane architecture, offering a field-geometric alternative to the Higgs mechanism and deriving E = mc² as the power identity P = I²R; Paper 4 identifies information and electromagnetic modulation as formally identical, deriving the bit as a zero-crossing event, the byte as cubic vector equilibrium closure, and Shannon entropy as proximity to the field's ground state. Collectively these works argue that phenomena currently requiring dark matter, dark energy, the Higgs field, and wave-particle duality as separate explanatory posits dissolve when a single electrodynamic architecture is applied consistently at every scale. The framework makes specific testable predictions distinguishing it from the Standard Model and ΛCDM cosmology, and identifies open derivational targets including the proton-to-electron mass ratio and the precise inductive window angle calibrating the Hubble constant.</p>
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institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Magnum Opus
Morton, Jeremy
electromagnetic field theory
impedance of free space
unified field theory
electrodynamic ontology
vector equilibrium
inductive coupling
phase topology
toroidal field geometry
zero crossing
redshift mechanism
Hubble tension
cosmic microwave background
static universe model
cosmological redshift
JWST early galaxies
particle decay topology
Platonic geometry particles
mass as impedance
Higgs mechanism alternative
fine structure constant
particle lifetime prediction
trefoil topology
information field identity
Shannon entropy physics
electromagnetic information
foundations of physics
physical ontology
axiomatic physics
causal terminus
volitional first cause
Astronomy and Astrophysics
Philosophy of Science
Physical Sciences
<p class="font-claude-response-body break-words whitespace-normal leading-[1.7]"> </p> <p class="font-claude-response-body break-words whitespace-normal leading-[1.7]">This collection presents a unified electrodynamic ontology and four companion research papers proposing that physical reality is describable as a single electromagnetic process governed by one law (V = IR), expressed through one medium (the field, Z₀ = 376.73 Ω), and measurable through one coherent set of primitives. The master manuscript (<em>The Unified Electrodynamic Ontology</em>) establishes seven axiomatic foundations and derives from them a continuous explanatory architecture spanning particle physics, cosmology, quantum mechanics, atomic geometry, stellar nucleosynthesis, information theory, and consciousness. The four companion papers develop specific derivational branches: Paper 1 reinterprets cosmological redshift as inductive field depletion rather than metric expansion, deriving the Hubble constant from the geometry of the electromagnetic inductive window and resolving the Hubble tension as spatial variation in Z₀; Paper 2 proposes that stable particles are Platonic field topologies and unstable particles are Archimedean intermediates, with particle lifetime scaling log-linearly with geometric distance from the nearest stable configuration; Paper 3 reinterprets mass as inductive capacitance integrated across a particle's phase lane architecture, offering a field-geometric alternative to the Higgs mechanism and deriving E = mc² as the power identity P = I²R; Paper 4 identifies information and electromagnetic modulation as formally identical, deriving the bit as a zero-crossing event, the byte as cubic vector equilibrium closure, and Shannon entropy as proximity to the field's ground state. Collectively these works argue that phenomena currently requiring dark matter, dark energy, the Higgs field, and wave-particle duality as separate explanatory posits dissolve when a single electrodynamic architecture is applied consistently at every scale. The framework makes specific testable predictions distinguishing it from the Standard Model and ΛCDM cosmology, and identifies open derivational targets including the proton-to-electron mass ratio and the precise inductive window angle calibrating the Hubble constant.</p>
title The Magnum Opus
topic electromagnetic field theory
impedance of free space
unified field theory
electrodynamic ontology
vector equilibrium
inductive coupling
phase topology
toroidal field geometry
zero crossing
redshift mechanism
Hubble tension
cosmic microwave background
static universe model
cosmological redshift
JWST early galaxies
particle decay topology
Platonic geometry particles
mass as impedance
Higgs mechanism alternative
fine structure constant
particle lifetime prediction
trefoil topology
information field identity
Shannon entropy physics
electromagnetic information
foundations of physics
physical ontology
axiomatic physics
causal terminus
volitional first cause
Astronomy and Astrophysics
Philosophy of Science
Physical Sciences
url https://doi.org/10.5281/zenodo.20388106