Physics–MCM Correspondence: Emergence of Physical Structures from Monistic Geometry

The article Physics–MCM Correspondence forms the starting point of the entire MCM Continuum Physics Series. It demonstrates that physics and the Monistic Continuum Model (MCM) are not competing theories but two complementary descriptive levels of the same reality. Physics describes the world after the emergence of space, whereas the MCM describes the world before the emergence of space. Physical quantities such as mass, energy, spacetime, fields, and particles are interpreted as projections of the pre-spatial geometry of the medium. This establishes a formal bridge between established physics and monistic ontology. The MCM Continuum Physics Series constitutes the scientific core of monistic medium theory (MCM). It shows how all physical structures—space, time, fields, particles, and forces—can be understood as emergent manifestations of a single geometric entity: the medium. Each article in the series addresses a specific level of physical emergence and traces established physics back to pre-spatial processes. MCM Continuum Physics Series ├── 01_Physics–MCM Correspondence ├── 02_Physics Derived from the MCM (forthcoming) ├── 03_Observable Phenomena of the MCM (forthcoming) └── 04_Foundation of Future MCM Publications (forthcoming) The MCM Continuum Physics Series integrates ontological, mathematical, and empirical layers into a consistent overall model of the physical world. Its aim is not only to explain the role of the Monistic Continuum Model within physics, but also to strengthen the significance of the physical world in contrast to the relativistic world of physics. Physics is the tool with which we capture the appearance of the cosmos; the MCM is the framework within which we understand its structure. Yet understanding does not arise merely from reflecting on what has been achieved, but from reconsidering what is achievable. Only those who recognize the limits of their own models can truly comprehend the cosmos. The MCM Series is therefore not a conclusion but a beginning—an invitation to not only extend physics, but to rethink it.→ Monistic Continuum Model (MCM): V07 (EN), DOI: (10.5281/zenodo.22128163)

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23160655
Primary Topic
Relativity and Gravitational Theory
Type
preprint
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Physics–MCM Correspondence: Emergence of Physical Structures from Monistic Geometry

Walter Moosbrugger
Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
preprint

Physics–MCM Correspondence: Emergence of Physical Structures from Monistic Geometry

Walter Moosbrugger
preprint en

Abstract

The article Physics–MCM Correspondence forms the starting point of the entire MCM Continuum Physics Series. It demonstrates that physics and the Monistic Continuum Model (MCM) are not competing theories but two complementary descriptive levels of the same reality. Physics describes the world after the emergence of space, whereas the MCM describes the world before the emergence of space. Physical quantities such as mass, energy, spacetime, fields, and particles are interpreted as projections of the pre-spatial geometry of the medium. This establishes a formal bridge between established physics and monistic ontology. The MCM Continuum Physics Series constitutes the scientific core of monistic medium theory (MCM). It shows how all physical structures—space, time, fields, particles, and forces—can be understood as emergent manifestations of a single geometric entity: the medium. Each article in the series addresses a specific level of physical emergence and traces established physics back to pre-spatial processes. MCM Continuum Physics Series ├── 01_Physics–MCM Correspondence ├── 02_Physics Derived from the MCM (forthcoming) ├── 03_Observable Phenomena of the MCM (forthcoming) └── 04_Foundation of Future MCM Publications (forthcoming) The MCM Continuum Physics Series integrates ontological, mathematical, and empirical layers into a consistent overall model of the physical world. Its aim is not only to explain the role of the Monistic Continuum Model within physics, but also to strengthen the significance of the physical world in contrast to the relativistic world of physics. Physics is the tool with which we capture the appearance of the cosmos; the MCM is the framework within which we understand its structure. Yet understanding does not arise merely from reflecting on what has been achieved, but from reconsidering what is achievable. Only those who recognize the limits of their own models can truly comprehend the cosmos. The MCM Series is therefore not a conclusion but a beginning—an invitation to not only extend physics, but to rethink it.→ Monistic Continuum Model (MCM): V07 (EN), DOI: (10.5281/zenodo.22128163)

Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
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Physics–MCM Correspondence: Emergence of Physical Structures from Monistic Geometry — Walter Moosbrugger · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS