This release contains the public Part I physics archive for the
Constraint-Driven Field Theory / Constraint-Driven Flux Dynamics project. The
manuscript sources are maintained as neutral LaTeX article-class files.
Steve Bico Mujjabi, MD
Independent Researcher
CDFD framework: Steve Bico Mujjabi and VuraLabs
Kampala, Uganda
ORCID: https://orcid.org/0009-0001-0556-5516
Institutional home: VuraLabs
Constraint-Driven Field Theory; Constraint-Driven Flux Dynamics; CDFT; CDFD; CDFD Runtime; CDFL; constrained-flow language; fundamental physics; theoretical physics; mathematical physics; computational physics; particle physics; quantum foundations; field theory; vacuum structure; vacuum equation of state; vacuum engineering; topological physics; knot theory; torus knots; vortex dynamics; adaptive vacuum; vacuum memory; vacuum hysteresis; Mujjabi Tests; falsifiable predictions; Koide formula; lepton masses; fine-structure constant; reproducible research; open science.
cdfd, cdft, theoretical-physics, mathematical-physics,
cdfd-runtime, cdfl, computational-physics, quantum-foundations, field-theory,
vacuum-structure, topological-physics, knot-theory, vortex-dynamics,
vacuum-engineering, mujjabi-tests, fine-structure-constant,
koide-formula, reproducible-research,
open-science.
Part_I_Fundamental_Physics/- Part I article-class manuscripts, PDFs, figure assets, supplementary scripts, generated outputs, bibliography, claim-status notes, and reproducibility instructions.cdfd_demo/- small public equation demo with Docker support.CITATION.cff- GitHub citation metadata..zenodo.json- Zenodo deposit metadata.requirements.txt- Python dependencies for the public supplementary scripts.environment.yml- Conda environment for the public science stack.LICENSE- CC BY 4.0 release license.LICENSE_BOUNDARY.md- explains why the scholarly Part I archive can use CC BY 4.0 while the public CDFD Runtime uses AGPL-3.0-or-later.
These manuscripts are archived as research/preprint materials and are not peer reviewed. The supplementary scripts reproduce the internal calculations, figures, tables, and consistency checks. They do not establish empirical validation of the physical hypotheses.
The final edit turns Part I into a named adaptive-vacuum program rather than a loose sequence of papers. Paper I states the Mujjabi Capacity Law, the Mujjabi Adaptive Operating Ratio, and the Mujjabi Stability Attractor for the fine-structure ratio. Papers II-IX develop the symmetry, topology, mass-budget, spectrum, and boundary rules. Paper X states the vacuum-engineering control principle. Papers XI-XII define the Mujjabi Tests that can falsify or support the memory, alpha-jitter, and pressure-gradient claims.
Part_I_Fundamental_Physics/README.mdPart_I_Fundamental_Physics/CLAIM_STATUS.mdPart_I_Fundamental_Physics/REPRODUCIBILITY.mdPart_I_Fundamental_Physics/PDFs/
See Part_I_Fundamental_Physics/REPRODUCIBILITY.md for rebuild and verification
commands.
The CDFD Runtime is now public in the main CDFD workspace as the general runtime for CDFL, the flow-constraint-memory state grammar. This Part I release remains a scholarly archive: its paper-local Python scripts, notebooks, and outputs reproduce the figures and tables cited by the physics papers.
Cite and license the two layers separately until a combined runtime release DOI exists.
This release is licensed under the Creative Commons Attribution 4.0
International License (CC BY 4.0). See LICENSE and
LICENSE_BOUNDARY.md.
For this release family, cite:
Steve Bico Mujjabi, MD. CDFD Part I: Fundamental Physics. Zenodo. https://doi.org/10.5281/zenodo.20250820
After a new GitHub release is archived by Zenodo, cite the version DOI shown on that Zenodo record for the exact released snapshot.