Information-First Position
The project stance: physical constants are compressed information artifacts, and unit objections should be tested as encoding transformations.
A Python-first research instrument for testing whether the pre-2019 CODATA significant-digit representation of the characteristic impedance of vacuum behaves like an unusually generative binary information seed.
The project stance: physical constants are compressed information artifacts, and unit objections should be tested as encoding transformations.
A readable account of the old BigCalc2 genetic sequence machinery, Z0 facets, ablation controls, and run-tape scans.
The Z0 quark/gluon bit-structure observation, preserved as a report rather than treated as proof.
Documents the pre-2019 CODATA 2014 source, conversion rule, generated binary rows, and bits-only corpus.
Keeps the non-CODATA quark, hadron, and convenience rows separate from the official CODATA evidence chain.
Preserves the four canonical Z0 orientations, candidate traversals, and geometry notes without treating them as proof.
Design notes for token decomposition, Z0 substrate scans, run-tape comparison, and required controls.
A low-level doctrine and code anchor for replacing primitive pi in phase and probability bookkeeping with relation updates, cycle state, closure count, and return/interference readout.
The endpoint-exchange bridge: photon propagation as a rendered receipt over charge endpoints, relation delay, phase closure, impedance accounting, and conservation.
A later experiment that starts with unnamed recurring motifs before interpreting or naming physical families.
Project status, claim under test, falsification criteria, install instructions, roadmap, and references.
Runs the fixed Z0 seed as a circular-XOR tap machine, scans priority closure and quark words, and compares the counts against same-density shuffled controls.
Interprets deterministic tap-tape windows as candidate QLF/ZFA objects and marks only spectral-gap-zero twist balances as admissible.
Uses the circular-XOR orbit as a finite closure-walk sampler, estimates pi from return statistics, and compares Z0 against shuffled, same-density, and CODATA controls.
A restrained Markdown paper arguing that the first burden is to recover known physics from relation, delay, and guidance before making new dark-sector claims.
A concrete translation of the 39-bit Z0 seed into fixed views, circular XOR evolution, tap output, and named segmentation that a QLF / Quantum OS style process can run.
Source-linked notes from a broad string-theory and boundaries video, preserved as inspiration for finite encodings, circular traversals, dual descriptions, and proof boundaries.
A vivid but clearly bounded interpretation note: Z0 as a runnable atomic coupling-kernel hypothesis rather than the imagined passive impedance of empty space.
A tiny runnable universe where two Z0 rings exchange delayed tap messages and apparent distance emerges from reconciliation cost.
A sibling model where an electron-like candidate appears as a stable colorless hole carried forward by the impedance bond.
Four Z0 impedance structures form a 3D entanglement basis while electron-null candidates fly through the emergent geometry.
Ten Z0 nodes maintain a fuzzy entanglement basis through pointer swaps, preserving every node while geometry emerges from relation.
Runs the four canonical Z0 XOR orientations through Lorenz dynamics using rolling bit density as the modulation source, with a shuffled control mode for comparison.
Compares Z0's circular-XOR orbit against true random 39-bit runners by counting which legacy physics bit tokens the orbit encounters.
Tests whether the quark/subsystem grammar can compress CODATA constant bitstrings by exact non-overlapping copy-paste recipes, reporting coverage, token recipe, and literal leftovers.