Published April 13, 2026
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The Crystal Electron Cloud Hypothesis: Experimental Predictions for Geometrically Constrained Boson Detection via X-ray Crystallography
Description
This paper presents specific experimental predictions for Geometrically Constrained Boson detection through X-ray crystallography, derived from the Temporal Dynamics Framework. 75 high-snugness particles are classified into SET-A (41 particles, angular variance approximately 30.2 degrees) and SET-B (34 particles, angular variance approximately 45.1 degrees). Specific predictions are made for silicon, germanium, sodium chloride, calcium fluoride, and lead crystal signatures, including anomalous Bragg peak positions at Universal Prime harmonic angles. The paper includes falsification criteria: if sodium chloride (SET-B composition) shows identical narrow peaks to silicon (SET-A), the geometric distinction is falsified. All 17 verification tests pass. Paper 10 in the Temporal Dynamics Framework Research Series.
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Crystal_Electron_Cloud_zenodo.zip
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