THE GENERAL THEORY OF POTENTIALITY V5.0 FINAL CORRIGEE - A Dynamic Descriptive Framework for the Reconfiguration of Future Trajectories
Author: Jhosuah Ioane Ceran-Jérusalémy (Alias C-j Ioane) - 2026-09-28 Papeete, PF License: CC-BY 4.0 Status: Simulation numérique - Protocole V5 preregistered - Non-validation empirique réelle THE GENERAL THEORY OF POTENTIALITY V5.0 - Preregistered negative test under exogenous random shocks. Résumé: La théorie ne postule pas une structure qui prédit à partir de son champ de potentialité. Elle propose que toute configuration possède une structure conditionnelle de devenirs accessibles/effectifs/viables, et que les transformateurs du présent modifient cette structure. Protocol V5 preregistered: - Generator BA N=1000 m=3 + random edge deletion p in [0.10,0.20,0.30] - 600 runs (200 per condition), split 140 train / 60 test stratified by event by run - Method: deltaAUC = AUC(Cl+P)-AUC(Cl), bootstrap clustered by run 2000 iter, 1 obs per run - Cl = S_t,R_t,Q_t,C_t,H_t,Var,AC1,Trend - Cl+P H2 = V_t,dV_t ; H2b = P_hat_M (mc 10000, convergence |P_hat_M(20k)-10k|<0.01, Hoeffding 1963) - Master seed: 20250928 Files: - THE_GENERAL_THEORY_OF_POTENTIALITY_V5_FINAL_CORRECTED_1.pdf - SEEDS.csv (600 seeds) - results.csv (deltaAUC) - V5_prereg.json - README_Zenodo.txt
Authors
- Jhosuah Ioane Ceran-Jérusalémy
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-29
- DOI
- https://doi.org/10.5281/zenodo.23042592
- Primary Topic
- Simulation Techniques and Applications
- Type
- preprint