From Possibility to Measurement Foundations of a Structural-Realist Ontology of Physical Reality
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We present a minimal ontological framework — the Quantum Reality Framework (QRF) — that motivates and constrains central structural features of quantum mechanics from a single primitive: possibility with actualization possibility and actualization disposition, all three inseparable. **New in v37:** Literature updated and thematically organized. Six gaps identified in v35–v36 are addressed: (i) recent literature on topological QFT and knot theory (Witten 2021); (ii) emergent spacetime geometry (Oriti 2021); (iii) geometric analysis and energy functionals (Sullivan, Kusner); (iv) dynamic selection principles and causal structure (Markopoulou 2000, Rideout-Sorkin 2001); (v) SU(2) and fermion-boson distinction (Baez-Dolan 2001, Witten 1989); (vi) geometric homotopy theory (Gromov 1983). The reference list is now thematically structured into seven categories. All mathematical and physical content is unchanged from v36. **Standing of v37:** Task 2c formally complete. One postulate (P_dyn). One open parameter (g). Primary open tasks: spectral computation of g; Task 5 (SU(2)/fermions). ## [Sections 2–8 unchanged from v36] *(Full text of Sections 2.1 through 8.9 as in v36 — reproduced below for completeness.)*



