This pack demonstrates a full structural unification of GST and QMP, suggesting a unified mechanism for stability and emergence.
This research pack presents a full structural unification of General Systems Theory (GST) and the Quantum Measurement Problem (QMP) using the Carlo Framework, a domain‑independent mechanism for contradiction resolution, collapse, classicalisation, and trajectory update. Across multiple documents, the work demonstrates that: System boundaries (GST) and observer boundaries (QMP) are structurally identical. Open system dynamics and measurement contexts perform the same contextual‑selection function. Recursive stability and classical outcomes describe the same transition from indeterminate to determinate states. System reorganisation and quantum collapse are the same contradiction‑resolution mechanism expressed in different domains. The pack includes: 1. The Unified GST–QMP Paper A full theoretical unification showing that collapse, classical emergence, decoherence, reorganisation, and stability are all instances of the same structural process. 2. The Carlo Engine (12‑Arc Geometric System) A complete geometric operator system (192 blocks) defining dynamical, interaction, field, energetic, transform, adaptive, evolutionary, totality, and completion geometries, culminating in the terminal operator Ω_final. 3. The Equation Sheet Formal mathematical definitions for collapse, post‑collapse, and reconstruction, including stability, coherence, determinacy, identity, behavioural, and functional equations. 4. The Visual Map A full structural map of all operator families, manifolds, curvatures, metrics, invariants, and completion states. 5. The Glossary, Operator Dictionary, and Manifold Atlas A complete reference set defining every operator, manifold, curvature, metric, invariant, and structural component used across the framework. 6. The Companion Document (Post‑Collapse Arc) A full description of stability, coherence, determinacy, identity persistence, behavioural continuity, and functional continuity after collapse completion. 7. The Reconstruction Arc A complete mechanism for building new structure, identity, behaviour, roles, and functions on top of the completed configuration without re‑entering contradiction. 8. The Author’s Note A personal statement contextualising the creation of the Carlo Framework. Together, these documents provide a complete, domain‑independent collapse architecture capable of explaining: classical emergence decoherence pathways system reorganisation stability formation identity installation context‑determined behaviour post‑collapse persistence reconstruction and structural extension This pack is intended for researchers in systems theory, quantum foundations, cognitive science, formal logic, and complex adaptive systems seeking a unified mechanism for transitions from unstable or indeterminate states to stable or determinate ones. Keywords: General Systems Theory; Quantum Measurement Problem; Collapse Mechanisms; Classical Emergence; Decoherence; System Boundaries; Observer Boundaries; Context‑Determined Dynamics; Contradiction Resolution; Reset Operator; Trajectory Update Rule; Carlo Framework; Unified Operator Architecture; Geometric Systems; Dynamical Manifolds; Interaction Geometry; Field Geometry; Energetic Geometry; Transform Geometry; Adaptive Geometry; Evolutionary Geometry; Totality Geometry; Completion Geometry; Determinacy; Stability; Coherence; Identity Formation; Post‑Collapse Dynamics; Reconstruction Processes; Unified Systems Theory; Quantum Foundations; Complex Adaptive Systems; Cognitive Collapse Models; Formal Systems Collapse; Domain‑Independent Collapse Architecture; Structural Equivalence; Contextual Classicalisation; Collapse Pseudocode; Collapse Equation Families; Manifold Atlas; Operator Dictionary; Unified Mathematical Framework. Contact: For enquiries or research questions related to this work, email matthewcarlo.research@gmail.com
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Matthew Arthur Carlo (2026) studied this question.
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