2026/03/16 by Bernd von Mallinckrodt · 1 voice
Environmental Science · Computer Science · Physics and Astronomy · #Ecosystem dynamics and resilience #Chaos, Complexity, and Education #Complex Systems and Dynamics
paper · doi:10.5281/zenodo.19048629
openalex publication_date 2026/03/16 · openalex created_date 2026/03/17 · openalex updated_date 2026/07/01
This document provides a structured overview of the Singularization Framework, a research program on structural stability and collapse dynamics in complex adaptive systems. It serves as an entry point for new readers and as a navigational reference for the full publication series.The framework is organized across four conceptual layers: (I) theoretical foundations, including the Mallinckrodt Cycle and the concept of singularization; (II) formal modeling, centered on the Compression–Resonance–Tension Index (CRTI) and the Minimal Model of Resonance Dynamics (MMRD); (III) empirical validation design, including pre-registered falsification protocols and simulation-based proof of concept; and (IV) domain applications across ecological, organizational, and socioeconomic systems.The overview explains the core theoretical concepts — structural compression, adaptive resonance, resonance erosion, and systemic tension — and positions the framework relative to established traditions in complexity science, including panarchy theory, early warning signal research, and catastrophe theory. The publication structure of the series is presented in tabular form with layer-by-layer navigation guidance.This publication is part of the Singularization Framework Series, a research program on the stability and collapse dynamics of complex adaptive systems. The series consolidates theoretical, formal, and simulation-based work developed over more than a decade of independent research. Core components include the Mallinckrodt Cycle, the Compression–Resonance–Tension Index (CRTI), and the Minimal Model of Resonance Dynamics (MMRD). For the full series, see: Zenodo community: Mallinckrodt Cycle – Complex Systems Research. Singularization Framework, Mallinckrodt Cycle, CRTI, complex adaptive systems, structural collapse, system stability, resonance erosion, structural compression, adaptive resonance, early warning signals, nonlinear dynamics, catastrophe theory, panarchy, critical transitions, research program overview, complexity science, collapse dynamics, systemic tension, MMRD, bifurcation