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May 20, 20260 citationsOpen Access

The Generative Equation: A Minimal Formalism for Emergent Structure

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WSWaldemar Superson

Key Points

  • This work aims to introduce a minimal formalism that describes the emergence of stable structures from iterative processes.
  • Introduced the generative equation to formalize emergent dynamics.
  • Analyzed the components of persistence, variation, and selection in various systems.
  • Outlined implications for quantum processes, biological evolution, and generative cognition.
  • The generative equation demonstrates stable patterns and coherence across physical and biological systems.
  • It effectively bridges concepts from process philosophy and information-based physics, indicating a unified understanding of reality.
  • Future applications could enhance comprehension of cognition and emergent geometry.

Abstract

This work introduces the generative equation, a minimal and domain independent formalism describing how stable structures emerge from iterative processes. Instead of assuming pre existing space, time, matter, or fixed physical laws, the model begins with a single principle: iteration — the repeated transformation of a stateby local rules with minimal variation. The equation Sn+1=C(R(Sn)+Δ(Sn)) formalizes three universal components of generative dynamics: persistence (what remains), variation(what changes), and selection (what survives). This minimal structure is sufficient to produce patterns, stability, coherence, decoherence, and emergent order across physical, biological, cognitive, and artificial systems. The generative equation provides a unified lens for interpreting resonance, self organization, adaptation, learning, and the emergence of structure. It bridges process philosophy, systems theory, information based physics, and contemporary AI, suggesting that reality itself may be best understood as an evolving sequenceof iterated transformations. This paper presents the formalism, its conceptual motivation, and its implications for models of matter, mind, and computation. Future work will develop specialized versions of the equation for quantum processes, emergent geometry, biological evolution, and generative models of cognition. Author: Waldemar Superson

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Cite This Study

Waldemar Superson (2026) studied this question.

synapsesocial.com/papers/6a0d5098f03e14405aa9c73ahttps://doi.org/10.5281/zenodo.20266666
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