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April 11, 20260 citationsOpen Access

Generativity Multi-chain Explosion: A Structural Mechanism for the Emergence of Complexity - that may underlie any Big Bang from the atomic to the cosmological scale.

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WSWaldemar Superson

Key Points

  • This research aims to explore a structural mechanism that explains how complexity emerges in various systems from atomic to cosmological scales.
  • Introduces the generativity multi-chain explosion as a conceptual framework.
  • Describes the connectivity of minimal differences (ilons) in relational networks.
  • Explores analogies with physical processes like phase transitions and inflationary expansion.
  • Demonstrates how minimal differences can produce large-scale relational complexity.
  • Identifies the capability of generating coherence and new organization across systems.
  • Explains the potential emergence of complex structures akin to a small Big Bang.

Abstract

The generativity multi-chainy explosion is introduced as a structural mechanism capable of producing rapid, large scale increases in relational complexity. Within the GTii framework, minimal differences (ilons) generate new differences whenever they connect, creating an accelerating network of relations.This amplification can lead to local or global structural explosions — a process analogous to phase transitions, inflationary expansion, or a “small Big Bang.” The article outlines how generative energy embedded in minimal structures can produce emergent coherence and new forms of organization across scales, from particlesto cosmological systems. Author: Waldemar Superson

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Cite This Study

Waldemar Superson (2026) studied this question.

synapsesocial.com/papers/69d9e50778050d08c1b75501https://doi.org/10.5281/zenodo.19481134
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