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Galactic Causal System: A Recursive Model of Stellar, Entropic, and Symbolic Structure  /

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Category: Analysis

Description: This work presents a unified mathematical–causal framework for modeling the structure and evolution of the Solar System as a coherent, multi-layered causal network. Beginning with physical interactions—such as gravitational feedback, entropic gradients, and vacuum field perturbations—the model builds up to include symbolic recursion, cultural evolution, and resonance theory. Using the Universal Causal Code Formula (UCCF) as its core formalism, this theory defines each planetary system as a recursive unit composed of six primary causal components: material structure, energetic flow, temporal modulation, entropic dynamics, resonance functions, and symbolic encoding. The Earth–Moon subsystem is explored in depth as a case study of multi-scale synchronization, while outer planets and the Oort Cloud are treated as components of a wider solar causal membrane. This theoretical structure culminates in the formulation of a Universal Causal Systems Theory (UCST) that explains how complexity emerges, persists, or collapses across planetary, biological, and symbolic domains. The theory also integrates the Great Filter hypothesis into a general model of cross-scale selection dynamics, where causal coherence and entropic resilience serve as survival conditions for advanced systems. This framework aims to offer a unified ontology that bridges physics, cosmology, evolutionary biology, symbolic systems, and existential risk modeling—laying the groundwork for a future causal science of universal intelligence and survival.

License: CC-By Attribution 4.0 International

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