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2025
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| Online Access: | https://doi.org/10.5281/zenodo.17764122 |
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| _version_ | 1866901311285362688 |
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| author | Aldahlake, Rana |
| author_facet | Aldahlake, Rana |
| contents | <p>This paper proposes the Living Cosmos Hypothesis (LCH), a unified framework suggesting that the Universe exhibits self-organizing, adaptive, and information-driven behavior analogous to biological systems. Drawing from cosmology, thermodynamics, complexity theory, and astrobiology, the hypothesis synthesizes observational, mathematical, and conceptual evidence indicating that large-scale cosmic structures—such as galaxies, planetary systems, and interstellar material cycles—may follow emergent principles similar to metabolic networks and ecological feedback loops.</p> <p>The paper outlines testable predictions, including measurable entropy-management signatures, non-random large-scale structure patterns, information-preserving cosmic processes, and energy-regulation behaviors. The goal is not metaphorical comparison, but a rigorous scientific framework that encourages new models, simulations, and observational strategies to evaluate the possibility of a dynamic, self-regulating Universe.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17764122 |
| institution | Zenodo |
| language | |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Living Cosmos Hypothesis: Evidence, Dynamics, and Testable Predictions for a Self-Organizing Universe Aldahlake, Rana Living Cosmos Self-organizing systems Cosmology Complexity theory Thermodynamics Astrobiology Emergent behavior Universe dynamics Astronomy Astrophysics Complexity Science Cosmology Systems Theory <p>This paper proposes the Living Cosmos Hypothesis (LCH), a unified framework suggesting that the Universe exhibits self-organizing, adaptive, and information-driven behavior analogous to biological systems. Drawing from cosmology, thermodynamics, complexity theory, and astrobiology, the hypothesis synthesizes observational, mathematical, and conceptual evidence indicating that large-scale cosmic structures—such as galaxies, planetary systems, and interstellar material cycles—may follow emergent principles similar to metabolic networks and ecological feedback loops.</p> <p>The paper outlines testable predictions, including measurable entropy-management signatures, non-random large-scale structure patterns, information-preserving cosmic processes, and energy-regulation behaviors. The goal is not metaphorical comparison, but a rigorous scientific framework that encourages new models, simulations, and observational strategies to evaluate the possibility of a dynamic, self-regulating Universe.</p> |
| title | The Living Cosmos Hypothesis: Evidence, Dynamics, and Testable Predictions for a Self-Organizing Universe |
| topic | Living Cosmos Self-organizing systems Cosmology Complexity theory Thermodynamics Astrobiology Emergent behavior Universe dynamics Astronomy Astrophysics Complexity Science Cosmology Systems Theory |
| url | https://doi.org/10.5281/zenodo.17764122 |