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New theory models system metamorphosis with three levels of hysteresis

A new paper introduces "Level 3 hysteresis Theory," a mathematical model for understanding metamorphosis in nonlinear dissipative systems. This theory extends classical hysteresis concepts by proposing three levels: inertia, permanent changes, and metamorphosis, where a system undergoes a qualitative leap into a new state. The model incorporates parameters like state difference (ΔS), a dialogue factor ([D]), and an emergent breakdown operator (Ψ) to describe this transformation, laying groundwork for a new field called computational emergenology. AI

IMPACT Introduces a novel framework for understanding complex system transformations, potentially applicable to AI development and emergent behaviors.

RANK_REASON The cluster contains a research paper proposing a new mathematical model. [lever_c_demoted from research: ic=1 ai=0.7]

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New theory models system metamorphosis with three levels of hysteresis

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  1. Mastodon — sigmoid.social TIER_1 English(EN) · [email protected] ·

    Level 3 hysteresis Theory: a mathematical model of variability and metamorphosis in nonlinear dissipative systems Level 3 hysteresis Theory: a mathematical mode

    Level 3 hysteresis Theory: a mathematical model of variability and metamorphosis in nonlinear dissipative systems Level 3 hysteresis Theory: a mathematical model of variability and metamorphosis in nonlinear dissipative systems Authors: O. Mirny (BORODIN), Ai-assistant Deepsea (K…