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This theory defines a dynamic framework in which systems transition between multiple stability phases while maintaining adaptability and integrity. It supports phase-aware optimization, fault-tolerant response, and robust self-regulation in evolving environments.

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Adaptive Multiphase Stability Theory / 適応型多相安定理論

This theory models system stability as a dynamic interplay between multiple adaptive phases, each capable of adjusting structural tension and feedback intensity. The interaction of these phases enables resilience in unstable or chaotic conditions.

本理論は、複数の適応的相が構造的な緊張やフィードバックの強度を調整することによって、システムの安定性を動的に保つモデルです。これにより、不安定またはカオス的環境においても高い復元力を実現します。

Specialized Applications / 専門的応用

Applicable in fault-tolerant systems, decentralized coordination, resilient robotics, and adaptive infrastructure control systems.

耐障害システム、分散協調、ロボティクス、適応的インフラ制御などに応用可能です。

General Applications / 一般的応用

Useful for dynamic organizational modeling, adaptive planning frameworks, and responsive user-environment interfaces.

組織構造モデル、適応計画フレーム、ユーザー環境応答型インターフェースなどにも活用可能です。

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This theory defines a dynamic framework in which systems transition between multiple stability phases while maintaining adaptability and integrity. It supports phase-aware optimization, fault-tolerant response, and robust self-regulation in evolving environments.

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