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February 17, 2026Open Access

Bidirectional Temporal Constraint Dynamics and the Emergence of Syntropic Order in Nonequilibrium Systems

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Authors

VSVenkata Subramaniam

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Overview

This analysis develops a variational framework demonstrating entropy-driven order in nonequilibrium systems, suggesting new pathways for understanding dynamical behavior.

Key Points

  • To develop a variational framework for examining physical evolution under entropy-driven constraints.
  • Introduced a combined action-entropy functional that includes entropy density.
  • Derived modified Euler–Lagrange equations to describe system evolution.
  • Analyzed entropy gradients and dissipative structures.
  • Syntropic behavior emerges as entropy-reducing trajectories appear as stationary solutions.
  • The framework enables a new understanding of how order forms in nonequilibrium systems.
  • Demonstrates the role of temporal symmetry in structure formation.

Cite This Study

Venkata Subramaniam (2026) studied this question.

synapsesocial.com/papers/6994058c4e9c9e835dfd6685https://doi.org/10.5281/zenodo.18650332
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