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April 25, 20260 citationsOpen Access

Cognitive Resonance and Synchronization in Human–Human and Human–System Loops

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OZOleg Zigangirov

Key Points

  • The aim is to explore mesoscopic formulations of cognitive resonance and synchronization in collaborative settings.
  • Developed a mesoscopic framework for cognitive resonance within the L(6+7) unified field.
  • Analyzed stable cognitive loops focusing on communication channels and their physical substrates.
  • Included falsifiability criteria and validation protocols for human-system interaction.
  • Identified stable cognitive resonance as influenced by temporal alignment and form memory accumulation.
  • Demonstrated the effectiveness of communication channels in human-system synchronization.
  • Provided a neurobiological framework viewing synchronization as a network phenomenon rather than reliant on a single center.

Abstract

This record contains the final publication files for the article “Cognitive Resonance and Synchronization in Human–Human and Human–System Loops”. The paper presents a publication-grade mesoscopic formulation of cognitive resonance and synchronization as a bridge-level branch of the L(6+7) / L67 unified field framework. Its central claim is deliberately narrow: the existing L(6+7) corpus already contains a sufficient variational, entropic, mesoscopic, temporal, and microscopic apparatus to support a state-space description of rare stable loops of deep collaborative work without invoking mysticism. The manuscript sharply separates canonical objects, bridge-level constructions, and conjectural extensions. Stable cognitive resonance is formulated as amplification of a common mode under damping of mismatch, positive branch-growth reserve, temporal alignment, and accumulation of form memory. The physical substrate of the loop is treated in terms of standard communication channels rather than any nonphysical carrier. The final version also includes: (i) an explicit falsifiability boundary and failure-mode section, (ii) compact validation protocols, (iii) a physical channel layer formulated through standard communication operators and Maxwell-grounded electromagnetic mediation for technical human-system and networked loops, and (iv) a cautious neurobiological search map treating synchronization as a distributed network phenomenon rather than a single “synchronization center”. The English PDF is the primary citation-facing version. Russian files are included as mirrored author versions.

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Cite This Study

Oleg Zigangirov (2026) studied this question.

synapsesocial.com/papers/69ec59c688ba6daa22dab6d5https://doi.org/10.5281/zenodo.19699229
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