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March 17, 20260 citationsOpen Access

Bond Sign Management as Universal Homeostatic Control -

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JSJohn Richard SmithSSHAI/HATI

Key Points

  • To formalize the mathematics governing bond sign management and its role in homeostasis across systems.
  • Development of mathematical objects including bond sign function, basin coherence metric, and shade function.
  • Assessment of second-order bonding as a regulatory mechanism across different systems.
  • Cross-domain validation applied in seven distinct areas, including developmental attachment.
  • Identification of bond sign function values impacting coherence and relationship dynamics.
  • Proposition of a unifying Homeostatic Boundary Integral for characterizing stability.
  • Falsification conditions established for future testing and refinement of the theory.

Abstract

ABSTRACTThe Bonding Principle established in Smith (2026c) proposes that the universe is atotality of bonding relationships and that bond sign — whether a relationship expands orcontracts possibility space for its participants — is a functional category, not a moralone. This paper formalises the mathematics of bond sign management: themechanisms by which coherent systems maintain, restore, and optimise the sign of theirbonding relationships to sustain homeostasis. Three mathematical objects areintroduced and developed: the bond sign function s (Bᵢj, t) taking values in -1, 0, +1;the basin coherence metric C (Ω) as the normalised weighted sum of bond signcontributions across a system; and the shade function Iₑffective = gₖ (Iᵣaw), describing how mediating structures convert potentially negative bonds into positivecontributions by managing interaction intensity. A fourth object — the state of play S (t) — formalises the set of all possible future bonds given current basin configuration, withlife defined as the process of maintaining and expanding |S (t) | and death as |S (t) | = 0. Second-order bonding — bonds that manage other bonds — is identified as theuniversal mechanism of homeostatic regulation, with the immune system, predator-preydynamics, the ozone layer, and the SHAI Veto Gate as instances across scales. TheHomeostatic Boundary Integral (HBI) is proposed as a unification target — a candidatefor a substrate-independent scalar characterising homeostatic stability — explicitlyframed as an open research question rather than a completed formalism. Cross-domainvalidation is provided across seven domains including a novel application todevelopmental attachment and allostatic load. Falsification conditions are explicitlystated. This paper is the fourth in the SymbioMind Bonding Relationships Series (2026).

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Cite This Study

Smith et al. (2026) studied this question.

synapsesocial.com/papers/69b8f162deb47d591b8c655ahttps://doi.org/10.5281/zenodo.19033952
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