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February 13, 20260 citationsOpen Access

Intrinsic Stability of Molecular Identity Under Repeated Exposure: A Structural Admissibility Condition for Identity-Level Persistence

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JVJorge Vasconcelos

Key Points

  • The aim is to define conditions under which molecular identity maintains stability during repeated exposures.
  • Defining structural admissibility conditions for molecular systems
  • Analyzing conditions for persistence across handling and storage cycles
  • Exploring the constraints on patentability related to molecular identities
  • Molecular identity must retain structural and functional integrity under repeated exposure.
  • Extrinsic factors like quenching and stabilization measures are not necessary for persistence.
  • Patentability criteria are influenced by the stability and identity of the molecular systems.

Abstract

Description This document establishes intrinsically stable molecular identity under repeated exposure as a structural admissibility condition for molecular systems claiming persistence across repeated handling, storage, transport, or operational cycles. The analysis is strictly non-constructive and does not disclose molecular structures, functional groups, synthetic pathways, stabilization chemistries, or environmental control strategies. It defines invariant boundary conditions under which a molecular identity must preserve structural and functional integrity across repeated exposure cycles without reliance on extrinsic quenching, suppression of intrinsic reactivity, or procedural stabilization measures. The document constrains patentability at the level of enablement, inventive step, and industrial applicability and applies uniformly across molecular domains. It defines necessity conditions only and does not claim sufficiency.

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Cite This Study

Jorge Vasconcelos (2026) studied this question.

synapsesocial.com/papers/698ebf6985a1ff6a93016e78https://doi.org/10.5281/zenodo.18611792
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  1. 1Additive-Independent Molecular Survivability: A Structural Admissibility Condition for Identity-Level Molecular Persistence2026
  2. 2Context-Independent Molecular Compatibility Without Operational Regimen Engineering: A Structural Admissibility Condition for Identity-Level Molecular Stability2026
  3. 3Intrinsic Survivability (Zero Additive Dependence): A Structural Admissibility Condition for Identity-Level Functional Persistence2026
  4. 4Intrinsic Interface Stability as a Structural Admissibility Condition for Heterogeneous Material Systems2026
  5. 5Electrochemical Storage with Intrinsically Stable Electrolyte–Interphase Systems: A Structural Admissibility Condition for Identity-Level Electrochemical Stability2026