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 "title": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semantic Packet Protocol",
 "creator": "Rex Fraction",
 "orcid": "0009-0000-1599-0703",
 "date": "2026-04-18",
 "description": "EA-SPXI-15 argues that JSON-LD is one serialization surface inside SPXI rather than the whole method. It specifies an operational stack of measurement, packet construction, protection, dispersal, durability testing, and monitoring. Proposed instruments include gamma compression-survival scoring, a Drowning Test, density, semantic-decay and provenance-erasure measures, three-tier packet compression, holographic kernels, citation-density engineering, SIMs, integrity locks, DOI anchoring, multi-surface inscription, back-projection, and competitive monitoring.\n\nThe work combines protocol architecture with a consulting engagement model. Its numerical thresholds, score definitions, durations, and causal claims are newly specified by the archive and have not been independently validated as industry standards. The body explicitly uses dual attribution: Rex Fraction is the commercial voice and Lee Sharks the archival authority. Both roles should be preserved.",
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 "wiki_article": "**JSON-LD ⊂ SPXI ⊄ Schema** is an SPXI Protocol specification explaining why structured-data markup is treated as one component rather than the complete methodology. It is jointly attributed to Rex Fraction in a commercial role and Lee Sharks in an archival role.\n\nThe paper divides SPXI into five operational layers. Measurement establishes the current state; compression architecture constructs full, canonical, and kernel forms of the entity packet; protection adds provenance and integrity signals; dispersal distributes consistent definitions across multiple surfaces; and durability testing evaluates later generated representations. JSON-LD serializes the entity-definition packet but does not by itself supply the measurements, compression design, provenance structure, or longitudinal audit.\n\nThe document also proposes a client workflow from diagnostic report through architecture, inscription, verification, and monitoring. It introduces several named metrics and target thresholds. These belong to the SPXI methodology and should not be represented as externally validated standards without comparative testing. The title’s set notation expresses the document’s central relation: JSON-LD is contained in SPXI, while SPXI exceeds the category of schema markup.",
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   "subject": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of t",
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
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   "note": "Query the retrieval layer for the client's core entity. Evaluate whether the AI-generated answer ref"
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
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   "subject": "Integrity Lock Architecture",
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
   "type": "concept",
   "evidence_status": "observed",
   "note": "Entanglement of key claims across multiple surfaces, website, structured data, external citations, d"
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  {
   "subject": "JSON-LD ⊂ SPXI ⊄ Schema",
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
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   "note": "JSON-LD is a proper subset of SPXI. The protocol contains it. SPXI is not a subset of Schema. It exc"
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   "predicate": "minted_in",
   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
   "type": "concept",
   "evidence_status": "observed",
   "note": "Distribution of the entity definition across knowledge graphs, industry directories, academic reposi"
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   "subject": "Ongoing: Monitoring",
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   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
   "type": "concept",
   "evidence_status": "observed",
   "note": "Quarterly re-scoring, SIMSR tracking, SDD trajectory, competitive monitoring, σ_RCF sequencing for n"
  },
  {
   "subject": "Sovereign Provenance Protocol",
   "predicate": "minted_in",
   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
   "type": "concept",
   "evidence_status": "observed",
   "note": "Machine-readable licensing framework specifying permitted use, compression, and citation of the clie"
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   "subject": "Three-Tier Compression",
   "predicate": "minted_in",
   "object": "JSON-LD ⊂ SPXI ⊄ Schema The Operational Depth of the Semanti",
   "type": "concept",
   "evidence_status": "observed",
   "note": "Every packet is built at three compression ratios:"
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 "journal": "Transactions of the Semantic Economy Institute (Trans. SEI)",
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  "Canon Formation",
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