{
    "model": {
        "rank": 3241,
        "code": "thing-q177013",
        "model_id": "vr.tr.subatomic-particle",
        "name": "subatomic particle",
        "purpose": "Enable an AI agent to identify a subatomic particle species or candidate, assess its physical state and evidential status, and determine which interactions, measurements or manipulations are physically applicable.",
        "family": "Thing Registry",
        "category": "Physical world and living systems",
        "status": "research-draft",
        "kind": "thing",
        "plane": "PHY",
        "domain": "PHY.OBJ",
        "industry": "",
        "version": "",
        "url": "/models/thing/q177013/",
        "tier": 2,
        "score": 89,
        "payload": {
            "layer": "wikidata",
            "aliases": [
                "indivisible particle",
                "strange particle"
            ],
            "aliasCount": 2,
            "merged": 2,
            "knownIn": 89,
            "facets": null,
            "markers": [],
            "lexicalClass": "",
            "senseRank": null,
            "alsoRegisteredAs": null,
            "source": {
                "dataset": "wikidata",
                "item": "Q177013",
                "url": "https://www.wikidata.org/wiki/Q177013",
                "license": "CC0 1.0"
            }
        },
        "research": {
            "vercy": "1.0-draft",
            "publication": {
                "status": "research-draft",
                "adjudicationStatus": "unreviewed",
                "publishableCanonical": false,
                "generatedAt": "2026-09-07T14:14:20Z",
                "providers": [
                    "Codex"
                ],
                "breadth": "recalled by Codex without web access - no source was read",
                "missingProviders": [],
                "pass": 2,
                "cost": {
                    "grok": {
                        "seconds": 27.6,
                        "error": "Reading additional input from stdin...\nOpenAI Codex v0.153.3\n--------\nworkdir: R:\\02_PROJECTS\\02_Meta_Models_Platforms\\Ver.cy\\current\\thing-registry-backlog\nmodel: gpt-6-astra\nprovider: openai\napproval: never\nsandbox: read-only\nreasoning effort: none\nreasoning summaries: none\nsession id: 01a07c36-dc38-7fc2-bc53-9cc62c47d97e\n--------\nuser\nDescribe what is already known about one registered thing. Answer as JSON only, no prose around it.\n\nThing: subatomic particle\nSense to describe: (none recorded)\nDomain code: PHY.OBJ\nAlso known as: (none)\n\n\nContext for this batch of 546 things:\n# Batch 003: 10",
                        "usd": 0,
                        "recall": true
                    },
                    "codex": {
                        "seconds": 95.4,
                        "error": "Reading additional input from stdin...\nOpenAI Codex v0.153.3\n--------\nworkdir: R:\\02_PROJECTS\\02_Meta_Models_Platforms\\Ver.cy\\current\\thing-registry-backlog\nmodel: gpt-6-astra\nprovider: openai\napproval: never\nsandbox: read-only\nreasoning effort: none\nreasoning summaries: none\nsession id: 01a07c36-dc43-7e72-8bd7-ae4e0694f047\n--------\nuser\nYou are drafting a Vercy meta-model for one registered thing. Answer as JSON only, no prose around it.\n\nThing: subatomic particle\nRegistry id: vr.tr.subatomic-particle\nPlane / domain: PHY / PHY.OBJ\nRegistry definition: (none recorded)\nNames folded into this en"
                    }
                }
            },
            "metaModel": {
                "id": "THING-Q177013",
                "registryId": "vr.tr.subatomic-particle",
                "name": "subatomic particle",
                "version": "0.1.0-research.1",
                "entryKind": "thing",
                "family": "Thing Registry",
                "domain": [
                    "PHY.OBJ"
                ],
                "status": "research-draft"
            },
            "canonicalUrl": "https://ver.cy/models/thing/q177013/",
            "model": {
                "registry_id": "vr.tr.subatomic-particle",
                "name": "subatomic particle",
                "purpose": "Enable an AI agent to identify a subatomic particle species or candidate, assess its physical state and evidential status, and determine which interactions, measurements or manipulations are physically applicable.",
                "definition": "A subatomic particle is an elementary or composite physical entity studied at the level of atomic constituents and their interactions, including electrons, quarks, photons, protons and neutrons.",
                "scope_statement": "This model owns the physical classification, intrinsic properties, quantum state, interactions and identification evidence of elementary and composite subatomic particles, distinguishing a particle species from a particular preparation, detection event or inferred candidate.",
                "in_scope": [
                    "Elementary particle species and composite subatomic particles, including protons and neutrons",
                    "Particle-antiparticle relationships and conserved or approximately conserved quantum numbers",
                    "Intrinsic properties, quantum states and preparation-dependent quantities",
                    "Production, scattering, transformation and decay processes",
                    "Evidence connecting observed detector signatures to particle hypotheses"
                ],
                "out_of_scope": [
                    "Whole atoms, molecules and bulk materials as independently modelled systems",
                    "Detector, accelerator and experimental apparatus design and operation",
                    "Quantum fields and physical theories as standalone mathematical models",
                    "Condensed-matter quasiparticles treated as collective excitations of a material",
                    "Complete nuclear structure and isotope catalogues, while retaining links to nuclear constituents"
                ],
                "distinguishing_features": [
                    "An entity can qualify as subatomic without having a measurable geometric diameter; classification must not depend on a literal size comparison with an atom.",
                    "An elementary-particle classification requires distinguishing absence of observed internal structure from proof that no deeper structure exists.",
                    "A composite particle such as a proton has constituent structure and bound-state properties; it must not be assigned elementary status merely because it appears as one detected particle.",
                    "A detector track, calorimeter deposit or missing-momentum signature is evidence for a particle hypothesis, not itself a particle.",
                    "A particle species, a prepared quantum state and an individual detection event must remain distinguishable; identical particles do not acquire intrinsic serial identities from event labels."
                ],
                "characteristics": [
                    {
                        "name": "Composition class",
                        "kind": "category",
                        "unit_or_values": "elementary within the stated framework | composite | unresolved",
                        "why_it_matters": "Determines whether constituent structure must be represented and qualifies the strength of an elementary-particle claim."
                    },
                    {
                        "name": "Particle family",
                        "kind": "category",
                        "unit_or_values": "lepton, quark, gauge boson, scalar boson, hadron or explicitly specified alternative; classification framework required",
                        "why_it_matters": "Supports recognition without assuming that every candidate belongs to an established family."
                    },
                    {
                        "name": "Rest mass",
                        "kind": "measurement",
                        "unit_or_values": "eV/c², MeV/c² or GeV/c²; value, uncertainty or limit with mass definition",
                        "why_it_matters": "Constrains kinematics and identification while accommodating bounds and definition-dependent values."
                    },
                    {
                        "name": "Intrinsic spin",
                        "kind": "category",
                        "unit_or_values": "spin quantum number j, with angular momentum expressed in units of ℏ",
                        "why_it_matters": "Constrains quantum statistics, allowed states and interaction patterns."
                    },
                    {
                        "name": "Electric charge",
                        "kind": "measurement",
                        "unit_or_values": "multiples of the elementary charge e",
                        "why_it_matters": "Constrains electromagnetic response and possible detector signatures."
                    },
                    {
                        "name": "Additional quantum numbers",
                        "kind": "category",
                        "unit_or_values": "named quantum numbers or symmetry representations, with conventions and conservation conditions",
                        "why_it_matters": "Distinguishes species and constrains reactions without treating every label as universally conserved."
                    },
                    {
                        "name": "Antiparticle relationship",
                        "kind": "relation",
                        "unit_or_values": "distinct antiparticle | self-conjugate | unresolved, linked to species",
                        "why_it_matters": "Supports charge-conjugation comparisons and interpretation of production or annihilation processes."
                    },
                    {
                        "name": "Lifetime or decay width",
                        "kind": "measurement",
                        "unit_or_values": "proper mean lifetime in s or decay width in eV; uncertainty, bound or qualified stability statement",
                        "why_it_matters": "Determines whether direct transport, displaced decay or indirect reconstruction is relevant."
                    },
                    {
                        "name": "Four-momentum",
                        "kind": "state",
                        "unit_or_values": "energy in eV and momentum components in eV/c, with reference frame and uncertainty",
                        "why_it_matters": "Enables conservation checks and separates preparation-dependent motion from intrinsic mass."
                    },
                    {
                        "name": "Spin and coherence state",
                        "kind": "state",
                        "unit_or_values": "polarization, helicity, state amplitudes or density operator, with basis and preparation context",
                        "why_it_matters": "Supports predictions that depend on the prepared state rather than species alone."
                    },
                    {
                        "name": "Identification status",
                        "kind": "state",
                        "unit_or_values": "established species | hypothetical species | event candidate | ambiguous assignment | excluded hypothesis",
                        "why_it_matters": "Prevents inferred candidates and theoretical proposals from being treated as confirmed observations."
                    }
                ],
                "affordances": [
                    "Classify a species or candidate using composition, quantum numbers and available evidence.",
                    "Check whether a proposed production, scattering or decay channel is compatible with kinematics and applicable conservation laws.",
                    "Compare competing particle identifications against measured signatures and stated uncertainties.",
                    "Determine whether a specified preparation permits transport, deflection, trapping or state measurement.",
                    "Reconstruct parent-particle hypotheses from decay products while retaining ambiguity and missing information.",
                    "Update property estimates and identification status when new measurements or revised interpretations become available."
                ]
            },
            "sources": [],
            "structure": {
                "bundles": [
                    {
                        "id": "particle-identity-and-composition",
                        "name": "Particle identity and composition",
                        "description": "Establishes what kind of particle is represented and separates species identity from a particular observation.",
                        "rationale": "Subatomic classification depends on composition and physical identity, while observations often support several candidate assignments.",
                        "layers": [
                            {
                                "id": "species-and-occurrence",
                                "name": "Species and occurrence",
                                "description": "Distinguishes a particle kind from a prepared state or detection candidate.",
                                "findings": [
                                    {
                                        "id": "identity-level",
                                        "name": "Identity level",
                                        "description": "Record whether the subject is a species, a preparation or an event-level candidate, together with any unresolved identification.",
                                        "questions": [
                                            {
                                                "text": "Does this record describe a particle species, a prepared quantum state or a candidate inferred from one event?",
                                                "kind": "definition",
                                                "id": "identity-level-q01"
                                            },
                                            {
                                                "text": "Which observations distinguish the proposed species from other particles that could produce the same signature?",
                                                "kind": "boundary",
                                                "id": "identity-level-q02"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "constituent-structure",
                                "name": "Constituent structure",
                                "description": "Represents elementary status, composite structure and links to constituent species.",
                                "findings": [
                                    {
                                        "id": "composition-evidence",
                                        "name": "Composition evidence",
                                        "description": "Record constituent descriptions or limits on resolved structure, including the framework and probed scale.",
                                        "questions": [
                                            {
                                                "text": "Is this particle treated as elementary or composite, and within which physical framework?",
                                                "kind": "definition",
                                                "id": "composition-evidence-q01"
                                            },
                                            {
                                                "text": "Which measurements establish constituent structure or constrain departures from pointlike behaviour, and at what scale?",
                                                "kind": "provenance",
                                                "id": "composition-evidence-q02"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "intrinsic-properties-and-symmetries",
                        "name": "Intrinsic properties and symmetries",
                        "description": "Captures the properties used to distinguish species and constrain their physical behaviour.",
                        "rationale": "Mass, spin, charges and conjugation relationships determine which particle assignments and processes are plausible.",
                        "layers": [
                            {
                                "id": "mass-spin-and-charge",
                                "name": "Mass, spin and charge",
                                "description": "Records intrinsic property assignments with their definitions and evidential limits.",
                                "findings": [
                                    {
                                        "id": "intrinsic-property-assignment",
                                        "name": "Intrinsic property assignment",
                                        "description": "Keep mass, spin and electric charge distinct from energy, orbital angular momentum and other state-dependent quantities.",
                                        "questions": [
                                            {
                                                "text": "What mass, spin and electric-charge values or limits apply, with which units, conventions and uncertainties?",
                                                "kind": "measurement",
                                                "id": "intrinsic-property-assignment-q01"
                                            },
                                            {
                                                "text": "Which assignments are directly constrained by experiment, and which depend on a theoretical interpretation?",
                                                "kind": "provenance",
                                                "id": "intrinsic-property-assignment-q02"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "quantum-numbers-and-conjugation",
                                "name": "Quantum numbers and conjugation",
                                "description": "Describes additional symmetry labels and the relationship to an antiparticle.",
                                "findings": [
                                    {
                                        "id": "symmetry-labels",
                                        "name": "Symmetry labels",
                                        "description": "Attach quantum numbers and antiparticle claims to explicit conventions and applicable interaction regimes.",
                                        "questions": [
                                            {
                                                "text": "Which additional quantum numbers distinguish this species, and under which interactions are they conserved or violated?",
                                                "kind": "definition",
                                                "id": "symmetry-labels-q01"
                                            },
                                            {
                                                "text": "Is the antiparticle distinct, identical to the particle or unresolved, and what evidence supports that assignment?",
                                                "kind": "provenance",
                                                "id": "symmetry-labels-q02"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "quantum-state-and-kinematics",
                        "name": "Quantum state and kinematics",
                        "description": "Represents the preparation-dependent information needed to predict motion and measurement outcomes.",
                        "rationale": "A species label alone cannot specify momentum, polarization, coherence or correlations with other particles.",
                        "layers": [
                            {
                                "id": "motion-and-reference-frame",
                                "name": "Motion and reference frame",
                                "description": "Makes energy and momentum meaningful through explicit frames, uncertainties and reconstruction assumptions.",
                                "findings": [
                                    {
                                        "id": "kinematic-state",
                                        "name": "Kinematic state",
                                        "description": "Record measured or inferred four-momentum without confusing total energy with rest mass.",
                                        "questions": [
                                            {
                                                "text": "What energy and momentum are assigned, in which reference frame and with what correlated uncertainties?",
                                                "kind": "measurement",
                                                "id": "kinematic-state-q01"
                                            },
                                            {
                                                "text": "Which components were measured directly and which were inferred using a mass hypothesis or event constraints?",
                                                "kind": "provenance",
                                                "id": "kinematic-state-q02"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "state-preparation-and-correlations",
                                "name": "State preparation and correlations",
                                "description": "Captures spin preparation, mixtures, superpositions and correlations relevant to the intended measurement.",
                                "findings": [
                                    {
                                        "id": "prepared-quantum-state",
                                        "name": "Prepared quantum state",
                                        "description": "Record the state basis, preparation procedure and whether an independent single-particle description is adequate.",
                                        "questions": [
                                            {
                                                "text": "Which polarization, helicity or other quantum-state information is established by the preparation, and in what basis?",
                                                "kind": "measurement",
                                                "id": "prepared-quantum-state-q01"
                                            },
                                            {
                                                "text": "Must entanglement, mixing or environmental coupling be represented to predict the proposed measurement?",
                                                "kind": "boundary",
                                                "id": "prepared-quantum-state-q02"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "interactions-production-and-decay",
                        "name": "Interactions, production and decay",
                        "description": "Describes how the particle can be produced, interact and transform under specified conditions.",
                        "rationale": "An agent must distinguish a channel that is permitted from one that is probable or experimentally accessible.",
                        "layers": [
                            {
                                "id": "production-and-scattering",
                                "name": "Production and scattering",
                                "description": "Connects interaction channels to initial states, energy thresholds and measured probabilities.",
                                "findings": [
                                    {
                                        "id": "reaction-feasibility",
                                        "name": "Reaction feasibility",
                                        "description": "Evaluate production and scattering using the specified participants, kinematics and applicable selection rules.",
                                        "questions": [
                                            {
                                                "text": "Which initial particles, target conditions and collision energies permit the proposed reaction?",
                                                "kind": "action",
                                                "id": "reaction-feasibility-q01"
                                            },
                                            {
                                                "text": "What cross-section measurements or calculations apply at those energies, with which uncertainties and assumptions?",
                                                "kind": "measurement",
                                                "id": "reaction-feasibility-q02"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "lifetime-and-decay-channels",
                                "name": "Lifetime and decay channels",
                                "description": "Represents stability claims, decay rates and observable daughter-particle channels.",
                                "findings": [
                                    {
                                        "id": "decay-behaviour",
                                        "name": "Decay behaviour",
                                        "description": "Qualify stability by evidence and distinguish proper lifetime, observed flight time and channel branching fractions.",
                                        "questions": [
                                            {
                                                "text": "What proper lifetime, decay width or lifetime bound is supported, and under what environmental conditions?",
                                                "kind": "measurement",
                                                "id": "decay-behaviour-q01"
                                            },
                                            {
                                                "text": "Which decay channels and branching fractions are established, and which final-state particles may escape detection?",
                                                "kind": "measurement",
                                                "id": "decay-behaviour-q02"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "observation-and-physical-access",
                        "name": "Observation and physical access",
                        "description": "Connects particle hypotheses to detector evidence and determines feasible physical operations.",
                        "rationale": "Particles are often identified indirectly, and applicable manipulations depend on charge, lifetime, binding and preparation.",
                        "layers": [
                            {
                                "id": "signatures-and-inference",
                                "name": "Signatures and inference",
                                "description": "Separates detector observables from the hypotheses used to interpret them.",
                                "findings": [
                                    {
                                        "id": "identification-evidence",
                                        "name": "Identification evidence",
                                        "description": "Link tracks, deposited energy, timing, decay topology or missing momentum to candidate assignments and alternatives.",
                                        "questions": [
                                            {
                                                "text": "Which detector observables support this identification, and which calibration or reconstruction assumptions enter?",
                                                "kind": "provenance",
                                                "id": "identification-evidence-q01"
                                            },
                                            {
                                                "text": "What alternative particles or backgrounds remain compatible with the observations?",
                                                "kind": "boundary",
                                                "id": "identification-evidence-q02"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "transport-confinement-and-measurement",
                                "name": "Transport, confinement and measurement",
                                "description": "Determines which operations are meaningful for the particle in its actual physical context.",
                                "findings": [
                                    {
                                        "id": "accessible-operations",
                                        "name": "Accessible operations",
                                        "description": "Condition proposed manipulation on the particle's interactions, lifetime and availability as an isolated or bound constituent.",
                                        "questions": [
                                            {
                                                "text": "Can this particle exist as an isolated detectable state in the stated conditions, or must access proceed through a bound system or reaction products?",
                                                "kind": "boundary",
                                                "id": "accessible-operations-q01"
                                            },
                                            {
                                                "text": "Which deflection, transport, trapping or measurement operations are feasible given its charge, lifetime, energy and coupling to the apparatus?",
                                                "kind": "action",
                                                "id": "accessible-operations-q02"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "evidence-and-external-alignment",
                        "name": "Evidence and external alignment",
                        "description": "What the world already says about this thing, gathered so the model can be checked against it.",
                        "rationale": "A model that cannot be lined up against existing standards, identifiers and practice cannot be adopted by anyone who already uses them.",
                        "layers": [
                            {
                                "id": "reported-evidence",
                                "name": "Reported evidence",
                                "description": "Findings from the breadth pass, kept separate from the structural claims.",
                                "findings": [
                                    {
                                        "id": "evidence-confidence-notes",
                                        "name": "Check these first",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            "\"Subatomic\" is a conventional scope term, not a strict diameter threshold; elementary particles have no established finite size.",
                                            "The listed kinds cover familiar Standard Model particles and hadrons but are not exhaustive of composite systems.",
                                            "Values are recalled approximations, not researched measurements; precision work should verify current Particle Data Group values, particularly neutron lifetime."
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-confidence-notes-q01",
                                                "text": "Which of these check these first hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-kinds",
                                        "name": "Kinds and varieties",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            "Quarks",
                                            "Leptons",
                                            "Gauge bosons",
                                            "Higgs boson",
                                            "Baryons",
                                            "Mesons"
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-kinds-q01",
                                                "text": "Which of these kinds and varieties hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-identifiers",
                                        "name": "Identifiers and schemes",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            {
                                                "scheme": "Particle Data Group Monte Carlo particle numbering scheme",
                                                "value_or_pattern": "Electron: 11; photon: 22; proton: 2212; neutron: 2112",
                                                "note": "Integer codes identify particle species for simulation and data exchange; many antiparticles use the negative of the corresponding particle code."
                                            }
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-identifiers-q01",
                                                "text": "Which of these identifiers and schemes hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-real-world-use",
                                        "name": "Real-world use",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            "Electron beams in microscopy, lithography and materials processing",
                                            "Proton beams in cancer radiotherapy",
                                            "Neutrons in materials analysis and nuclear reactors",
                                            "Positron annihilation in positron emission tomography",
                                            "Particle collisions and scattering in fundamental physics research"
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-real-world-use-q01",
                                                "text": "Which of these real-world use hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-measurements",
                                        "name": "Typical measurements",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            {
                                                "quantity": "Rest mass",
                                                "typical_range": "Species-dependent: photon 0; electron approximately 0.511; proton approximately 938.27",
                                                "unit": "MeV/c²"
                                            },
                                            {
                                                "quantity": "Electric charge",
                                                "typical_range": "Quarks: +2/3 or −1/3; electron: −1; proton: +1; neutron and photon: 0; antiparticles have opposite charge",
                                                "unit": "elementary charge e"
                                            },
                                            {
                                                "quantity": "Spin quantum number",
                                                "typical_range": "Examples: electron, quarks, proton and neutron 1/2; photon 1; Higgs boson 0",
                                                "unit": "dimensionless"
                                            },
                                            {
                                                "quantity": "Mean lifetime",
                                                "typical_range": "Ranges from extremely short-lived resonances to particles with no observed decay; free neutron approximately 880",
                                                "unit": "s"
                                            }
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-measurements-q01",
                                                "text": "Which of these typical measurements hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-failure-modes-and-hazards",
                                        "name": "Failure modes and hazards",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            "Sufficiently energetic particle radiation can ionize matter, damaging living tissue and electronic components.",
                                            "Neutrons and sufficiently energetic particle beams can activate materials, producing radioactive nuclides.",
                                            "Particle beams can generate secondary radiation and deposit enough energy to damage equipment.",
                                            "Decay and annihilation can produce penetrating radiation; these are physical processes rather than equipment failure modes."
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-failure-modes-and-hazards-q01",
                                                "text": "Which of these failure modes and hazards hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    },
                                    {
                                        "id": "evidence-neighbours",
                                        "name": "Neighbouring kinds and how to tell them apart",
                                        "description": "Recalled without web access and unsourced; every item is a lead to verify.",
                                        "evidence": [
                                            {
                                                "name": "Elementary particle",
                                                "difference": "Has no established internal constituent structure; subatomic particles also include composite objects such as protons."
                                            },
                                            {
                                                "name": "Atom",
                                                "difference": "An atom comprises a nucleus and bound electrons; subatomic particles include its constituents and other particle species."
                                            },
                                            {
                                                "name": "Atomic nucleus",
                                                "difference": "A nucleus is a bound nuclear system of protons and neutrons, with ordinary hydrogen having a single proton; it overlaps with the broader category of composite subatomic objects."
                                            },
                                            {
                                                "name": "Quasiparticle",
                                                "difference": "A quasiparticle is an effective excitation within a material or many-body system, rather than an independently existing vacuum particle species."
                                            },
                                            {
                                                "name": "Radiation",
                                                "difference": "Radiation describes energy propagation or emission; a particle species can participate in radiation without being synonymous with it."
                                            }
                                        ],
                                        "questions": [
                                            {
                                                "id": "evidence-neighbours-q01",
                                                "text": "Which of these neighbouring kinds and how to tell them apart hold for the sense of subatomic particle this model covers, and on what evidence?",
                                                "kind": "provenance"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    }
                ]
            },
            "openQuestions": [
                "Does the registry intend this entry to include entire atomic nuclei and exotic few-body bound systems, or should those be owned by neighbouring models?",
                "Which existing Vercy models already own elementary particles, composite particles, bosons or specific species, and which properties should be inherited through links?",
                "How should flavour states, mass eigenstates and oscillating neutral systems be represented without conflating species identity with state preparation?",
                "What evidence and terminology should distinguish established particles, resonances, hypothetical particles and virtual contributions to calculations?",
                "Which authoritative property compilations and primary measurements should supply values, uncertainties and revision provenance for the researched model?"
            ],
            "statistics": {
                "bundles": 6,
                "layers": 11,
                "findings": 17,
                "questions": 27
            }
        },
        "draft": {
            "generator": "vr.draft.v3",
            "status": "draft-generated",
            "researched": false,
            "archetype": "device, machine or tool",
            "method": "Written from the archetype playbook - what this kind of thing needs beyond identity and provenance - and from the structure that recurred across 6,333 models already researched by two engines. Applied to this entry by rule. No source was read for this thing and no claim here is researched. This entry carries no facets of its own, so they were inferred from its domain - a guess about a whole domain applied to one thing.",
            "facetsInferred": true,
            "nextPass": "A researcher replaces this draft with a sourced specification. Treat every sentence below as a proposal to argue with.",
            "purpose": "Give an agent a durable, checkable way to recognise a subatomic particle, record what state it is in, and decide what may be done with it.",
            "whatItIs": "Enable an AI agent to identify a subatomic particle species or candidate, assess its physical state and evidential status, and determine which interactions, measurements or manipulations are physically applicable.",
            "characteristics": {
                "substance": "material",
                "origin": "manufactured",
                "agency": "inert",
                "mobility": "varies"
            },
            "whatYouCanDoWithIt": [
                "observed and measured"
            ],
            "distinguishingFeatures": [
                "Names folded into this entry, which a task may need to split apart again: indivisible particle, strange particle.",
                "2 finer distinctions are held as aliases rather than separate entries, because telling them apart needs a task that asks for it.",
                "Described in 89 Wikipedia languages, which is a measure of how widely the thing is known, not of how important it is."
            ],
            "openQuestionsForResearch": [
                "Which of the bundles below does a real task actually need, and which are ceremony?",
                "What does this thing have that the facets do not capture at all?",
                "Which neighbouring kind is most often confused with a subatomic particle, and on what evidence are they told apart?"
            ],
            "whatItIsMadeOf": "matter you can touch",
            "physicalCharacter": [
                "Mobility varies between examples.",
                "Does nothing on its own; everything it does, something else did to it.",
                "These come from the domain this entry sits in rather than from the entry itself, so treat them as a first guess about the whole domain applied to one thing."
            ],
            "whatCanBeDoneWithIt": [
                "observe it, measure it, record its state"
            ],
            "howItIsRecognised": [
                "Recognised by form, by the arrangement of its controls, and by markings - a plate, a model number, a certification mark. Form alone rarely separates two models that do very different things."
            ],
            "relatedModels": [
                {
                    "relation": "covers",
                    "note": "Finer kinds folded into this entry because telling them apart needs a task that asks for it. Each is a model waiting to be split out when one does.",
                    "targets": [
                        "indivisible particle",
                        "strange particle"
                    ]
                }
            ],
            "standing": "Described in 89 Wikipedia languages, which measures how widely it is written about rather than how important or how common it is. 2 finer distinctions are held inside this entry as names rather than as separate models.",
            "structure": {
                "bundles": [
                    {
                        "id": "identity-and-classification",
                        "name": "Identity, naming and classification",
                        "description": "How an agent tells one subatomic particle from another, and a subatomic particle from things that resemble it.",
                        "rationale": "Recognition comes before every other claim. Without stable identity nothing else in the model can be trusted to be about the same thing twice.",
                        "layers": [
                            {
                                "id": "naming-and-identifiers",
                                "name": "Names and identifiers",
                                "description": "The names this thing goes by and the identifiers that survive translation and time.",
                                "findings": [
                                    {
                                        "id": "preferred-name-and-aliases",
                                        "name": "Preferred name, aliases and local names",
                                        "description": "Which name to use, which names mean the same thing, and which merely sound similar.",
                                        "questions": [
                                            {
                                                "id": "preferred-name-and-aliases-q01",
                                                "text": "What identifies and describes the name of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "preferred-name-and-aliases-q02",
                                                "text": "Who or what asserted this about the name of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "preferred-name-and-aliases-q03",
                                                "text": "What may an agent decide or do once the name of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    },
                                    {
                                        "id": "stable-identifiers",
                                        "name": "Stable identifiers and external keys",
                                        "description": "Identifiers that keep pointing at this kind of thing across systems and languages.",
                                        "questions": [
                                            {
                                                "id": "stable-identifiers-q01",
                                                "text": "What identifies and describes an identifier for a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "stable-identifiers-q02",
                                                "text": "Who or what asserted this about an identifier for a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "stable-identifiers-q03",
                                                "text": "What may an agent decide or do once an identifier for a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "classification-and-granularity",
                                "name": "Classification and granularity",
                                "description": "Where a subatomic particle sits among kinds, and how finely a task needs to cut it.",
                                "findings": [
                                    {
                                        "id": "kind-and-parents",
                                        "name": "Kind, parents and neighbouring kinds",
                                        "description": "The classes this thing belongs to and the ones it is next to.",
                                        "questions": [
                                            {
                                                "id": "kind-and-parents-q01",
                                                "text": "What identifies and describes the kind of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "kind-and-parents-q02",
                                                "text": "Who or what asserted this about the kind of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "kind-and-parents-q03",
                                                "text": "What may an agent decide or do once the kind of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    },
                                    {
                                        "id": "distinguishing-features",
                                        "name": "Distinguishing features",
                                        "description": "What separates a subatomic particle from the things most often confused with it.",
                                        "questions": [
                                            {
                                                "id": "distinguishing-features-q01",
                                                "text": "What identifies and describes what distinguishes a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "distinguishing-features-q02",
                                                "text": "Who or what asserted this about what distinguishes a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "distinguishing-features-q03",
                                                "text": "What may an agent decide or do once what distinguishes a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "form-and-composition",
                        "name": "Form, composition and condition",
                        "description": "What a subatomic particle is made of, what shape and size it takes, and what state it is in.",
                        "rationale": "A physical thing can be measured, and a model that cannot record its measurements cannot support any decision that depends on them.",
                        "layers": [
                            {
                                "id": "form-and-dimensions",
                                "name": "Form and dimensions",
                                "description": "Shape, size, mass and the ranges these take across examples.",
                                "findings": [
                                    {
                                        "id": "measurable-dimensions",
                                        "name": "Measurable dimensions and their units",
                                        "description": "The quantities worth recording and the units they are recorded in.",
                                        "questions": [
                                            {
                                                "id": "measurable-dimensions-q01",
                                                "text": "What identifies and describes the dimensions of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "measurable-dimensions-q02",
                                                "text": "Who or what asserted this about the dimensions of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "measurable-dimensions-q03",
                                                "text": "What may an agent decide or do once the dimensions of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "material-and-composition",
                                "name": "Material and composition",
                                "description": "Materials, parts and how they are put together.",
                                "findings": [
                                    {
                                        "id": "parts-and-materials",
                                        "name": "Parts and materials",
                                        "description": "What a subatomic particle is built from and which parts are replaceable.",
                                        "questions": [
                                            {
                                                "id": "parts-and-materials-q01",
                                                "text": "What identifies and describes the composition of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "parts-and-materials-q02",
                                                "text": "Who or what asserted this about the composition of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "parts-and-materials-q03",
                                                "text": "What may an agent decide or do once the composition of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "condition-and-integrity",
                                "name": "Condition and integrity",
                                "description": "Wear, damage, health and the difference between working and broken.",
                                "findings": [
                                    {
                                        "id": "condition-assessment",
                                        "name": "Condition, damage and health",
                                        "description": "How the condition of a subatomic particle is judged and by whom.",
                                        "questions": [
                                            {
                                                "id": "condition-assessment-q01",
                                                "text": "What identifies and describes the condition of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "condition-assessment-q02",
                                                "text": "Who or what asserted this about the condition of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "condition-assessment-q03",
                                                "text": "What may an agent decide or do once the condition of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "place-and-movement",
                        "name": "Place and movement",
                        "description": "Where a subatomic particle is, how it got there and where it may go (varies).",
                        "rationale": "A thing that can move needs its position recorded with a time, or every later claim about it is about a place it has left.",
                        "layers": [
                            {
                                "id": "location-and-placement",
                                "name": "Location and placement",
                                "description": "Position, containment and the reference frame the position is given in.",
                                "findings": [
                                    {
                                        "id": "position-and-frame",
                                        "name": "Position, container and reference frame",
                                        "description": "Where a subatomic particle is, and what that position is measured against.",
                                        "questions": [
                                            {
                                                "id": "position-and-frame-q01",
                                                "text": "What identifies and describes the location of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "position-and-frame-q02",
                                                "text": "Who or what asserted this about the location of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "position-and-frame-q03",
                                                "text": "What may an agent decide or do once the location of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "movement-and-transfer",
                                "name": "Movement and transfer",
                                "description": "How a subatomic particle is carried, installed or relocated.",
                                "findings": [
                                    {
                                        "id": "movement-events",
                                        "name": "Movement events and constraints",
                                        "description": "What counts as a movement, what records it and what limits it.",
                                        "questions": [
                                            {
                                                "id": "movement-events-q01",
                                                "text": "What identifies and describes the movement of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "movement-events-q02",
                                                "text": "Who or what asserted this about the movement of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "movement-events-q03",
                                                "text": "What may an agent decide or do once the movement of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "state-and-lifecycle",
                        "name": "State and lifecycle",
                        "description": "The states a subatomic particle passes through and the events that move it between them.",
                        "rationale": "Most decisions about a thing depend on what state it is in now, which is a claim with a time on it, not a property.",
                        "layers": [
                            {
                                "id": "lifecycle-stages",
                                "name": "Lifecycle stages",
                                "description": "From coming into existence to ceasing to be one of these.",
                                "findings": [
                                    {
                                        "id": "stages-and-transitions",
                                        "name": "Stages and transitions",
                                        "description": "The stages worth naming and what moves a subatomic particle between them.",
                                        "questions": [
                                            {
                                                "id": "stages-and-transitions-q01",
                                                "text": "What identifies and describes the lifecycle of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "stages-and-transitions-q02",
                                                "text": "Who or what asserted this about the lifecycle of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "stages-and-transitions-q03",
                                                "text": "What may an agent decide or do once the lifecycle of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "observations-and-status",
                                "name": "Observations and current status",
                                "description": "What is observed about a subatomic particle, how often and by whom.",
                                "findings": [
                                    {
                                        "id": "observation-record",
                                        "name": "Observation record",
                                        "description": "How an observation of a subatomic particle is recorded so that it can be superseded rather than overwritten.",
                                        "questions": [
                                            {
                                                "id": "observation-record-q01",
                                                "text": "What identifies and describes an observation of a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "observation-record-q02",
                                                "text": "Who or what asserted this about an observation of a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "observation-record-q03",
                                                "text": "What may an agent decide or do once an observation of a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "function-and-principle",
                        "name": "Function and operating principle",
                        "description": "What subatomic particle is for and how it achieves it.",
                        "rationale": "Two devices with the same name can work on different principles, and the principle is what predicts failure and constrains use.",
                        "layers": [
                            {
                                "id": "intended-function",
                                "name": "Intended function",
                                "description": "The job it does, and the jobs it is used for anyway.",
                                "findings": [
                                    {
                                        "id": "function-record",
                                        "name": "Function, principle and variants",
                                        "description": "What it does, how, and which variants do it differently.",
                                        "questions": [
                                            {
                                                "id": "function-record-q01",
                                                "text": "What function does subatomic particle perform, on what operating principle, and which variants differ in that principle?",
                                                "kind": "definition"
                                            },
                                            {
                                                "id": "function-record-q02",
                                                "text": "What use falls outside the intended function but happens in practice?",
                                                "kind": "boundary"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "capacity-and-rating",
                                "name": "Capacity and rating",
                                "description": "The numbers that say what it can do and where it stops.",
                                "findings": [
                                    {
                                        "id": "ratings",
                                        "name": "Ratings and their conditions",
                                        "description": "Rated capacity, power, throughput and the conditions each assumes.",
                                        "questions": [
                                            {
                                                "id": "ratings-q01",
                                                "text": "What ratings characterise subatomic particle, in what units, and under what stated conditions?",
                                                "kind": "measurement"
                                            },
                                            {
                                                "id": "ratings-q02",
                                                "text": "What happens beyond the rating - degradation, refusal, damage - and how is that detected?",
                                                "kind": "action"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "operation-and-state",
                        "name": "Operation, controls and state",
                        "description": "How subatomic particle is operated and what state it is in right now.",
                        "rationale": "An agent acting on a device needs its current state and the controls that change it, not just its specification.",
                        "layers": [
                            {
                                "id": "controls-and-modes",
                                "name": "Controls and modes",
                                "description": "What can be set, what that changes, and what is interlocked.",
                                "findings": [
                                    {
                                        "id": "control-surface",
                                        "name": "Control surface and interlocks",
                                        "description": "The settings available and the conditions that block them.",
                                        "questions": [
                                            {
                                                "id": "control-surface-q01",
                                                "text": "What controls and modes does subatomic particle have, and what does each change?",
                                                "kind": "definition"
                                            },
                                            {
                                                "id": "control-surface-q02",
                                                "text": "Which actions are interlocked or forbidden in which state, and what must be true before acting?",
                                                "kind": "action"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "condition-and-maintenance",
                                "name": "Condition and maintenance",
                                "description": "Wear, service intervals, consumables and the line between working and broken.",
                                "findings": [
                                    {
                                        "id": "service-record",
                                        "name": "Condition, service and consumables",
                                        "description": "What is consumed, what is serviced, and how condition is judged.",
                                        "questions": [
                                            {
                                                "id": "service-record-q01",
                                                "text": "What consumables and service does subatomic particle need, at what interval, and on whose authority?",
                                                "kind": "measurement"
                                            },
                                            {
                                                "id": "service-record-q02",
                                                "text": "What evidence separates a unit that is working from one that is out of service?",
                                                "kind": "boundary"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "kind-model-unit",
                        "name": "Kind, model and unit",
                        "description": "Whether a claim about subatomic particle is about the kind, a product line, or one physical unit.",
                        "rationale": "This is the boundary most often got wrong for made things, and getting it wrong mixes a catalogue entry with the machine in the yard.",
                        "layers": [
                            {
                                "id": "level-of-reference",
                                "name": "Level of reference",
                                "description": "The three levels and what belongs at each.",
                                "findings": [
                                    {
                                        "id": "level-rules",
                                        "name": "What belongs to kind, model and unit",
                                        "description": "Which properties are shared by all of them and which are not.",
                                        "questions": [
                                            {
                                                "id": "level-rules-q01",
                                                "text": "Which facts about subatomic particle hold for every one of them, which for a model, and which only for one unit?",
                                                "kind": "boundary"
                                            },
                                            {
                                                "id": "level-rules-q02",
                                                "text": "What identifies an individual unit, and what should an agent do when it has only the kind?",
                                                "kind": "action"
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "standards-and-conformity",
                                "name": "Standards and conformity",
                                "description": "The standards a working example must meet and who attests it.",
                                "findings": [
                                    {
                                        "id": "conformity",
                                        "name": "Standards, marks and attestation",
                                        "description": "Which standard applies, who certifies, and what the mark means.",
                                        "questions": [
                                            {
                                                "id": "conformity-q01",
                                                "text": "Which standards govern subatomic particle, issued by whom, and what does conformity actually assert?",
                                                "kind": "provenance"
                                            },
                                            {
                                                "id": "conformity-q02",
                                                "text": "What may an agent conclude from a certification mark, and what may it not?",
                                                "kind": "boundary"
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    },
                    {
                        "id": "provenance-and-evidence",
                        "name": "Provenance, evidence and time",
                        "description": "Where every claim about a subatomic particle came from and when it held.",
                        "rationale": "A claim without a source and a time cannot be superseded, only overwritten, and an agent that overwrites loses the ability to explain itself.",
                        "layers": [
                            {
                                "id": "source-and-authority",
                                "name": "Source and authority",
                                "description": "Who said it, on what evidence, and how strongly.",
                                "findings": [
                                    {
                                        "id": "claim-provenance",
                                        "name": "Claim provenance and confidence",
                                        "description": "The authority behind each claim about a subatomic particle and how confident it is.",
                                        "questions": [
                                            {
                                                "id": "claim-provenance-q01",
                                                "text": "What identifies and describes a claim about a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "claim-provenance-q02",
                                                "text": "Who or what asserted this about a claim about a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "claim-provenance-q03",
                                                "text": "What may an agent decide or do once a claim about a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            },
                            {
                                "id": "time-and-versions",
                                "name": "Time, versions and supersession",
                                "description": "When a claim was true, when it was learnt, and what replaced it.",
                                "findings": [
                                    {
                                        "id": "validity-and-supersession",
                                        "name": "Validity period and supersession",
                                        "description": "How an old claim about a subatomic particle is retired without being erased.",
                                        "questions": [
                                            {
                                                "id": "validity-and-supersession-q01",
                                                "text": "What identifies and describes the validity of a claim about a subatomic particle, and in what units or vocabulary?",
                                                "kind": "definition",
                                                "answer_data": [
                                                    "identifiers",
                                                    "types and classes",
                                                    "values with units",
                                                    "explicit unknowns"
                                                ]
                                            },
                                            {
                                                "id": "validity-and-supersession-q02",
                                                "text": "Who or what asserted this about the validity of a claim about a subatomic particle, by which method, and when was it true?",
                                                "kind": "provenance",
                                                "answer_data": [
                                                    "authority",
                                                    "method",
                                                    "evidence",
                                                    "event time",
                                                    "knowledge time"
                                                ]
                                            },
                                            {
                                                "id": "validity-and-supersession-q03",
                                                "text": "What may an agent decide or do once the validity of a claim about a subatomic particle is known, and what must it refuse?",
                                                "kind": "action",
                                                "answer_data": [
                                                    "permitted actions",
                                                    "preconditions",
                                                    "refusals",
                                                    "escalation"
                                                ]
                                            }
                                        ]
                                    }
                                ]
                            }
                        ]
                    }
                ]
            },
            "statistics": {
                "bundles": 8,
                "layers": 17,
                "findings": 19,
                "questions": 51
            }
        }
    }
}