{"query": "FAR = 2000 / 1000 = 2", "count": 20, "results": [{"id": "card_v_a7381e402500", "title": "FAR = 2000 / 1000 = 2", "shelf": "architecture", "surface": "secular", "snippet": "Verdict: HOLDS.\n• architecture.floor_area_ratio: FAR = 2000.0/1000.0 = 2 (matches claim 2.0)\nSealed and independently re-checkable: https://narrowhighway.com/s/9dae941141d395440b8a036454104cbba089ff59", "authority_tier": "engine", "source": "Verified by the engine — architecture", "generated": false}, {"id": "card_theory_reliability_tolerance_stack_up", "title": "Reliability & tolerance stack-up (RSS)", "shelf": "theories", "surface": "secular", "snippet": "Reliability & tolerance stack-up (RSS) — an engine domain that can touch it: manufacturing. Calibration: seals — reliability products and RSS tolerances compute. Series reliability MULTIPLIES: a chain", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_physical_oceanography", "title": "Physical oceanography (hydrostatics, tides)", "shelf": "theories", "surface": "secular", "snippet": "Physical oceanography (hydrostatics, tides) — an engine domain that can touch it: oceanography. Calibration: seals — pressure with depth and tidal periods compute. Pressure rises about one atmosphere ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_fracture_mechanics", "title": "Fracture mechanics (Griffith, and why things really break)", "shelf": "theories", "surface": "secular", "snippet": "Fracture mechanics (Griffith, and why things really break) — an engine domain that can touch it: materials_science. Calibration: seals — stress intensity, critical crack length and fatigue life comput", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_chemical_kinetics_equilibrium", "title": "Chemical kinetics & equilibrium (Arrhenius, Le Chatelier)", "shelf": "theories", "surface": "secular", "snippet": "Chemical kinetics & equilibrium (Arrhenius, Le Chatelier) — an engine domain that can touch it: chemistry. Calibration: partial — rate constants and equilibrium shifts compute. KINETICS asks how fast,", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_hess_s_law_thermochemistry", "title": "Hess's law / thermochemistry", "shelf": "theories", "surface": "secular", "snippet": "Hess's law / thermochemistry — an engine domain that can touch it: chemistry. Calibration: seals — enthalpy sums compute exactly. The total enthalpy change of a reaction is the same whatever route it ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_vsepr_theory", "title": "VSEPR theory (molecular geometry)", "shelf": "theories", "surface": "secular", "snippet": "VSEPR theory (molecular geometry) — an engine domain that can touch it: molecular_geometry. Calibration: seals — shapes and bond angles predict directly. Valence Shell Electron Pair Repulsion: electro", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_law_of_conservation_of_mass", "title": "Law of conservation of mass (Lavoisier)", "shelf": "theories", "surface": "secular", "snippet": "Law of conservation of mass (Lavoisier) — an engine domain that can touch it: chemistry. Calibration: seals — balanced equations verify exactly. Mass is neither created nor destroyed in a chemical rea", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_evolutionary_game_theory__evolutionarily_stable_stra", "title": "Evolutionary game theory (evolutionarily stable strategies)", "shelf": "theories", "surface": "secular", "snippet": "Evolutionary game theory (evolutionarily stable strategies) — an engine domain that can touch it: biology. Calibration: map-only — stability conditions compute; the biology is empirical. Maynard Smith", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_third_law_of_thermodynamics", "title": "Third law of thermodynamics", "shelf": "theories", "surface": "secular", "snippet": "Third law of thermodynamics — an engine domain that can touch it: thermodynamics. Calibration: map-only — a limiting statement, not a computation. As temperature approaches absolute zero, the entropy ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_elasticity", "title": "Elasticity (Hooke's law, stress–strain)", "shelf": "theories", "surface": "secular", "snippet": "Elasticity (Hooke's law, stress–strain) — an engine domain that can touch it: materials_science. Calibration: seals — stress, strain, deflection and safety factors compute. Within a limit, deformation", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_signal_detection", "title": "Signal detection theory (sensitivity, criterion, ROC)", "shelf": "theories", "surface": "secular", "snippet": "Signal detection theory (sensitivity, criterion, ROC) — an engine domain that can touch it: statistics. Calibration: seals — sensitivity, specificity, predictive values and ROC areas compute exactly. ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_fluid_mechanics", "title": "Fluid mechanics (Bernoulli, Reynolds, Navier–Stokes)", "shelf": "theories", "surface": "secular", "snippet": "Fluid mechanics (Bernoulli, Reynolds, Navier–Stokes) — an engine domain that can touch it: hydrology. Calibration: seals — continuity, Bernoulli and Reynolds number compute directly. CONTINUITY first:", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_agricultural_science", "title": "Agricultural science (yield, soil-pH suitability)", "shelf": "theories", "surface": "secular", "snippet": "Agricultural science (yield, soil-pH suitability) — an engine domain that can touch it: agriculture. Calibration: seals — yield, spacing, seeding rates and pH suitability compute. Yield is the product", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_error_correcting_codes", "title": "Error-correcting codes (Hamming, Reed–Solomon)", "shelf": "theories", "surface": "secular", "snippet": "Error-correcting codes (Hamming, Reed–Solomon) — an engine domain that can touch it: information_theory. Calibration: seals — code distances, correctable error counts and parity all compute exactly. A", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_law_of_the_minimum", "title": "Liebig's law of the minimum (what actually limits growth)", "shelf": "theories", "surface": "secular", "snippet": "Liebig's law of the minimum (what actually limits growth) — an engine domain that can touch it: soil_science. Calibration: seals — nutrient ratios and deficiency thresholds compute. Growth is limited ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_structural_statics", "title": "Structural statics (load, moment, floor-area ratio)", "shelf": "theories", "surface": "secular", "snippet": "Structural statics (load, moment, floor-area ratio) — an engine domain that can touch it: architecture. Calibration: seals — reactions, moments and load paths compute. Nothing accelerates, so forces a", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_theory_spectroscopy", "title": "Spectroscopy (how we know what a distant thing is made of)", "shelf": "theories", "surface": "secular", "snippet": "Spectroscopy (how we know what a distant thing is made of) — an engine domain that can touch it: optics. Calibration: seals — wavelengths, Doppler shifts and Wien's law all recompute and check. Split ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "generated": false}, {"id": "card_domchk_architecture_claimed_far", "title": "Architecture: far", "shelf": "architecture", "surface": "secular", "snippet": "A worked check in architecture: far.\n\nGIVEN\n  lot_area_m2 = 1000\n  snow_load_kPa = 1\n  total_floor_area_m2 = 2000\n\nCLAIMED\n  claimed_far = 2\n\nTHE ENGINE'S VERDICT\n  architecture.floor_area_ratio: CONF", "authority_tier": "reference", "source": "The verifier's own documented relation, and a run this engine performed against it (deterministic; re-runnable with tools/domain_goldens.py)", "generated": false}, {"id": "card_n_f6567c3258b0", "title": "Augustine, Confessions §aug_conf_11_041: O Lord my God, what a depth is that recess of Thy mysteries, and how far from...", "shelf": "classics", "surface": "witness", "snippet": "O Lord my God, what a depth is that recess of Thy mysteries, and how far from it have the consequences of my transgressions cast me! Heal mine eyes, that I may share the joy of Thy light. Certainly, i", "authority_tier": "father", "source": "Augustine, Confessions (c. AD 400)", "generated": false}]}