{"query": "Pharmacology — the kinetics of a dose", "count": 20, "results": [{"id": "card_med_pharmacology", "title": "Pharmacology — the kinetics of a dose", "shelf": "codex", "surface": "secular", "snippet": "Drugs clear by first-order decay, the half-life setting dosing and toxicity (sealed). Chemistry's kinetics, in the bloodstream. Rests on physical chemistry.", "authority_tier": "engine_derived", "source": "Narrow Highway — medicine", "readable": false, "generated": false}, {"id": "card_theory_kinetic_theory_of_gases", "title": "Kinetic theory of gases", "shelf": "theories", "surface": "secular", "snippet": "Kinetic theory of gases — an engine domain that can touch it: thermodynamics. Calibration: partial — RMS speeds and mean free paths compute; the microscopic picture is a model. A gas is a swarm of mol", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "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)", "readable": false, "generated": false}, {"id": "card_theory_biochemistry_enzymes", "title": "Biochemistry & enzymes (catalysis at body temperature)", "shelf": "theories", "surface": "secular", "snippet": "Biochemistry & enzymes (catalysis at body temperature) — an engine domain that can touch it: biology. Calibration: seals — reaction rates, Michaelis–Menten kinetics and energy budgets compute. An enzy", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "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)", "readable": false, "generated": false}, {"id": "card_bridge_theory_population_ecology__chemical_kinetics_equilibrium", "title": "Bridge: Population ecology (Lotka–Volterra, carrying capacity)  ↔  Chemical kinetics & equilibrium (Arrhenius, Le Chatelier)", "shelf": "bridges", "surface": "secular", "snippet": "Population ecology (Lotka–Volterra, carrying capacity) and Chemical kinetics & equilibrium (Arrhenius, Le Chatelier) are the same form in different domains. Lotka-Volterra is mass-action kinetics with", "authority_tier": "reference", "source": "The Bridges — cross-domain isomorphisms", "readable": false, "generated": false}, {"id": "card_bridge_theory_pharmacokinetics__chemical_kinetics_equilibrium", "title": "Bridge: Pharmacokinetics (dosing, clearance, half-life)  ↔  Chemical kinetics & equilibrium (Arrhenius, Le Chatelier)", "shelf": "bridges", "surface": "secular", "snippet": "Pharmacokinetics (dosing, clearance, half-life) and Chemical kinetics & equilibrium (Arrhenius, Le Chatelier) are the same form in different domains. first-order clearance and chemical first-order dec", "authority_tier": "reference", "source": "The Bridges — cross-domain isomorphisms", "readable": false, "generated": false}, {"id": "card_bridge_master_stationary_action", "title": "Master equation: delta(integral L) = 0", "shelf": "bridges", "surface": "secular", "snippet": "nature takes the extremal path — physics as optimization over functions. ONE equation, 5 domains, connected by a change of variable: physics [L = kinetic - potential; the path extremizes the action]; ", "authority_tier": "reference", "source": "The Bridges — cross-domain isomorphisms", "readable": false, "generated": false}, {"id": "card_n_8530c72a2201", "title": "Fluid probability dynamics — one continuity equation across physics, geometry, and ML", "shelf": "science", "surface": "secular", "snippet": "One equation wears many clothes. Probability is a conserved fluid: the continuity equation\ndρ/dt + ∇·J = 0 (current J = ρv) says density is never created or destroyed — it only flows. The\nsame skeleto", "authority_tier": "engine_derived", "source": "Concordance assay — 2026-07-08", "readable": false, "generated": false}, {"id": "card_bridge_theory_supply_demand_market_equilibrium__chemical_kinetics_equilibrium", "title": "Bridge: Supply & demand / market equilibrium  ↔  Chemical kinetics & equilibrium (Arrhenius, Le Chatelier)", "shelf": "bridges", "surface": "secular", "snippet": "Supply & demand / market equilibrium and Chemical kinetics & equilibrium (Arrhenius, Le Chatelier) are the same form in different domains. Le Chatelier's principle and market response are one form: pe", "authority_tier": "reference", "source": "The Bridges — cross-domain isomorphisms", "readable": false, "generated": false}, {"id": "card_works_mechanics", "title": "A 2 kg mass: the force to move it, the energy it carries", "shelf": "the-works", "surface": "secular", "snippet": "Newton's second law fixes the force to accelerate a mass; its kinetic energy fixes what the motion is worth. Same mass, two laws, both checked.  Worked & sealed by the engine — F = m·a = 2·5 = 10 N · ", "authority_tier": "verified", "source": "The Works — worked & sealed", "readable": false, "generated": false}, {"id": "card_sys_mechanical", "title": "Mechanical systems", "shelf": "systems", "surface": "secular", "snippet": "Effort = force (or torque), flow = velocity (or angular velocity). The damper dissipates, the spring stores potential, the mass stores kinetic. Governed by Newton's laws. A mass-spring-damper is an RL", "authority_tier": "reference", "source": "The recurring form — the system analogies (standard engineering) + the design they witness to", "readable": false, "generated": false}, {"id": "card_joint_arnold_geodesics", "title": "Euler flow is geodesic flow on the volume-preserving diffeomorphisms", "shelf": "codex", "surface": "secular", "snippet": "Arnold (1966): the Euler equations of an ideal fluid are the geodesic equations of the group of volume-preserving diffeomorphisms with the kinetic-energy metric - the fluid as a point moving on an inf", "authority_tier": "engine_derived", "source": "Narrow Highway - the Millennium floor, a joint found in the literature (operator seed)", "readable": false, "generated": false}, {"id": "card_sys_effort_flow", "title": "The effort–flow form — the master pattern", "shelf": "systems", "surface": "secular", "snippet": "Every physical system runs on a pair: EFFORT (the push) and FLOW (the response). Electrical: voltage & current. Fluid: pressure & volumetric flow. Mechanical: force & velocity. Thermal: temperature & ", "authority_tier": "reference", "source": "The recurring form — the system analogies (standard engineering) + the design they witness to", "readable": false, "generated": false}, {"id": "card_floor_physical_chemistry", "title": "Physical chemistry — rate, equilibrium, acid-base, redox", "shelf": "codex", "surface": "secular", "snippet": "Deeper in chemistry: the laws that make it predictive. Kinetics (how fast), equilibrium (the balance point, Delta G = -RT ln K), acid-base (pKa + pKb = 14), and electrochemistry (the cell potential). ", "authority_tier": "engine_derived", "source": "Narrow Highway — physical chemistry", "readable": false, "generated": false}, {"id": "card_src_pd_mechanicsengine08churgoog", "title": "Mechanics of engineering. Comprising statics and kinetics of solids; the mechanics of the materials of construction, or strength and elasticity of beams, columns, shafts, arches, e", "shelf": "practical", "surface": "secular", "snippet": "Mechanics of engineering. Comprising statics and kinetics of solids; the mechanics of the materials of construction, or strength and elasticity of beams, columns, shafts, arches, etc.; and the princip", "authority_tier": "reference", "source": "public domain (copyright expired)", "readable": true, "generated": false}, {"id": "card_src_pd_irvingmechanics00churrich", "title": "Mechanics of engineering. Comprising statics and kinetics of solids; the mechanics of the materials of construction, or strength and elasticity of beams, columns, shafts, arches, e", "shelf": "practical", "surface": "secular", "snippet": "Mechanics of engineering. Comprising statics and kinetics of solids; the mechanics of the materials of construction, or strength and elasticity of beams, columns, shafts, arches, etc.; and the princip", "authority_tier": "reference", "source": "public domain (copyright expired)", "readable": true, "generated": false}, {"id": "card_src_word_boltzmann", "title": "boltzmann", "shelf": "dictionary", "surface": "secular", "snippet": "boltzmann: (noun) Austrian physicist who contributed to the kinetic theory of gases (1844-1906) — syn: Ludwig Boltzmann", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_ludwig_boltzmann", "title": "ludwig boltzmann", "shelf": "dictionary", "surface": "secular", "snippet": "ludwig boltzmann: (noun) Austrian physicist who contributed to the kinetic theory of gases (1844-1906) — syn: Boltzmann", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_pd_elementsofmechan00wriguoft", "title": "Elements of mechanics, including kinematics, kinetics and statics, with applications", "shelf": "practical", "surface": "secular", "snippet": "Elements of mechanics, including kinematics, kinetics and statics, with applications (1904). A book returned to the public domain — archive.org copyright status: NOT_IN_COPYRIGHT. The full text (716,5", "authority_tier": "reference", "source": "public domain (copyright expired)", "readable": true, "generated": false}], "house": {"door": "FIND", "kind": "cards", "trail": "results", "seal": null, "next_step": {"do": "open the top card", "door": "FIND", "tool": "card_get", "params": {"id": "card_med_pharmacology"}}, "ends": "a verdict or a card · the trail · a seal · one next step"}}