{"cases":[{"alternative_route_blocks":[],"case_id":"E14A002__DIRECT","case_type":"DIRECT_POSITIVE","domain":"clinical analgesia","intended_route_id":"B1","omitted_condition_id":null,"remedy_leakage_audit":"The statement presents the dosing problem and observed constraints without recommending a treatment, analytic method, or decision procedure.","route_evidence":[{"condition_id":"b023_a12_c1","intended_status":"SATISFIED","scenario_evidence":"Pain relief tracks poorly sampled effect-site drug concentration rather than the programmed infusion rate alone."},{"condition_id":"b023_a12_c2","intended_status":"SATISFIED","scenario_evidence":"Relief appears after a delay, repeated doses build on one another, and sedation continues after infusion ends."},{"condition_id":"b023_a12_c3","intended_status":"SATISFIED","scenario_evidence":"An unchanged maintenance rate has different consequences across patients and across early versus late treatment periods."},{"condition_id":"b023_a12_c4","intended_status":"SATISFIED","scenario_evidence":"Low delivery fails to control pain, while high delivery causes respiratory and cognitive harm."}],"scenario_text":"A postoperative pain service programs an intravenous analgesic infusion and records pump delivery, pain scores, alertness, and intermittent blood samples. Increasing the programmed rate does not produce immediate relief: pain scores often change twenty to forty minutes later, and sedation can deepen after the pump has been stopped. Closely spaced rescue doses sometimes produce little early improvement and then a sharp combined effect. The clinically relevant drug level near its site of action is not sampled directly and can only be inferred imperfectly from sparse plasma measurements.\n\nAn unchanged maintenance rate also behaves differently across patients and over the course of a shift. Patients with reduced renal function or residual drug from surgery become drowsy at rates tolerated by others, while the same patient may show weak relief early and excessive sedation later. Rates below a certain level leave pain essentially unchanged; substantially higher rates bring confusion, dangerously slow breathing, and prolonged recovery. Staff must understand why the pump setting, observed benefit, and toxicity follow different time courses.","scenario_title":"Delayed Relief After Postoperative Infusion","vocabulary_separation_audit":"Uses clinical pump, pain, sedation, renal function, and recovery language; it does not reuse the transfer domain's manufacturing vocabulary or name the supplied archetype."},{"alternative_route_blocks":[],"case_id":"E14A002__TRANSFER","case_type":"TRANSFER_POSITIVE","domain":"industrial microwave drying of ceramic components","intended_route_id":"B1","omitted_condition_id":null,"remedy_leakage_audit":"The statement describes a manufacturing control problem without proposing sensors, algorithms, process changes, or other remedies.","route_evidence":[{"condition_id":"b023_a12_c1","intended_status":"SATISFIED","scenario_evidence":"Final cracking and dryness depend on the poorly observed moisture and temperature distribution inside each ceramic body."},{"condition_id":"b023_a12_c2","intended_status":"SATISFIED","scenario_evidence":"Heating and vapor migration continue after power removal, while repeated bursts compound earlier energy delivery."},{"condition_id":"b023_a12_c3","intended_status":"SATISFIED","scenario_evidence":"The same microwave burst yields different outcomes by kiln position, component geometry, and prior drying history."},{"condition_id":"b023_a12_c4","intended_status":"SATISFIED","scenario_evidence":"Too little energy leaves wet cores, whereas too much causes scorching, warping, or cracking."}],"scenario_text":"A ceramics plant uses timed microwave bursts to dry thick electrical insulators before firing. Operators control power and pulse duration, but surface temperature and exhaust humidity are their only continuous readings. Parts that look dry outside can retain a wet core, and the moisture and temperature gradients inside each body are not directly visible. Exhaust humidity may peak several minutes after a burst, while internal heating and vapor migration continue during a power-off interval. Closely spaced bursts compound this carryover and can trigger cracks only later in cooling.\n\nA nominally identical burst does not have a uniform consequence. Pieces near the chamber wall, thicker castings, and parts that entered with an earlier drying history show different mass loss and defect rates even when commanded power is unchanged. Low settings leave enough core moisture to cause failures during firing. At the other extreme, additional energy yields little useful drying while producing scorched surfaces, distortion, or steam-driven fractures. The production problem is to account for the disconnect between commanded energy, the evolving condition inside each part, and defects observed well after exposure.","scenario_title":"Ceramic Cores That Keep Heating","vocabulary_separation_audit":"Uses ceramic manufacturing, microwave, vapor, kiln, and fracture terminology, substantially separated from the clinical vocabulary of the direct case."},{"alternative_route_blocks":[],"case_id":"E14A002__NEAR_MISS","case_type":"ONE_LITERAL_NEAR_MISS","domain":"industrial microwave drying of standardized ceramic coupons","intended_route_id":"B1","omitted_condition_id":"b023_a12_c3","remedy_leakage_audit":"The statement supplies diagnostic observations only and does not recommend equipment, controls, experiments, or process modifications.","route_evidence":[{"condition_id":"b023_a12_c1","intended_status":"SATISFIED","scenario_evidence":"Dryness and cracking are governed by internal moisture and temperature fields that surface instruments do not directly reveal."},{"condition_id":"b023_a12_c2","intended_status":"SATISFIED","scenario_evidence":"Observable changes are delayed, repeated bursts accumulate, and drying continues after power stops."},{"condition_id":"b023_a12_c3","intended_status":"CONTRADICTED","scenario_evidence":"The scenario explicitly reports the same full response trajectory for an identical waveform across coupons, positions, prior schedules, and production stages."},{"condition_id":"b023_a12_c4","intended_status":"SATISFIED","scenario_evidence":"Weak exposure leaves excessive moisture, while strong exposure causes overheating and fractures."}],"scenario_text":"A materials laboratory microwave-dries standardized ceramic coupons whose dimensions, composition, and initial mass are tightly controlled. The chamber command specifies power and pulse duration, while instruments record surface temperature, exhaust humidity, and final mass. These readings do not reveal the moisture and temperature distribution within a coupon. Humidity rises only after a burst has begun, energy delivered in successive bursts builds up, and evaporation continues for several minutes after power is removed. Cracks may become visible only during subsequent cooling.\n\nDespite those timing complications, extensive replication shows no meaningful response variation among coupons or settings of context. An identical power waveform produces the same surface-temperature curve, delayed humidity curve, mass loss, and defect outcome at every chamber position, after every permitted prior schedule, and at every production stage. There are no batch-specific or spatial departures beyond measurement noise. Weak exposures consistently leave the center too wet for firing, whereas excessive exposures add little drying and consistently cause overheating, warping, or fracture. The unresolved difficulty is the temporal disconnect between the command, concealed conditions inside the ceramic, and later observations—not variation between units or circumstances.","scenario_title":"Uniform Coupons With Delayed Drying","vocabulary_separation_audit":"Retains the transfer case's ceramic-processing vocabulary and temporal difficulty while explicitly removing cross-unit, spatial, historical, and phase-dependent response differences."}],"experiment_id":"eoa_inverse_innovation_exp14_applicability_retrieval40_20260813","sample_id":"E14A002","schema_version":1}