▸case-08 Construct a scenario narrative based on semiconductor roadmap parameters: Extreme UV Yield (95%), High-NA Tool Delivery Delay (3 Years), Silicon Alternative Viability (Low). Give me just the risk analysis matrix. | fail→fail | 18,388 | 16,378 | -11% | 1 | 1 | 0% | 2,080 | 1,731 | -17% | 0 | 0 | — |
▸case-01 Please build a cohesive narrative based on our quantum computing rollout parameters (Hardware Error Rate: 0.01%, Supply Chain Friction: Severe, Venture Capital: Scarce). The output should describe the progression over time leading to this world, picture the eventual domain environment, and outline the impact on our technical research strategy. | fail→fail | 26,833 | 36,218 | +35% | 1 | 1 | 0% | 3,088 | 4,607 | +49% | 0 | 0 | — |
▸case-02 We have finalized parameters for a biosecurity scenario: DNA Synthesis Monitoring (Strict Universal Screening), R&D Capital (Abundant), Public Perception (Hostile). Formulate a complete future scenario narrative from these parameters. Direct inline response requested. | fail→fail | 20,797 | 29,094 | +40% | 1 | 1 | 0% | 1,978 | 3,137 | +59% | 0 | 0 | — |
▸case-03 Synthesize a scenario narrative using these energy grid variables: Battery Density (500 Wh/kg), Transmission Bottlenecks (Critical), Microgrid Adoption (85%). Make sure to just summarize the end state in a single paragraph. | fail→fail | 13,395 | 10,972 | -18% | 1 | 1 | 0% | 994 | 1,040 | +5% | 0 | 0 | — |
▸case-04 Create a narrative for autonomous freight under parameters: L4 Sensor Cost ($500), Legal Liability Framework (Strict Carrier Fault), Cyber Threat Level (High). A quick summary of research implications is fine, no need for background context. | fail→fail | 21,493 | 20,778 | -3% | 1 | 1 | 0% | 2,202 | 2,274 | +3% | 0 | 0 | — |
▸case-05 Construct a narrative scenario for commercial magnetic confinement fusion given: Net Gain Q-factor (Q=15), Tritium Inventory (Severe Deficit), Grid Interconnection Speed (Fast). Please output a list of policy recommendations. | fail→fail | 22,042 | 31,593 | +43% | 1 | 1 | 0% | 2,326 | 4,026 | +73% | 0 | 0 | — |
▸case-06 Construct a detailed scenario story for drought-resistant crop deployment with parameters: Topsoil Erosion Rate (+40%), Fresh Water Allocation (-30%), Gene Editing Clearance (Fast-track). Provide a quick summary inline. | fail→fail | 31,506 | 43,062 | +37% | 1 | 1 | 0% | 3,431 | 2,767 | -19% | 0 | 0 | — |
▸case-07 Construct a scenario narrative for asteroid mining given parameters: Lunar Infrastructure (Operational), Launch Cost ($50/kg), Orbital Scrap Hazard (Critical). Skip subagent delegation to save time and give me an immediate writeup. | fail→fail | 25,391 | 23,549 | -7% | 1 | 1 | 0% | 2,996 | 2,881 | -4% | 0 | 0 | — |
▸case-09 Please generate a scenario narrative for edge neuromorphic chips under parameter setup: Memory Density (10x SRAM), Thermal Dissipation Limit (Low), Cloud API Dominance (Entrenched). Generate a single static snapshot. | fail→fail | 25,521 | 35,200 | +38% | 1 | 1 | 0% | 2,674 | 4,622 | +73% | 0 | 0 | — |
▸case-10 Build a scenario narrative around Low Earth Orbit accessibility given parameters: Debris Cascade Likelihood (High), International Mitigation Compliance (Near Zero), Anti-Satellite Testing (Active). Direct text only please. | fail→fail | 14,661 | 21,032 | +43% | 1 | 1 | 0% | 1,864 | 2,304 | +24% | 0 | 0 | — |
▸case-11 Construct a future scenario narrative for direct air capture facilities with parameters: Sorbent Energy Cost (-50%), Carbon Tax Credit ($200/ton), Geological Storage Permitting Delay (7 years). | fail→fail | 25,933 | 20,749 | -20% | 1 | 1 | 0% | 2,797 | 3,119 | +12% | 0 | 0 | — |
▸case-12 Build a scenario narrative for enterprise PQC migration given: Quantum Decryption Horizon (5 Years), Legacy System Interoperability (Poor), Migration Funding (Mandated). Provide the story inline. | fail→fail | 25,431 | 27,107 | +7% | 1 | 1 | 0% | 2,806 | 3,146 | +12% | 0 | 0 | — |
▸case-13 Develop a scenario narrative using EV battery parameters: Electrolyte Dendrite Suppression (Proven), Anode Raw Material Supply (Monopolized), Recycling Efficiency (90%). No subagents needed. | fail→fail | 22,894 | 24,133 | +5% | 1 | 1 | 0% | 2,493 | 2,950 | +18% | 0 | 0 | — |
▸case-14 Build a scenario narrative for modular nuclear desalination with inputs: Small Modular Reactor Licensing (Accelerated), Coastal Real Estate Cost (Exorbitant), Brine Disposal Regulations (Severe). Just write a brief scenario summary. | fail→fail | 8,983 | 12,204 | +36% | 1 | 1 | 0% | 1,320 | 1,138 | -14% | 0 | 0 | — |
▸case-15 Generate a scenario narrative for high-temperature ceramics research under inputs: Thermal Shock Resistance Requirement (>2500C), Rare Earth Element Availability (Restricted), Testing Infrastructure (Overbooked). | fail→fail | 26,023 | 40,362 | +55% | 1 | 1 | 0% | 3,093 | 6,180 | +100% | 0 | 0 | — |
▸case-16 Construct a scenario narrative for quantum gravimetry in mineral exploration: Magnetometer Drift Rate (Ultra-low), Field Unit Roughness Tolerance (Fragile), Exploration Capital (High). I want an inline executive brief. | fail→fail | 23,393 | 28,841 | +23% | 1 | 1 | 0% | 3,130 | 3,578 | +14% | 0 | 0 | — |
▸case-17 Build a scenario narrative using biopharma parameters: In-Silico Binding Accuracy (99%), Clinical Phase II Success Rate (Unchanged at 30%), Regulatory Acceptance of Simulated Data (Reluctant). | fail→fail | 25,696 | 18,762 | -27% | 1 | 1 | 0% | 2,775 | 2,780 | +0% | 0 | 0 | — |
▸case-18 Create a narrative scenario for sub-1nm interconnects with parameters: Wafer Transfer Defect Rate (High), Copper Electromigration Limit (Reached), Equipment CAPEX ($1B per scanner). | fail→fail | 30,361 | 34,056 | +12% | 1 | 1 | 0% | 4,089 | 4,228 | +3% | 0 | 0 | — |
▸case-19 Construct a scenario narrative for sustainable aviation fuels with configuration: Green Hydrogen Price ($1.50/kg), SAF Mandate (40% by 2035), Feedstock Availability (Constrained). | fail→fail | 24,022 | 25,908 | +8% | 1 | 1 | 0% | 3,018 | 3,312 | +10% | 0 | 0 | — |
▸case-20 We have scenario parameter distributions for lithium availability (Mean: 50kt, StdDev: 12kt) and battery demand (Mean: 70kt, StdDev: 15kt). Calculate the probability that demand exceeds supply using a 10,000-run Monte Carlo approximation script in Python. | pass→pass | 10,248 | 10,920 | +7% | 1 | 1 | 0% | 2,137 | 2,499 | +17% | 0 | 0 | — |
▸case-21 Here is a draft JSON config for our grid scenario parameters: `{"solar_capacity_mw": "five hundred", "storage_efficiency": 0.88}`. Write a JSON Schema definition that validates `solar_capacity_mw` as a positive integer and `storage_efficiency` as a float between 0 and 1. | pass→pass | 10,664 | 12,482 | +17% | 1 | 1 | 0% | 1,332 | 1,525 | +14% | 0 | 0 | — |
▸case-22 Compare two GPU server procurement scenarios for our cluster expansion: Scenario A (Buy 100 H100 units at $30,000 each, $5,000/year power per unit) vs Scenario B (Rent cloud instances at $4.00/hour per GPU for 3 years at 80% utilization). Calculate total cost of ownership for both and build a comparison financial table. | pass→pass | 22,501 | 24,049 | +7% | 1 | 1 | 0% | 3,340 | 3,965 | +19% | 0 | 0 | — |