Are resources sufficient? โ Quantify compute, data, time, human, and financial resource constraints
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yogsoth-ai/de-anthropocentric-research-engine - Page 19
SkillsMP has collected 961 skills from yogsoth-ai/de-anthropocentric-research-engine. Open a skill to review its source and details.
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Estimate resources, budget, and timeline using parametric, analogous, and three-point (PERT) estimation methods.
Quantify resource demand vs supply vs gap for each resource category
Statistically analyze collected results, verify reproducibility, and synthesize findings
Validate results through statistical testing, ROPE judgment, reproducibility re-runs, and final synthesis
Argue for rejected candidates using Devil's Advocacy, Dialectical Inquiry, and Adversarial Collaboration to ensure elimination was justified.
Systematically reverse positive statements to generate creative inversions. Produces reversed statements with initial associations.
How to make it worse? โ reverse for solutions. Generate anti-solutions then invert to discover novel approaches.
Hostile reviewer perspective โ find fatal flaws, logical gaps, and missing evidence in a solution.
Balance portfolio risk and return using Markowitz mean-variance, CVaR, Risk parity, and Kelly criterion methods.
Assess methodological bias using RoB2, PROBAST, or QUADAS-2 validated tools
Strategy: Action Priority matrix โ classifies failure modes into H/M/L priority using severity-weighted scoring per AIAG-VDA 2019 Action Priority tables.
Design experiments to identify failure boundaries and robustness limits
Compute robustness index across scenarios with sensitivity analysis
Test conclusion robustness via multi-model convergence โ enumerate assumptions, generate alternatives, compare results, flag fragile conclusions.
Select portfolios that perform well across multiple future scenarios using Minimax regret, Robust optimization, Scenario planning, and Info-gap methods.
Role-play as reviewer/practitioner/theorist/novice/competitor to generate diverse perspectives on a solution.
Drill from surface symptoms to root causes via 5 Whys, Ishikawa decomposition, and Current Reality Trees. Validates each causal link with literature evidence.
Decide whether to continue iterating or stop based on consensus score, round number, and stability.
Find and challenge domain's unquestioned beliefs. Systematic identification and productive violation of dogma.
Find domain's unquestioned beliefs. Systematic identification of dogma that constrains innovation.
Classify stakeholders by Mitchell et al. framework (Power, Legitimacy, Urgency). Assigns salience category and identifies systematically excluded parties.
SOP: power analysis and required experiment count estimation
Track score trajectories, detect saturation/failure points โ 15 benchmarks, 50 papers, 60 web searches
Design scaling experiments to characterize performance-resource relationships
Analyze behavior across scales โ detect regime changes, identify capacity limits, fit scaling laws within regimes.
Detect regime changes in scaling behavior โ breakpoints where behavior qualitatively shifts, mechanisms behind transitions.
Execute SCAMPER 7 operators on a target solution. Subagent self-selects best 2-3 operators for deepest exploration.
7 operators (Substitute/Combine/Adapt/Modify/Put/Eliminate/Reverse) for systematic transformation of existing solutions.
Construct distinct future scenarios spanning key uncertainties for portfolio stress testing.
Identify key uncertainty drivers using PESTEL framework scanning
Assess each scenario's impact on the research approach across multiple dimensions
Build rich narratives for surviving morphological configurations using Shell method
Construct distinct future scenarios, evaluate portfolio performance under each, and identify vulnerabilities and robustness characteristics.
Strategy: Adjust research question scope โ zoom in/out until the scope is appropriate
Broad landscape mapping strategy โ quickly understand what exists in a field. Prioritizes breadth over depth with high paper-overview volume and minimal deep reading. Use when entering a new field or needing orientation before committing to deeperโฆ
Synthesize score matrix, rankings, and sensitivity analysis into a final recommendation.
Two-phase sensitivity โ Morris quick screening to eliminate unimportant factors, then Sobol precise decomposition on survivors. Efficient allocation of analytical effort.
First eliminate non-qualifying candidates with non-compensatory rules, then score survivors with full MCDA methods.
SOP: design random seed strategy for reproducibility