education-tutor
Personalized tutoring, study strategies, lesson planning, and educational support across subjects and learning styles
Personalized tutoring, study strategies, lesson planning, and educational support across subjects and learning styles
Daily journaling prompts and frameworks for reflection, growth, and clarity
Guides medication adjustments for hepatic impairment using Child-Pugh classification. Use when adjusting for liver disease, evaluating hepatic metabolism, or managing medications in cirrhosis.
Guides GDMT optimization for HFrEF and HFpEF with medication titration and monitoring schedules. Use when managing heart failure, titrating GDMT, or optimizing HF medications.
Structures AI/ML governance for healthcare applications with validation, monitoring, and ethical frameworks. Use when governing health AI, validating clinical models, or managing AI ethics in healthcare.
Guides chest pain workup following ACS pathways with troponin timing and disposition criteria. Use when evaluating chest pain, running ACS protocols, or determining observation vs. discharge.
Structures 5As smoking cessation intervention with pharmacotherapy selection and motivational interviewing. Use when counseling on tobacco use, prescribing cessation aids, or documenting quit attempts.
Build gratitude practice with daily entries, streaks, and reflection prompts
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Workplace health and wellness expertise for employee wellness programs, mental health initiatives, ergonomics and safety, healthcare benefits strategy, and health analytics. Use when designing wellness programs, improving workplace safety, or analyzing health metrics.
Use when computing orbits, planning maneuvers, propagating trajectories, or analyzing orbital perturbations for spacecraft or celestial bodies. Use when "orbit, trajectory, maneuver, delta-v, Hohmann, Keplerian, perturbation, J2, TLE, orbital elements, semi-major axis, eccentricity, inclination, RAAN, spacecraft propagation, Lambert solver, interplanetary, " mentioned.
Comprehensive Python library for astronomy and astrophysics. This skill should be used when working with astronomical data including celestial coordinates, physical units, FITS files, cosmological calculations, time systems, tables, world coordinate systems (WCS), and astronomical data analysis. Use when tasks involve coordinate transformations, unit conversions, FITS file manipulation, cosmological distance calculations, time scale conversions, or astronomical data processing.
Fetch aviation weather data (METAR, TAF, PIREPs) from aviationweather.gov. Use for flight planning, weather briefings, checking airport conditions, or any pilot-related weather queries. Triggers on "METAR", "TAF", "flight weather", "airport weather", "aviation weather", "pilot report", "PIREP", or specific ICAO codes.
Use when designing ground station networks, scheduling satellite contacts, processing telemetry, commanding spacecraft, or analyzing link budgets. Use when "ground station, satellite contact, pass prediction, AOS, LOS, telemetry, commanding, uplink, downlink, antenna tracking, link budget, G/T, EIRP, " mentioned.
Assist with image analysis, object detection, and visual AI tasks
Use when designing space missions, computing launch windows, optimizing trajectories, analyzing payload constraints, or planning mission phases and contingencies. Use when "mission design, launch window, trajectory optimization, mission timeline, mass budget, propellant budget, mission phases, porkchop plot, C3, gravity assist, low thrust, mission architecture, LEO, GEO, interplanetary, " mentioned.
Use when creating or managing IFC spatial hierarchy in Bonsai -- IfcSite, IfcBuilding, IfcBuildingStorey, IfcSpace, and their containment relationships. Prevents the critical mistake of not establishing proper spatial decomposition (IfcRelAggregates) causing elements to be invisible in model viewers. Covers spatial containment, decomposition, and Bonsai-specific spatial navigation tools. Keywords: spatial structure, IfcSite, IfcBuilding, IfcBuildingStorey, IfcSpace, IfcRelContainedInSpatialStructure, IfcRelAggregates, spatial hierarchy, add storey, create building structure.
Use when designing or analyzing spacecraft subsystems including ADCS, power, thermal control, propulsion, communications, and command & data handling. Use when "spacecraft, satellite, ADCS, attitude control, reaction wheel, star tracker, solar array, battery, thermal control, radiator, MLI, propulsion, thruster, communications, link budget, C&DH, subsystem, " mentioned.
Monitor solar weather conditions including geomagnetic storms, solar flares, aurora forecasts, and solar wind data. Uses NOAA Space Weather Prediction Center real-time data.