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Claude Skills by Tibsfox
github.com/Tibsfox337 skills6 installs319 views
- Immersive Environment DesignDesign heuristics for immersive environments — VR worlds, AR scenes, CAVE installations, responsive rooms. Covers scale and presence, lighting and atmosphere, sight-line composition, acoustic design, comfort-first layout, player/visitor flow, environmental storytelling, and the boundary between stage and audience. Includes Krueger's VIDEOPLACE heritage, Furness's Super Cockpit discipline, and contemporary guidelines for VR level design. Use when authoring or reviewing any environment whose pu...Votes: 0GitHub stars: 69
- Spatial Reasoning FundamentalsSpatial reasoning fundamentals for three-dimensional thinking, coordinate navigation, mental rotation, cross-section visualization, and voxel geometry. Covers the cognitive primitives that underlie block-based world-building, CAD modeling, volumetric design, and VR/AR navigation — egocentric vs allocentric frames, cardinal orientation, chunk boundaries, symmetry classes, and the translation between paper blueprint and in-world construction. Use when teaching or applying 3D spatial thinking in...Votes: 0GitHub stars: 69
- World Building Block ParadigmsBlock-based world-building paradigms — voxel grids, modular prefabs, LEGO/Minecraft-style assembly, parametric voxel art, and the engineering mindset of building from discrete units. Covers load-bearing patterns, spanning gaps, blueprint-to-build translation, material selection, pixel-art scaling into block space, and iterative build cycles. Use when teaching or applying block-based construction in voxel games, modular prefab CAD, or any system where the design space is quantized into discret...Votes: 0GitHub stars: 69
- Beads StateGit-friendly, crash-recoverable state persistence for the Gastown orchestration chipset. Manages agent identities, work items, hooks, convoys, and merge requests as JSON files with atomic write operations.Votes: 0GitHub stars: 69
- Hook PersistencePull-based work assignment channel implementing GUPP (Get Up and Push Protocol). Manages single-active-work-item hooks per agent with filesystem persistence and atomic state transitions.Votes: 0GitHub stars: 69
- Mail AsyncDurable asynchronous messaging channel for inter-agent communication. Implements write-once read-many filesystem mail using atomic writes and directory-based mailboxes.Votes: 0GitHub stars: 69
- Nudge SyncSynchronous immediate signaling channel for inter-agent communication. Implements latest-wins single-file nudge pattern for health checks, stall detection, and urgent pings.Votes: 0GitHub stars: 69
- Token BudgetToken budget tracking and enforcement for Gastown convoy-level execution. Hard limits with pre-execution checking, per-convoy and per-agent tracking, structured stop reasons.Votes: 0GitHub stars: 69
- Regression ModelingModeling relationships between variables using regression. Covers simple linear regression, multiple regression, polynomial regression, logistic regression, model fitting (least squares, maximum likelihood), residual analysis, model diagnostics, R-squared, adjusted R-squared, multicollinearity, variable selection, and the Box-Jenkins dictum that all models are wrong but some are useful. Use when predicting outcomes, quantifying relationships, building predictive models, or diagnosing model fit.Votes: 0GitHub stars: 69
- Cybersecurity BasicsFoundational cybersecurity literacy covering threat landscape (malware, phishing, social engineering, network attacks), defensive practices (encryption, authentication, access control, patching), privacy fundamentals (data collection, tracking, regulatory frameworks), and security reasoning (threat modeling, risk assessment, defense in depth). Use when explaining security concepts, evaluating system security, teaching safe technology practices, or reasoning about digital privacy. Distinct fro...Votes: 0GitHub stars: 69
- Design ThinkingThe technology design process from needs assessment through iteration, covering empathy mapping, design briefs, concept development, prototyping, user testing, and iterative refinement. Integrates design thinking methodology (Stanford d.school) with engineering design process (ITEEA) and Don Norman's human-centered design principles. Use when designing technology solutions, evaluating existing designs, running design sprints, or teaching the design cycle. Distinct from art/aesthetics -- this ...Votes: 0GitHub stars: 69
- Digital SystemsFoundational digital technology literacy covering binary and data representation, computer architecture (CPU, memory, storage, I/O), networking fundamentals (protocols, the internet, LAN/WAN), operating systems, and software concepts. Use when explaining how computers work, how data is stored and transmitted, how networks operate, or how hardware and software interact. Distinct from programming -- this skill covers what digital systems are and how they function, not how to write code for them.Votes: 0GitHub stars: 69
- Emerging TechEmerging and transformative technologies -- artificial intelligence, biotechnology, quantum computing, blockchain, robotics, IoT, augmented/virtual reality, and nanotechnology. Covers how each technology works at a conceptual level, current capabilities vs hype, societal implications, and risk assessment frameworks. Use when evaluating new technologies, assessing technological claims, understanding technology trends, or reasoning about the future impact of technology. Pairs with responsible-i...Votes: 0GitHub stars: 69
- Human Computer InteractionHuman-computer interaction (HCI) as a discipline -- usability heuristics, interaction paradigms (CLI, GUI, touch, voice, gesture, spatial), accessibility, cognitive load theory, Fitts's law, user research methods, and the evolution of interfaces from punchcards to spatial computing. Use when evaluating interface usability, choosing interaction paradigms, applying accessibility standards, or understanding why some interfaces work and others fail. Broader than design-thinking -- this skill cove...Votes: 0GitHub stars: 69
- Responsible InnovationEthical frameworks for responsible technology creation and deployment -- consequentialism, deontology, virtue ethics, care ethics, and justice theory applied to technology decisions. Covers stakeholder analysis, impact assessment, the Collingridge dilemma, technology governance models, digital equity, environmental sustainability, labor implications, and the social construction of technology. Use when evaluating the ethics of technology decisions, designing for social impact, assessing uninte...Votes: 0GitHub stars: 69
- Comparative ReligionComparative religion as a scholarly discipline — cross-tradition analysis of doctrines, practices, and experiences without collapsing traditions into each other or ranking them against a normative standard. Covers the history of the discipline (from Max Muller through Eliade, Smart, Smith, and the contemporary critique), typologies (theism, monism, polytheism, non-theism), the dimensions framework (doctrinal, ritual, ethical, experiential, mythic, institutional, material), and the ethics of c...Votes: 0GitHub stars: 69
- Ethics And PracticeReligious ethics and practice across traditions — moral theology and its sources, the role of virtue, law, and narrative in ethical formation, ritual as ethical shaping, the relation of contemplative practice to ethical life, and comparative work on shared ethical ground (the golden rule, non-harm, care for the stranger) and genuine disagreement. Use when a query asks what a tradition requires of its adherents, how ritual and ethics interact, or how traditions agree and differ on specific mor...Votes: 0GitHub stars: 69
- Mysticism And ContemplationMysticism and contemplative practice across traditions — apophatic and kataphatic theology, the major maps of the mystical path (purgation, illumination, union; fana and baqa; jhana and vipassana; the stages of neo-Confucian self-cultivation), and the scholarly debate over whether "mysticism" is a single cross-cultural phenomenon or a family of distinct traditions mistakenly grouped. Use when a query asks about contemplative practice, visionary experience, the via negativa, ineffability, or h...Votes: 0GitHub stars: 69
- Philosophical TheologyPhilosophical theology — the use of philosophical tools to analyze and evaluate theological claims. Covers classical arguments for and against the existence of God (cosmological, ontological, teleological, moral, evil), the divine attributes (simplicity, omniscience, omnipotence, eternity, impassibility), the relation of faith and reason, religious epistemology, and the boundary between natural theology and revealed theology. Use when a query asks whether a theological claim is rationally def...Votes: 0GitHub stars: 69
- Systematic TheologySystematic theology as a method — the organization of doctrine into a coherent structure with defined loci (God, creation, humanity, sin, Christ or analogous figure, salvation, church, last things, where applicable to tradition). Covers creedal formation, the history of doctrine, the distinction between dogmatic and systematic work, and the comparative shape of systematics across Western Christian, Eastern Christian, Jewish, and Islamic traditions. Use when a query asks about a specific doctr...Votes: 0GitHub stars: 69
- Apprenticeship PedagogyApprenticeship pedagogy for the trades — how craft is actually taught, which is almost nothing like how classroom subjects are taught. Covers the observe/practice/correct loop, the role of the master as model rather than lecturer, the ladder from sweeping the shop to working on real jobs, the honest handling of failure, and the modern adaptations of apprenticeship for contexts where a traditional master-apprentice relationship is not available. Use when designing a training program, diagnosin...Votes: 0GitHub stars: 69
- Craft MethodologyCraft methodology for the trades — how skilled work is organized, decomposed, sequenced, and evaluated from first principles through finished artifact. Covers the craft arc (intent, layout, roughing, fitting, finishing, inspection), the distinction between process knowledge and product knowledge, and how craft traditions encode error-correction in their sequencing. Use when designing a new trade process, diagnosing a faltering one, or teaching craft structure to a learner.Votes: 0GitHub stars: 69
- Materials And FitMaterials and fit for the trades — how wood, metal, stone, fabric, and composite materials behave, how they move with humidity and temperature, and how "fit" between parts is achieved in the presence of material behavior. Covers moisture content, thermal expansion, grain and fiber direction, elastic and plastic deformation, corrosion and finish interaction, and the traditional allowances that experienced tradespeople build into their work. Use when specifying materials, diagnosing a failed fi...Votes: 0GitHub stars: 69
- Measurement And ToleranceMeasurement and tolerance for the trades — how dimensions are specified, measured, and verified, and how real parts are allowed to deviate from their specifications. Covers tolerance stacks, reference surfaces and datum chains, the difference between accuracy and precision, measurement tool selection by required resolution, and the discipline of stating tolerance in terms of what the fit actually requires rather than what the tool can read. Use when writing a specification, selecting measurem...Votes: 0GitHub stars: 69
- Tool And MachineTools and machines as the leverage-amplification layer of the trades — how hand tools, powered tools, and programmable machines differ in what they amplify, what they constrain, and what skill they demand. Covers the tool-to-machine progression, the Nasmyth steam-hammer lineage of precision power, the block-making machinery at Portsmouth as the first mass-production machine shop, and the modern CNC/robotics layer. Use when selecting tools for a job, justifying a tool purchase, or teaching a l...Votes: 0GitHub stars: 69
- Workshop PracticeWorkshop practice for the trades — layout, setup, safety, sequencing, and the practical discipline of running a shop. Covers bench organization, jig and fixture thinking, lighting and power, dust and noise, tool maintenance cadence, and the apprenticeship-era wisdom of "a place for everything." Use when setting up a new workshop, diagnosing why an existing shop is losing time, or teaching a learner how a shop works before they touch a tool.Votes: 0GitHub stars: 69
- Ecosystem AlignmentUpstream version checking, agentskills.io spec compliance audit, Claude Code feature gap analysis. Activates on updates, version checks, or alignment work.Votes: 0GitHub stars: 69
- Art History MovementsMajor art movements and their historical context for art education. Covers 12 movements from the Renaissance to contemporary art, their defining characteristics, key artists, signature works, and the intellectual/social forces that produced them. Use when analyzing artworks in historical context, understanding stylistic lineages, identifying influences across periods, or connecting studio practice to art-historical precedent.Votes: 0GitHub stars: 69
- Color TheoryColor theory principles for art education. Covers the three color properties (hue, saturation, value), color mixing systems (subtractive and additive), color relationships (complementary, analogous, triadic, split-complementary), color temperature, simultaneous contrast and the relativity of color perception, and practical palette construction. Use when analyzing color in artworks, planning color schemes, understanding optical phenomena in painting, or investigating Albers's Interaction of Co...Votes: 0GitHub stars: 69
- Drawing ObservationObservational drawing and visual perception techniques for art education. Covers contour drawing, gesture drawing, negative space, proportion and measurement, value mapping, spatial depth cues, and the cognitive shift from symbolic to perceptual seeing. Use when teaching drawing fundamentals, analyzing observational accuracy, or developing visual literacy in any medium.Votes: 0GitHub stars: 69
- Celestial CoordinatesCelestial coordinate systems and sky positioning. Covers horizon (altitude-azimuth), equatorial (right ascension-declination), ecliptic, and galactic systems; epoch and precession; coordinate transformations; planisphere use; and practical sky-locating from any latitude and date. Use when locating objects, planning observations, converting catalog coordinates, or teaching the geometry of the sky.Votes: 0GitHub stars: 69
- Cosmological ObservationObservational cosmology from Hubble's law to the CMB. Covers redshift, Hubble expansion, the cosmological parameters, the cosmic microwave background, large-scale structure, galaxy rotation curves and dark matter, Type Ia SNe and dark energy, and the current state of Lambda-CDM. Use when reasoning about the large-scale universe, interpreting cosmological surveys, or teaching the Big Bang evidence chain.Votes: 0GitHub stars: 69
- Distance LadderThe cosmic distance ladder from radar ranging to Hubble flow. Covers parallax, spectroscopic parallax, cluster main-sequence fitting, Cepheid and RR Lyrae period-luminosity relations, Type Ia supernovae, Tully-Fisher, surface brightness fluctuation, and redshift-distance relations. Use when estimating, cross-checking, or critiquing any astronomical distance from a parsec to a gigaparsec.Votes: 0GitHub stars: 69
- Naked Eye ObservingPractical naked-eye and binocular sky observing. Covers dark adaptation, limiting magnitude, constellation recognition, star hopping, the messier and Caldwell catalogs accessible without a telescope, the Moon, planets, meteor showers, aurorae, and the ethics and habits of observing under light-polluted and dark skies. Use when teaching someone to find their way around the sky, planning a naked-eye session, or choosing a first binocular tour.Votes: 0GitHub stars: 69
- Orbital MechanicsClassical orbital mechanics from Kepler to Hohmann. Covers the six orbital elements, Kepler's three laws, vis-viva, orbit types (circular, elliptical, parabolic, hyperbolic), transfer orbits, gravity assists, the two-body problem, and practical methods for computing ephemerides. Use when reasoning about planet motion, spacecraft trajectories, comet orbits, exoplanet transits, or binary star dynamics.Votes: 0GitHub stars: 69
- Organizational StrategyOrganizational strategy and management theory for business decision-making. Covers objectives-based management, the knowledge-worker firm, decentralization, the five management tasks, strategy-as-practice, managerial roles, and the distinction between efficiency and effectiveness. Use when structuring an organization, setting objectives, allocating decision rights, or critiquing a strategy document.Votes: 0GitHub stars: 69
- Analytical MethodsSpectroscopy, chromatography, titration, elemental analysis, X-ray crystallography, and mass spectrometry for chemical identification and quantitation. Covers UV-Vis and IR spectroscopy, NMR fundamentals, gas and liquid chromatography, gravimetric and volumetric analysis, diffraction methods, separation techniques, and quantitative error analysis. Use when identifying unknown substances, determining purity, measuring concentrations, or interpreting analytical data.Votes: 0GitHub stars: 69
- Atomic StructureAtomic theory, periodic table organization, electron configuration, periodic trends, and isotopes/radioactivity. Covers Dalton through quantum mechanical models, electron shell filling (Aufbau, Hund, Pauli), periodic law and block structure, trend prediction (electronegativity, ionization energy, atomic radius, electron affinity), isotope notation, nuclear stability, and radioactive decay modes. Use when teaching, problem-solving, or reasoning about atomic-level chemistry.Votes: 0GitHub stars: 69
- Chemical BondingIonic, covalent, and metallic bonding, Lewis structures, VSEPR theory, molecular geometry, polarity, and intermolecular forces. Covers octet rule and exceptions, formal charge, resonance, sigma/pi bonds, orbital hybridization, electronegativity-driven bond classification, VSEPR electron-domain and molecular geometries, dipole moments, and the four intermolecular force types (London dispersion, dipole-dipole, hydrogen bonding, ion-dipole). Use when predicting molecular shapes, bond properties,...Votes: 0GitHub stars: 69
- Organic ChemistryCarbon chemistry, functional groups, IUPAC nomenclature, isomerism, reaction mechanisms (substitution, elimination, addition), polymers, and biochemistry basics. Covers hydrocarbon classes (alkanes, alkenes, alkynes, aromatics), common functional groups (alcohols, aldehydes, ketones, carboxylic acids, esters, amines, amides), stereochemistry, condensation and addition polymerization, and the four biomolecule classes (carbohydrates, lipids, proteins, nucleic acids). Use when analyzing organic ...Votes: 0GitHub stars: 69
- Reactions StoichiometryBalancing chemical equations, reaction classification, stoichiometric calculations, acid-base chemistry, oxidation-reduction (redox) reactions, and thermochemistry. Covers conservation of mass, mole ratios, limiting reagents, percent yield, Bronsted-Lowry and Lewis acid-base theory, pH calculations, oxidation states, half-reaction balancing, enthalpy, Hess's law, and calorimetry. Use when solving quantitative chemistry problems involving reactions, energy changes, or solution chemistry.Votes: 0GitHub stars: 69
- Cloud Identity And AuthIdentity, authentication, authorization, and token management for cloud platforms. Covers Keystone-style scoped tokens, OAuth 2.0 flows, OpenID Connect, JWT structure and pitfalls, federation with SAML/OIDC, service-to-service auth with mTLS and SPIFFE, principle of least privilege, IAM role design, and the service catalog pattern (public/internal/admin endpoints). Use when designing authn/authz for a multi-tenant cloud service, integrating with an identity provider, or reviewing IAM policies...Votes: 0GitHub stars: 69
- Distributed ConsensusDistributed consensus algorithms and logical time for cloud and multi-node systems. Covers Lamport clocks, vector clocks, FLP impossibility, Paxos (basic, multi, fast), Raft, Viewstamped Replication, Byzantine fault tolerance basics, quorum reads/writes (N/R/W), leader election, and TLA+ specification style. Use when designing replicated state machines, picking a consensus protocol, reasoning about split-brain and quorum loss, or writing formal specs for distributed coordination.Votes: 0GitHub stars: 69
- Distributed StorageDistributed storage systems design and operation for cloud platforms. Covers the GFS/HDFS block-and-master pattern, object storage (Swift/S3) with consistent hashing and eventual consistency, block storage semantics, replication vs erasure coding, the CAP theorem in practice, read-repair and anti-entropy, snapshot chains, and the GFS/BigTable/Spanner evolution. Use when designing a storage subsystem, choosing between object/block/file, or reviewing a replication and consistency strategy.Votes: 0GitHub stars: 69
- Network Fundamentals CloudNetworking fundamentals as they apply to cloud infrastructure — virtual networks, subnets, routers, NAT, floating IPs, security groups, VLAN/VXLAN segmentation, load balancing, SDN concepts, and how Neutron-style cloud networks sit on top of physical topology. Covers TCP behavior at scale, congestion control, tail latency, overlay networks, and the operational gotchas that come from network layering. Use when designing cloud network topology, debugging cross-AZ latency, or reviewing a propose...Votes: 0GitHub stars: 69
- Stellar Structure And EvolutionStellar structure and life cycles from birth to endpoint. Covers the Hertzsprung-Russell diagram, hydrostatic equilibrium, main-sequence physics and the mass-luminosity relation, nuclear fusion stages (pp-chain, CNO cycle, triple-alpha), nucleosynthesis, post-main-sequence evolution through red giants and the horizontal branch, and stellar endpoints — planetary nebulae, white dwarfs and the Chandrasekhar limit, supernovae, neutron stars, and black holes. Use when placing a star on the HR diag...Votes: 0GitHub stars: 69
- Physical ChemistryChemical equilibrium, chemical kinetics, and electrochemistry — the quantitative core of physical chemistry. Covers equilibrium constants (Keq, Kc, Kp), Le Chatelier's principle, ICE tables, buffers and the Henderson-Hasselbalch equation, solubility product (Ksp) and the common-ion effect, rate laws, reaction order, integrated rate laws, half-life, the Arrhenius equation and activation energy, catalysis, redox reactions, galvanic and electrolytic cells, standard cell potentials, and the Nerns...Votes: 0GitHub stars: 69
- Mlops And DeploymentMLOps and the production ML lifecycle -- model packaging and serving, CI/CD for ML, experiment tracking, model registries, reproducibility, production monitoring for data and concept drift, retraining pipelines, A/B and shadow deployment, and rollback. Covers batch vs online/real-time inference, REST endpoints, feature stores, data and version pinning, deterministic pipelines, performance-decay detection, and retraining triggers. Use when deploying models to production, serving predictions, m...Votes: 0GitHub stars: 69
- Code ReviewReviews code for bugs, style, and best practices. Use when reviewing PRs or checking code quality.Votes: 0GitHub stars: 69
- Test GeneratorGenerates test cases for functions and components. Use when writing tests or creating test suites.Votes: 0GitHub stars: 69