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Claude Skills by Tibsfox
github.com/Tibsfox337 skills6 installs319 views
- Witness ObserverPMU observation pattern for agent health monitoring. Runs patrol loops, detects stalled agents, sends nudges, and escalates persistent failures to the mayor. Never modifies agent work or resolves conflicts.Votes: 0GitHub stars: 69
- Accessibility PatternsProvides web accessibility best practices for semantic HTML, ARIA, keyboard navigation, color contrast, and screen reader patterns. Use when building UI components, reviewing accessibility, or when user mentions 'a11y', 'accessibility', 'ARIA', 'screen reader', 'keyboard navigation', 'WCAG'.Votes: 0GitHub stars: 69
- Ci Cd PatternsProvides CI/CD pipeline best practices for GitHub Actions, deployment strategies, and pipeline optimization. Use when setting up pipelines, configuring GitHub Actions, managing deployments, or when user mentions 'CI', 'CD', 'pipeline', 'GitHub Actions', 'deploy', 'workflow', 'build'.Votes: 0GitHub stars: 69
- Compliance GovernanceProvides compliance, governance, and supply chain security guidance for cloud-native systems. Covers OPA Rego policies, Kyverno cluster policies, SBOM generation, SLSA provenance, audit trail design, and regulatory framework mapping. Use when user mentions 'compliance', 'governance', 'OPA', 'kyverno', 'SBOM', 'SLSA', 'audit', 'policy-as-code', 'SOC2', 'HIPAA', 'PCI-DSS', 'artifact signing'.Votes: 0GitHub stars: 69
- Dependency AuditProvides dependency management and supply chain security practices for auditing vulnerabilities, checking licenses, assessing dependency health, and managing upgrades safely. Use when auditing packages, reviewing security, managing dependencies, or when user mentions 'audit', 'vulnerability', 'dependency', 'supply chain', 'npm audit', 'license', 'bundle size'.Votes: 0GitHub stars: 69
- Docker PatternsProvides Docker and containerization best practices including multi-stage builds, security hardening, and compose patterns. Use when writing Dockerfiles, optimizing images, setting up containers, or when user mentions 'Docker', 'container', 'Dockerfile', 'docker-compose', 'image'.Votes: 0GitHub stars: 69
- Finops PatternsProvides FinOps practices for cloud cost optimization, budget management, and resource rightsizing. Use when analyzing cloud spend, optimizing costs, or when user mentions 'finops', 'cloud cost', 'rightsizing', 'budget', 'cost allocation', 'reserved instance', 'spot instance', 'showback', 'chargeback'.Votes: 0GitHub stars: 69
- Gitops PatternsProvides GitOps best practices for ArgoCD, Flux, Argo Rollouts, and progressive delivery strategies. Use when setting up GitOps workflows, configuring continuous delivery, managing Kubernetes deployments declaratively, or when user mentions 'gitops', 'argocd', 'flux', 'progressive delivery', 'reconciliation', 'argo rollouts', 'canary', 'sealed secrets'.Votes: 0GitHub stars: 69
- Hook RecipesCurated collection of ready-to-use Claude Code hook recipes for safety, automation, formatting, logging, and context injection. Use when configuring hooks, setting up safety guards, automating workflows, or when user mentions 'hooks', 'PreToolUse', 'PostToolUse', 'guard', 'automation', 'claude hooks'.Votes: 0GitHub stars: 69
- Infrastructure As CodeProvides Infrastructure as Code best practices for Terraform, Pulumi, CloudFormation, and OpenTofu. Use when provisioning infrastructure, writing IaC modules, managing cloud resources, scanning for misconfigurations, or when user mentions 'terraform', 'pulumi', 'cloudformation', 'IaC', 'opentofu', 'infrastructure', 'tfsec', 'checkov', 'drift'.Votes: 0GitHub stars: 69
- Kubernetes PatternsProvides Kubernetes resource management, Helm chart patterns, service mesh configuration, and autoscaling strategies. Covers HPA, VPA, KEDA, operators, security contexts, and namespace isolation. Use when user mentions 'kubernetes', 'k8s', 'helm', 'istio', 'linkerd', 'service mesh', 'HPA', 'VPA', 'KEDA', 'pod security', 'resource quotas', 'operators'.Votes: 0GitHub stars: 69
- Platform EngineeringProvides platform engineering best practices for Internal Developer Platforms (IDPs), golden paths, service catalogs, and developer experience. Use when building developer platforms, configuring Backstage, designing self-service workflows, or when user mentions 'platform engineering', 'backstage', 'golden path', 'IDP', 'developer portal', 'service catalog', 'DevEx', 'platform team', 'self-service'.Votes: 0GitHub stars: 69
- Sql PatternsProvides SQL best practices for query optimization, schema design, migrations, transactions, and indexing. Use when writing database queries, designing schemas, creating migrations, or when user mentions 'SQL', 'database', 'query', 'schema', 'migration', 'index', 'transaction'.Votes: 0GitHub stars: 69
- EthicsEthical theory and moral reasoning across the major philosophical traditions. Covers normative ethics (consequentialism, deontology, virtue ethics, care ethics, existentialist ethics), metaethics (moral realism, anti-realism, emotivism, error theory), and applied ethics (bioethics, environmental ethics, AI ethics, just war theory). Includes a moral dilemma analysis framework with worked examples applying multiple frameworks to the same case.Votes: 0GitHub stars: 69
- Formal LogicFormal and informal logic for philosophical reasoning. Covers propositional logic (connectives, truth tables, tautologies), predicate logic (quantifiers, validity), syllogistic logic (Aristotle's original forms), natural deduction (introduction/elimination rules), modal logic (necessity, possibility, possible worlds), and a catalog of 15+ informal fallacies. Use when analyzing arguments, identifying logical form, evaluating validity and soundness, or detecting fallacious reasoning.Votes: 0GitHub stars: 69
- Cardiovascular FitnessCardiovascular fitness assessment and prescription for physical education. Covers VO2max, the Cooper 12-minute run, target heart rate zones, the FITT framework (Frequency, Intensity, Time, Type), aerobic versus anaerobic energy systems, and progression principles for building aerobic capacity safely at every age. Use when designing fitness units, assessing baseline cardiovascular health, prescribing exercise, explaining why aerobic work matters, or translating sports medicine evidence into cl...Votes: 0GitHub stars: 69
- Coaching And TeachingCoaching as teaching — John Wooden's Pyramid of Success, practice design, feedback quality, instructional economy, and the craft of deliberate skill development. Covers the difference between knowing the game and teaching it, Wooden's actual practice methods as documented by Gallimore and Tharp, skill progression through part-whole teaching, the four-to-one positive feedback discipline, and the habits that distinguish effective coaches from merely knowledgeable ones. Use when designing practi...Votes: 0GitHub stars: 69
- Inclusive Physical EducationInclusive physical education for gender, ability, and developmental variation. Covers the history of women in sport from Berenson's women's basketball rules forward, adapted PE for disability and chronic illness, universal design for learning in PE, gender-equitable participation, and the ethical obligations of a PE teacher to serve every learner in the room. Use when adapting lessons for disability, designing co-educational units, addressing participation gaps, or teaching the history of inc...Votes: 0GitHub stars: 69
- Movement FundamentalsFundamental movement skills and motor learning for physical education. Covers the three movement families (locomotor, non-locomotor, manipulative), the stage theory of motor learning (cognitive, associative, autonomous), developmental coordination milestones, and the teaching progression from gross to fine motor control. Use when designing introductory PE lessons, assessing motor competence, diagnosing movement gaps in older learners, or building the movement base on which sport-specific skil...Votes: 0GitHub stars: 69
- Sport Education PedagogySport Education model and physical education pedagogy. Covers Siedentop's Sport Education model (seasons, affiliation, formal competition, record-keeping, festivity, culminating event), unit and lesson design for PE, grouping strategies, assessment frameworks, and the shift from "teaching activities" to "teaching sport as an authentic practice." Use when designing PE unit plans, transforming a traditional activity-of-the-week approach into a durable educational program, or aligning assessment...Votes: 0GitHub stars: 69
- Strength And ConditioningStrength, power, and conditioning principles for physical education. Covers the seven classical strength adaptations (hypertrophy, maximal strength, power, endurance, speed, agility, mobility), resistance training modalities, periodization models, age-appropriate progression, and injury prevention. Use when designing resistance units, prescribing off-season conditioning, adapting training for adolescent development, or integrating strength work into sport-specific preparation.Votes: 0GitHub stars: 69
- Classical MechanicsClassical mechanics from kinematics through rotational dynamics and oscillations. Covers 1D/2D/3D motion, Newton's three laws, free-body diagrams, friction, projectile motion, circular motion, rotational mechanics, gravitation and orbits, work-energy theorem, conservation of momentum, collisions, and simple harmonic motion. Use when analyzing forces, trajectories, orbital mechanics, or any problem where objects move under deterministic forces at non-relativistic speeds.Votes: 0GitHub stars: 69
- ElectromagnetismElectromagnetism from Coulomb's law through Maxwell's equations and optics. Covers electric fields, Gauss's law, electric potential, capacitance, DC circuits (Ohm's law, Kirchhoff's laws), magnetic fields and forces, Biot-Savart law, Ampere's law, Faraday's law of induction, Lenz's law, Maxwell's equations in integral and differential forms, electromagnetic waves, the speed of light derivation, and optics (reflection, refraction, lenses, interference, diffraction). Use when analyzing electric...Votes: 0GitHub stars: 69
- Quantum MechanicsQuantum mechanics from wave-particle duality through entanglement and measurement. Covers the photoelectric effect, de Broglie wavelength, Heisenberg uncertainty principle, the Schrodinger equation (time-dependent and time-independent), wave functions and probability, quantum states and superposition, the hydrogen atom (energy levels, quantum numbers), spin, Pauli exclusion principle, quantum tunneling, Feynman path integrals (conceptual), QED basics, entanglement (Bell's theorem), the measur...Votes: 0GitHub stars: 69
- Relativity AstrophysicsRelativity and astrophysics from special relativity through cosmology. Covers Einstein's postulates, time dilation, length contraction, Lorentz transformations, relativistic momentum and energy (E=mc^2), spacetime diagrams, the equivalence principle, curved spacetime (conceptual), gravitational lensing, black holes (Schwarzschild solution, Chandrasekhar limit), stellar evolution (main sequence through supernova), and cosmology (Big Bang, Hubble's law, CMB, dark matter, dark energy, FLRW metri...Votes: 0GitHub stars: 69
- ThermodynamicsThermodynamics from the zeroth law through statistical mechanics. Covers temperature and thermal equilibrium, heat transfer mechanisms (conduction, convection, radiation), the first law (internal energy, work, heat), PV diagrams, thermodynamic processes (isothermal, adiabatic, isobaric, isochoric), the second law (entropy, Carnot cycle, heat engines, refrigerators), Boltzmann's statistical interpretation (S = k ln W), kinetic theory of gases, the third law, phase transitions, and free energy ...Votes: 0GitHub stars: 69
- Collaborative Problem SolvingGroup problem solving with explicit structure. Covers shared mental models, role allocation, cognitive division of labor, building on ideas (yes-and), productive disagreement, and the moves that prevent social loafing and groupthink. Use for problems that exceed individual capacity or benefit from multiple expertise areas.Votes: 0GitHub stars: 69
- Agile MethodsAgile and Lean software development methodologies for iterative, adaptive project execution. Covers Scrum (roles, ceremonies, artifacts), Kanban (WIP limits, flow metrics), XP (TDD, pair programming, CI), SAFe overview, Lean Software Development (Poppendieck's 7 principles), user stories (INVEST criteria), estimation via story points and velocity, and the Agile Manifesto's values and principles. Includes Cynefin framework for methodology selection and GSD's relationship to Agile as a structur...Votes: 0GitHub stars: 69
- Estimation PlanningProject estimation and scheduling techniques for software development. Covers work breakdown structures (WBS), critical path method (CPM), PERT three-point estimation, Gantt charts, resource leveling, Goldratt's critical chain project management (buffer management), story point estimation, planning poker, reference class forecasting (Kahneman/Flyvbjerg), cone of uncertainty, schedule compression (crashing vs. fast-tracking), milestone planning, dependency management, and Brooks's Law. Connect...Votes: 0GitHub stars: 69
- Quality AssuranceQuality assurance and continuous improvement for software projects. Covers Deming's 14 Points for Management, PDCA cycle (Plan-Do-Check-Act), Six Sigma DMAIC, total quality management (TQM), quality metrics (defect density, code coverage, MTBF), testing strategies (unit, integration, system, acceptance), verification and validation (V&V), peer review and inspection, continuous improvement (kaizen), root cause analysis (5 Whys, fishbone), quality gates, definition of done, technical debt manag...Votes: 0GitHub stars: 69
- Retrospective LearningRetrospective facilitation and organizational learning for project teams. Covers retrospective formats (Start/Stop/Continue, 4Ls, timeline, sailboat), blameless postmortems, lessons learned databases, knowledge management, organizational learning theory (Senge's Fifth Discipline, Argyris's double-loop learning), after-action reviews (military AAR heritage), GSD's session-to-session retrospective pattern, metrics-driven improvement, celebration of success, psychological safety for honest retro...Votes: 0GitHub stars: 69
- Risk ManagementProject risk identification, analysis, and response planning for software and systems projects. Covers probability-impact matrices, qualitative and quantitative risk analysis, Monte Carlo simulation for schedule risk, FMEA for projects, decision trees, expected monetary value, risk registers, and response strategies (avoid, mitigate, transfer, accept). Draws on NASA risk management heritage and Brooks's "no silver bullet" philosophy. Includes technical debt, dependency risk, and integration r...Votes: 0GitHub stars: 69
- Stakeholder CommunicationStakeholder identification, communication planning, and facilitation for project teams. Covers power/interest grid mapping, communication plans (audience, frequency, channel), status reporting (RAG, earned value, burn charts), RACI matrices, meeting facilitation, conflict resolution, change management (Kotter's 8 steps), psychological safety (Edmondson), managing up, and remote/distributed team communication. Integrates GSD's "docs are the story" principle as a communication strategy.Votes: 0GitHub stars: 69
- Clinical FoundationsFoundations of clinical psychology and psychopathology. Covers anxiety disorders (generalized anxiety, panic, phobias, OCD, PTSD), depressive disorders (major depression, persistent depressive disorder, bipolar), personality theories (psychodynamic, trait/Big Five, humanistic, social-cognitive), therapeutic approaches (CBT, psychodynamic, humanistic/person-centered, behavioral, pharmacological), the biopsychosocial model, DSM diagnostic framework, and the evidence base for psychological treat...Votes: 0GitHub stars: 69
- Cognitive PsychologyCore cognitive processes underlying human thought and behavior. Covers attention (selective, divided, sustained), memory systems (sensory, working, long-term, encoding, retrieval, forgetting), perception (top-down, bottom-up, Gestalt principles, perceptual constancy), decision-making (heuristics, biases, prospect theory, bounded rationality), language processing (comprehension, production, Broca/Wernicke, bilingualism), and problem-solving (algorithms, heuristics, insight, functional fixednes...Votes: 0GitHub stars: 69
- Social PsychologyHow individuals think about, influence, and relate to one another. Covers conformity (Asch line experiments, informational vs. normative influence), obedience (Milgram experiments, situational factors), attitudes (formation, change, cognitive dissonance, persuasion), group dynamics (groupthink, social facilitation, social loafing, deindividuation), and prejudice (stereotyping, implicit bias, stereotype threat, intergroup conflict, contact hypothesis). Use when analyzing social influence, grou...Votes: 0GitHub stars: 69
- Rca Distributed SystemsRoot cause analysis techniques for modern distributed systems, microservices, and cloud infrastructure. Covers trace-based causality (OpenTelemetry, Jaeger, Tempo), service dependency graph analysis, DynaCausal-style dynamic causality-aware RCA, anomaly localization with metrics/logs/traces correlation, the Microsoft AgentRx framework for AI agent failures, chaos-engineering-as-RCA, and the 2025 industry shift toward causal-graph-based AIOps. Use when investigating a production incident in a ...Votes: 0GitHub stars: 69
- Literary AnalysisInterpretive methods for analyzing literary texts including fiction, poetry, drama, and creative nonfiction. Covers narrative elements (character, plot, setting, point of view, theme), literary devices (symbolism, imagery, irony, foreshadowing, allusion), critical lenses (formalist, reader-response, historical, feminist, postcolonial, psychoanalytic, Marxist), close reading of prose and poetry, intertextuality and influence, and the relationship between form and meaning. Use when interpreting...Votes: 0GitHub stars: 69
- Phonics DecodingLetter-sound relationships, decoding strategies, and word-attack skills for reading unfamiliar text. Covers alphabetic principle, phoneme-grapheme correspondences (single letters, digraphs, diphthongs, r-controlled vowels), syllable types (closed, open, VCe, vowel team, r-controlled, consonant-le), morphemic analysis (prefixes, suffixes, roots), multisyllabic word strategies, and fluency development through automaticity. Use when teaching decoding, diagnosing reading errors, analyzing miscue ...Votes: 0GitHub stars: 69
- Reading ComprehensionStrategies for constructing meaning from text, monitoring understanding, and repairing comprehension breakdowns. Covers before-during-after reading framework, seven evidence-based comprehension strategies (activating prior knowledge, questioning, visualizing, inferring, determining importance, summarizing, monitoring/fix-up), text structure recognition (narrative and expository), schema theory, close reading protocols, and the gradual release of responsibility instructional model. Use when te...Votes: 0GitHub stars: 69
- Vocabulary DevelopmentWord learning strategies, vocabulary instruction, and lexical development for reading comprehension. Covers Beck's three-tier vocabulary model, context clue strategies (definition, synonym, antonym, example, inference), morphological analysis (prefixes, suffixes, roots, etymology), word consciousness and word play, academic vocabulary across disciplines, figurative language (metaphor, simile, idiom, personification, hyperbole), dictionary and reference skills, and vocabulary-comprehension con...Votes: 0GitHub stars: 69
- Data FidelityFact-checking and source verification workflow for research documents. Launches parallel fact-checkers, aggregates findings, applies corrections systematically.Votes: 0GitHub stars: 69
- Research EngineAutonomous research pipeline — topic to structured documents with HTML/PDF output. Proven at HEL (28 docs, 91K words) and OOPS (9 docs, 20K words) scale.Votes: 0GitHub stars: 69
- Earth Life SystemsEarth and life systems as contexts for scientific inquiry. Covers ecosystems, biodiversity, biogeochemical cycles, climate systems, geological processes, and human impacts -- not as content to memorize but as case studies for applying the scientific method, experimental design, data analysis, and field observation. Use when applying scientific inquiry skills to ecological, environmental, or biological questions.Votes: 0GitHub stars: 69
- History Philosophy ScienceThe history and philosophy of science as a meta-discipline. Covers scientific paradigms and paradigm shifts, the nature of scientific theories versus hypotheses and laws, landmark discoveries as case studies in methodology, creativity and serendipity in science, the social and cultural context of scientific practice, and science-society relationships. Use when teaching, discussing, or evaluating the nature of science, its history, or its place in society.Votes: 0GitHub stars: 69
- Science CommunicationPrinciples and practices of communicating science to diverse audiences. Covers the CER (claims-evidence-reasoning) framework, lab report structure, peer review, scientific argumentation, audience adaptation, the baloney detection kit for evaluating sources, and the art of making complex ideas accessible without sacrificing accuracy. Use when writing, presenting, evaluating, or teaching science communication at any level.Votes: 0GitHub stars: 69
- Scientific MethodThe scientific method as an epistemological framework for producing reliable knowledge. Covers observation, question formation, hypothesis construction, experimental testing, data analysis, conclusion, and communication -- not as a rigid sequence but as an iterative cycle of inquiry. Includes falsifiability criteria, the role of replication, and the distinction between science, non-science, and pseudoscience. Use when teaching, applying, or evaluating the process of scientific inquiry at any ...Votes: 0GitHub stars: 69
- 3d Interaction DesignDesign heuristics for three-dimensional interaction — input modalities (6DoF controllers, gaze, gesture, voice), selection and manipulation techniques (ray-cast, virtual hand, go-go, world-in-miniature), navigation (teleport, continuous, redirected walking), and feedback loops (haptic, audio, visual). Covers Fitts' law in 3D, discoverability vs affordance, safe-zone design, and comfort/simulator sickness mitigation. Use when designing VR/AR interactions, immersive walkthroughs, or any input s...Votes: 0GitHub stars: 69
- Augmented Reality TrackingTracking and registration fundamentals for augmented reality. Covers the six classes of tracking (marker, markerless, inertial, SLAM, outside-in, inside-out), registration error sources (calibration, latency, drift, distortion), the Azuma definition of AR, display configurations (optical see-through, video see-through, projection, handheld), and the interaction between tracking precision and user perception of "being there." Use when designing AR experiences, diagnosing registration issues, o...Votes: 0GitHub stars: 69
- Embodied Computing And ConstructionismEmbodied computing and constructionist pedagogy for spatial computing education. Covers Papert's constructionism, Logo's turtle geometry, body-scale learning, Krueger's responsive environments, microworlds, and the translation between physical action and abstract reasoning. Includes heuristics for designing exercises where learners build meaningful artifacts in spatial systems, treat errors as discoveries, and develop abstract thinking from concrete body-centered experience. Use when teaching...Votes: 0GitHub stars: 69