physics-llm-wiki

Organize physics research materials into structured Obsidian Markdown wiki pages.

Updated Jun 18, 2026
One-click install
npx skills add https://github.com/zzr2718281828/claude-physics --skill physics-llm-wiki
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: physics-llm-wiki
Source: https://github.com/zzr2718281828/claude-physics/tree/main/.claude/skills/physics-llm-wiki
Command: npx skills add https://github.com/zzr2718281828/claude-physics --skill physics-llm-wiki

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This Skill solves the challenge of turning scattered physics notes, papers, problems, derivations, and lectures into a structured, maintainable knowledge base with consistent organization and traceable connections.

Core Features & Use Cases

  • Knowledge Organization: Converts physics materials into structured Obsidian Markdown pages across concepts, derivations, methods, problems, papers, and synthesis documents.
  • Wiki Maintenance: Guides updates to indexes, logs, links, classifications, and knowledge structures while preserving raw source materials.
  • Use Case: When collecting electromagnetism papers and lecture notes, use this Skill to create linked concept pages, derivation pages, and learning roadmaps with clear assumptions and physical interpretations.

Quick Start

Use the physics-llm-wiki skill to organize these physics notes into the appropriate wiki pages with links, formulas, assumptions, and source tracking.

Frequently Asked Questions about physics-llm-wiki

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I organize scattered physics research notes into a structured knowledge wiki?

To organize physics research notes into a structured knowledge wiki, convert raw materials into linked Markdown pages for concepts, derivations, and references. This process maintains source separation, metadata consistency, and wiki integrity checks.

How do I structure physics derivations and assumptions in Obsidian?

Structure physics derivations in Obsidian by creating dedicated Markdown pages that link concepts, formulas, and assumptions. Apply source tracking and metadata classification to maintain mathematical clarity and preserve raw lecture or paper materials.

Can I use this to maintain wiki indexes and links across long-term physics notes?

Yes, you can maintain wiki indexes and links across long-term physics notes by guiding updates to classifications, knowledge structures, and logs. This ensures metadata consistency and traceable connections without altering raw source materials.

What's the best way to connect electromagnetism papers and lecture notes for a learning roadmap?

The best way to connect electromagnetism papers and lecture notes is generating linked concept pages, derivation pages, and learning roadmaps. This ensures clear physical interpretations and assumptions are tracked across all source materials.

What are the limitations when adding new physics problems to an existing Obsidian knowledge base?

When adding new physics problems to an Obsidian knowledge base, limitations include maintaining strict page classification and source separation. You must perform wiki integrity checks to ensure metadata consistency and proper link updates without corrupting existing structures.