meta

Extract and preserve Meta Energy Theory axioms and law families.

Updated May 23, 2026
One-click install
npx skills add https://github.com/The-Interdependency/skill-lib --skill meta-the-interdependency
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: meta
Source: https://github.com/The-Interdependency/skill-lib/tree/main/meta
Command: npx skills add https://github.com/The-Interdependency/skill-lib --skill meta-the-interdependency

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes scripts (resource) and references (resource) components.

What problem does it solve?

This Skill helps users to extract, preserve, and apply Meta Energy Theory axioms, derived law families, and cross-domain resonances without flattening them into EDCMBONE flesh/bone or FLAR implementation detail.

Core Features & Use Cases

  • Energy Theory Extraction: Extracts and preserves Energy Theory axioms and law families.
  • Cross-Domain Resonance Analysis: Analyzes and applies cross-domain resonances between Energy Theory and other fields like physics, chemistry, and computation.
  • Interface Distinction Preservation: Ensures that Energy Theory, FLAR, EDCM, EDCMBONE, and The Interdependent Way remain distinct during application.

Quick Start

Load the meta skill to define or extend Energy Theory, compare resonances, document gradients and flow, or when a repository needs an Energy Theory narrative.

Frequently Asked Questions about meta

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

FAQPage Schema
What is Meta Energy Theory and how does it apply cross-domain resonance?

Meta Energy Theory provides axioms and law families that map energy gradients across physics, chemistry, and computation. Cross-domain resonance applies these extracted principles to conceptualize and align energy flow dynamics without flattening them into implementation details.

How do I extract Energy Theory axioms and derived law families?

Load the meta skill to extract and preserve Energy Theory axioms and law families. This process isolates theoretical principles from FLAR and EDCMBONE implementation layers, generating a repository narrative that maintains distinct conceptual interfaces.

Do I need to understand FLAR and EDCMBONE concepts to use Energy Theory extraction?

Yes, understanding Energy Theory, FLAR, and EDCMBONE concepts is required. This prerequisite knowledge ensures you can preserve interface distinctions between the theoretical axioms and their structural flesh or bone implementations during application.

Can I analyze cross-domain resonances between Energy Theory and other scientific fields?

Yes, cross-domain resonance analysis compares extracted Energy Theory axioms against fields like physics and computation. The meta skill preserves interface distinctions, ensuring The Interdependent Way and EDCM remain separate from core theoretical mappings.

When should I preserve interface distinctions between Energy Theory and FLAR?

Interface distinctions between Energy Theory, FLAR, EDCM, and EDCMBONE must be preserved whenever you document gradients, extend axioms, or generate an Energy Theory narrative to prevent conceptual flattening into structural implementation details.

Why does my Energy Theory narrative flatten into EDCMBONE implementation details?

Conceptual flattening occurs when interface distinctions are not actively preserved. The meta skill solves this by extracting Meta Energy Theory axioms and cross-domain resonances while maintaining strict separation from EDCMBONE flesh and bone structures.