Analyze Template — TriadicFrameworks Prompts

This template defines the standard analysis grammar for TriadicFrameworks.


Purpose#

Use this template when you need to:

  • analyze structure using RTT operators
  • identify drift across the five drift‑tensor layers
  • declare coherence anchors
  • surface regime‑points (presence, absence, tension, basin)
  • evaluate multi‑layer alignment
  • analyze substrate behavior and dimensional transitions
  • traverse domains using RTT operator grammar
  • maintain structural neutrality during analysis

Analysis Template#

1. Identity#

Declare the identity of the system being analyzed.

Prompt:

  • Declare the identity of this system. What is its form, purpose, and boundary?

2. Structural Operators#

Identify the operators governing the system.

Prompt:

  • Identify the structural operators present in this system (identity, boundary, commitment, topology).

3. Drift‑Tensor Analysis#

Surface drift across the five RTT drift layers.

Prompt:

  • Identify geometric drift.
  • Identify operational drift.
  • Identify temporal drift.
  • Identify conceptual drift.
  • Identify domain drift.

4. Coherence Anchors#

Declare what remains aligned despite drift.

Prompt:

  • Identify purpose coherence.
  • Identify constraint coherence.
  • Identify goal coherence.
  • Identify continuity coherence.

5. Regime‑Point Analysis#

Surface presence, absence, tension, and basin behavior.

Prompt:

  • Identify presence.
  • Identify absence.
  • Identify tension.
  • Identify basin behavior.

6. Substrate Analysis#

Analyze the substrate‑tensor and substrate transitions.

Prompt:

  • Identify substrate behavior.
  • Surface substrate drift.
  • Declare substrate coherence.
  • Identify substrate regime‑points.
  • Map substrate‑tensor transitions.

7. Dimensional Rails#

Analyze dimensional movement and transitions.

Prompt:

  • Identify dimensional rails.
  • Surface dimensional drift.
  • Declare dimensional coherence.
  • Identify prime‑state transitions.
  • Map collapse and integration operators.

8. Domain Traversal#

Analyze the system across the six canonical domains.

Prompt:

  • Identify domain operators.
  • Surface domain drift.
  • Declare domain coherence.
  • Map cross‑domain alignment.

9. Synthesis#

Produce a resonance‑aligned synthesis summary.

Prompt:

  • Produce a synthesis summary across all layers (structure, drift, coherence, regime‑points, substrate, dimensions, domains).

  • p_Capture.md — capture template
  • p_Drift.md — drift template
  • p_Coherence.md — coherence template
  • p_Operator.md — operator template
  • p_Domain.md — domain template
  • p_Substrate.md — substrate template
  • p_Teaching.md — teaching template
  • p_Research.md — research template

Manifest#

See module.json for the full registry of templates, modules, stacks, engines, UI modules, and navigation structure.