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Substrate Template — TriadicFrameworks Prompts

This template defines the standard substrate‑analysis grammar for TriadicFrameworks.


Purpose#

Use this template when you need to:

  • identify substrate identity and boundaries
  • analyze substrate behavior
  • surface substrate drift
  • declare substrate coherence
  • evaluate substrate‑tensor transitions
  • analyze dimensional rails inside substrate behavior
  • traverse domains using substrate grammar
  • maintain structural neutrality during substrate analysis

Substrate Template#

1. Substrate Identity#

Capture the identity, boundaries, and commitments of the substrate.

Prompt:

  • Declare the identity of this substrate. What defines its medium, boundary, and purpose?

2. Substrate Behavior#

Identify how the substrate behaves under RTT operators.

Prompt:

  • Describe substrate behavior across structural, drift, coherence, regime, dimensional, and domain layers.

3. Substrate Drift#

Surface drift across substrate conditions or transitions.

Prompt:

  • Identify substrate drift across geometric, operational, temporal, conceptual, and domain layers.

4. Substrate Coherence#

Declare what remains aligned across substrate differences.

Prompt:

  • Identify substrate coherence (purpose, constraint, goal, continuity).

5. Substrate Regime‑Points#

Surface presence, absence, tension, and attractor behavior inside the substrate.

Prompt:

  • Identify substrate presence.
  • Identify substrate absence.
  • Declare substrate tension.
  • Identify basin behavior in this substrate regime.
  • Surface attractor patterns across this substrate.

6. Substrate‑Tensor Transitions#

Analyze transitions across substrate‑tensor layers.

Prompt:

  • Map substrate‑tensor transitions (rail, drift, coherence, regime, integration, collapse).

7. Dimensional Rails in the Substrate#

Analyze dimensional movement inside the substrate.

Prompt:

  • Identify dimensional rails inside this substrate.
  • Surface dimensional drift across substrate layers.
  • Declare dimensional coherence inside this substrate.
  • Identify prime‑state transitions across substrate rails.

8. Domain Behavior in the Substrate#

Evaluate how domains manifest inside the substrate.

Prompt:

  • Identify domain behavior inside this substrate.
  • Surface domain drift across substrate conditions.
  • Declare domain coherence inside this substrate.
  • Map cross‑domain substrate alignment.

9. Substrate Synthesis#

Produce a substrate‑aligned synthesis summary.

Prompt:

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

  • p_Capture.md — capture template
  • p_Analyze.md — analysis template
  • p_Drift.md — drift template
  • p_Coherence.md — coherence template
  • p_Operator.md — operator template
  • p_Domain.md — domain 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.