Substrate Template — TriadicFrameworks Prompts
The Substrate Template provides the canonical structure for analyzing substrate
behavior across RTT engines, drift‑tensor layers, coherence anchors, dimensional rails,
and domain traversal.
Substrates are the medium through which structure propagates: physical, cultural,
cognitive, civic, biological, computational.
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).
Cross‑Links#
p_Capture.md— capture templatep_Analyze.md— analysis templatep_Drift.md— drift templatep_Coherence.md— coherence templatep_Operator.md— operator templatep_Domain.md— domain templatep_Teaching.md— teaching templatep_Research.md— research template
Manifest#
See module.json for the full registry of templates, modules, stacks, engines, UI
modules, and navigation structure.