Research Template — TriadicFrameworks Prompts
This template defines the standard research grammar for TriadicFrameworks.
Purpose#
Use this template when you need to:
- conduct substrate‑aware, drift‑bounded research
- structure inquiry using RTT operator grammar
- identify drift across competing theories or models
- declare coherence anchors during research
- evaluate multi‑layer alignment in research findings
- detect regime‑points across RTT/1 → RTT∞
- perform cross‑domain synthesis
- maintain structural neutrality during research
Research Template#
1. Research Identity#
Declare the identity, scope, and commitments of the research question.
Prompt:
- Declare the identity of this research question. What is its scope, purpose, and boundary?
2. Structural Commitments#
Identify the structural commitments embedded in the inquiry.
Prompt:
- Identify the structural commitments of this research question (identity, boundary, commitment, topology).
3. Research Operators#
Identify the operators governing the research structure.
Prompt:
- Identify the research operators present in this inquiry (structural, drift, coherence, regime, dimensional, domain).
4. Drift‑Tensor Research#
Surface drift across theories, models, or findings.
Prompt:
- Identify geometric drift across these interpretations.
- Identify operational drift across these research steps.
- Identify temporal drift across these findings.
- Identify conceptual drift across these explanations.
- Identify domain drift across these frameworks.
5. Coherence Anchors#
Declare what remains aligned across competing explanations.
Prompt:
- Identify purpose coherence across these models.
- Identify constraint coherence across these findings.
- Identify goal coherence across these interpretations.
- Identify continuity coherence across these transitions.
6. Regime‑Point Research#
Surface presence, absence, tension, and attractor behavior.
Prompt:
- Identify presence in this research regime.
- Identify absence in this theoretical model.
- Declare tension across these research layers.
- Identify basin behavior in this research attractor.
- Surface regime‑point transitions across this domain.
7. Substrate‑Tensor Research#
Analyze substrate behavior and substrate transitions.
Prompt:
- Identify substrate behavior across these research conditions.
- Surface substrate drift across these layers.
- Declare substrate coherence across these findings.
- Map substrate‑tensor transitions across this inquiry.
8. Dimensional Rails#
Analyze dimensional movement across the research layers.
Prompt:
- Identify dimensional rails across this research.
- Surface dimensional drift across these layers.
- Declare dimensional coherence across these transitions.
- Identify prime‑state transitions across this research path.
9. Cross‑Domain Research#
Evaluate alignment across multiple domains.
Prompt:
- Evaluate alignment across psychology, physics, economics, governance, AI/agents, and biology.
- Identify operator consistency across domains.
- Declare coherence across domain transitions.
- Surface substrate alignment across domain conditions.
- Evaluate dimensional alignment across domain rails.
10. Research Synthesis#
Produce a resonance‑aligned synthesis summary.
Prompt:
- Produce a research synthesis summary across all layers (structure, drift, coherence, regime‑points, substrate, 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_Substrate.md— substrate templatep_Teaching.md— teaching template
Manifest#
See module.json for the full registry of templates, modules, stacks, engines, UI
modules, and navigation structure.
