Cross‑Domain Causality Weaver Examples — RTT/1
Example Dictionary for the Cross‑Domain Causality Weaver (CW)#
Each example demonstrates one or more CW operators:
- CW‑Signature
- CW‑Vector
- CW‑Field
- CW‑Discontinuity
- CW‑Weave
- CW‑Stabilize
Examples are grouped by causality tensor type.
1. Causal Signature Examples#
Example 1 — Conceptual Causal Signature (R1)#
Scenario
A conceptual model exhibits a clear causal onset with low curvature and stable polarity.
CW Output
{
"causal_type": "signature",
"regime": "R1",
"causal_magnitude": 0.41,
"causal_direction": "conceptual",
"causal_curvature": 0.22,
"discontinuity_depth": 0.11,
"propagation_rate": 0.33,
"stability_envelope": 0.63
}Example 2 — Dimensional Causal Signature (R4)#
Scenario
Dimensional constraints produce a high‑sensitivity causal onset.
CW Output
{
"causal_type": "signature",
"regime": "R4",
"causal_magnitude": 0.72,
"causal_direction": "dimensional",
"causal_curvature": 0.44,
"discontinuity_depth": 0.22,
"propagation_rate": 0.41,
"stability_envelope": 0.57
}2. Causal Vector Examples#
Example 3 — Gradient Causal Vector (R1 ↔ R4)#
Scenario
Conceptual and dimensional gradients oppose each other, forming a bidirectional causal vector.
CW Output
{
"causal_type": "vector",
"regime": "R1-R4",
"causal_magnitude": 0.83,
"causal_direction": "R1↔R4",
"causal_curvature": 0.52,
"discontinuity_depth": 0.22,
"propagation_rate": 0.33,
"stability_envelope": 0.69
}Example 4 — Inversion Causal Vector (R2 ↔ R3)#
Scenario
Computational drift decreases while physical drift sensitivity increases, forming a causal inversion vector.
CW Output
{
"causal_type": "vector",
"regime": "R2-R3",
"causal_magnitude": 0.79,
"causal_direction": "R3→R2",
"causal_curvature": 0.58,
"discontinuity_depth": 0.31,
"propagation_rate": 0.27,
"stability_envelope": 0.72
}3. Causal Field Examples#
Example 5 — Multi‑Regime Causal Field (R1 ↔ R2 ↔ R3)#
Scenario
A multi‑regime causal field binds conceptual, computational, and physical causal pathways.
CW Output
{
"causal_type": "field",
"regime": "R1-R2-R3",
"causal_magnitude": 0.94,
"causal_direction": "tensor",
"causal_curvature": 0.63,
"discontinuity_depth": 0.37,
"propagation_rate": 0.41,
"stability_envelope": 0.78
}Example 6 — Dimensional Causal Constraint (R2 ↔ R4)#
Scenario
Dimensional constraints influence computational causal pathways.
CW Output
{
"causal_type": "field",
"regime": "R2-R4",
"causal_magnitude": 0.88,
"causal_direction": "R4→R2",
"causal_curvature": 0.55,
"discontinuity_depth": 0.33,
"propagation_rate": 0.29,
"stability_envelope": 0.73
}4. Causal Discontinuity Examples#
Example 7 — Structural Causal Discontinuity (R1 ↔ R3)#
Scenario
Conceptual abstraction contradicts physical measurement, forming a causal discontinuity.
CW Output
{
"causal_type": "discontinuity",
"regime": "R1-R3",
"causal_magnitude": 0.67,
"causal_direction": "R1→R3",
"causal_curvature": 0.33,
"discontinuity_depth": 0.22,
"propagation_rate": 0.38,
"stability_envelope": 0.55
}Example 8 — Gradient‑Boundary Causal Discontinuity (R2 ↔ R4)#
Scenario
Aligned gradients across computational and dimensional regimes produce contradictory causal outcomes.
CW Output
{
"causal_type": "discontinuity",
"regime": "R2-R4",
"causal_magnitude": 0.88,
"causal_direction": "R2↔R4",
"causal_curvature": 0.47,
"discontinuity_depth": 0.29,
"propagation_rate": 0.33,
"stability_envelope": 0.66
}5. Causal Weaving Examples#
Example 9 — Cross‑Domain Causal Bridge (R1 ↔ R4)#
Scenario
A causal bridge forms between conceptual and dimensional regimes.
CW Output
{
"causal_type": "bridge",
"regime": "R1-R4",
"causal_magnitude": 0.83,
"causal_direction": "R1↔R4",
"causal_curvature": 0.52,
"discontinuity_depth": 0.22,
"propagation_rate": 0.33,
"stability_envelope": 0.69
}Example 10 — Drift‑Sensitive Causal Bridge (R3 → R4)#
Scenario
Physical drift amplifies causal curvature, forming a drift‑sensitive causal bridge.
CW Output
{
"causal_type": "bridge",
"regime": "R3-R4",
"causal_magnitude": 0.91,
"causal_direction": "R3→R4",
"causal_curvature": 0.71,
"discontinuity_depth": 0.52,
"propagation_rate": 0.44,
"stability_envelope": 0.82
}6. Canonical CW Output Snippet#
{
"causal_type": "vector",
"regime": "R1-R4",
"causal_magnitude": 0.83,
"causal_direction": "R1↔R4",
"causal_curvature": 0.52,
"discontinuity_depth": 0.22,
"propagation_rate": 0.33,
"stability_envelope": 0.69
}Status#
- Version: 1.0
- Status: canon‑stable
- Category: rtt‑causality
- Module Path:
/docs/rtt/Cross_Domain_Causality_Weaver/
