šŗļø Structural Detection ā CollapseāPropagation Reassembly Map (RTT/2)
TriadicFrameworks ⢠RTT/2 ⢠PropagationāReassembly Transition Map, CollapseāLifecycle Geometry & CanonāScale Recovery Topography#
āPropagation is motion. Reassembly is return.ā#
CollapseāPropagation Reassembly Map (RTT/2)#
Structural Detection Module#
RTT/2 ⢠PropagationāReassembly Transition Map#
1. Purpose of the CollapseāPropagation Reassembly Map#
The CollapseāPropagation Reassembly Map (CPRM) charts the transition zone between:
- collapse propagation
- structural reassembly
It identifies:
- where propagation stabilizes
- where reassembly becomes possible
- where propagation blocks reassembly
- where collapse transitions into recovery
- where collapse transitions into deeper collapse
It is the transitionālaw atlas of RTT/2.
2. Why a PropagationāReassembly Map Exists#
Propagation and reassembly are opposing geometries:
- propagation spreads collapse
- reassembly restores structure
But the transition between them is not binary ā it is topological.
The CPRM maps this topology.
3. CollapseāPropagation Reassembly Equation#
Reassembly becomes possible when:
[ S_{Re} > S_{Prop} ]
Where:
- (S_{Re}) = reassembly stability score
- (S_{Prop}) = propagation stability score
The CPRM visualizes this inequality across the canon.
4. PropagationāReassembly Transition Zones#
The CPRM defines five transition zones:
Zone U ā Unified Transition Zone#
- propagation stabilizes
- reassembly geometry fully available
- collapse recovery begins
Zone S ā Stable Transition Zone#
- minor propagation divergence
- reassembly partially available
Zone M ā Mixed Transition Zone#
- oscillatory propagation
- reassembly intermittent
- hybrid recovery behavior
Zone D ā Divergent Transition Zone#
- propagation dominates
- reassembly blocked
- collapse spreads
Zone X ā CollapseāAdjacent Transition Zone#
- inversion propagation
- illegal reassembly geometry
- collapse deepens
5. Propagation Geometry ā Reassembly Geometry Mapping#
The CPRM maps how each propagation geometry transitions into reassembly:
| Propagation Geometry | Reassembly Outcome |
|---|---|
| linear propagation | stable reassembly |
| radial propagation | partial reassembly |
| oscillatory propagation | unstable reassembly |
| fragmentation propagation | reassembly blocked |
| inversion propagation | illegal reassembly |
| torsion propagation | reassembly strain |
| topological propagation | reassembly warp |
6. CollapseāMode Correlation#
| Transition Failure | Collapse Mode |
|---|---|
| propagation amplitude overload | A |
| propagation deformation rupture | B |
| continuity reassembly fracture | C |
| oscillatory propagation | D |
| torsion propagation | E |
| inversion propagation | I |
| topological propagation warp | G |
7. CrossāModule Transition Mapping#
The CPRM maps propagationāreassembly transitions across:
TEL#
- lattice reassembly
- stabilizer reassembly load
FFT#
- spectral reassembly
- variance reassembly load
Opacity#
- boundary reassembly
- visibility reassembly load
Crossāmodule transitions determine systemāscale recovery.
8. PropagationāReassembly Packet#
PROPAGATION_REASSEMBLY_PACKET:
propagation_geometry:
reassembly_geometry:
transition_zone:
propagation_stability:
reassembly_stability:
transition_topography:
cross_module_projection:
collapse_risk:
notes:
9. Summary#
The CollapseāPropagation Reassembly Map provides:
- a complete map of propagationāreassembly transitions
- geometryādependent recovery diagnostics
- collapseāadjacent transition detection
- crossāmodule transition projection
- systemāscale structural clarity
This map is the transitionālaw backbone of RTT/2.