harmony · relational
Several systems whose windows overlap across the region they jointly occupy, so that each system's ordinary drift keeps the others within their windows.
Examples
- The International Space Station maintains attitude control using gyroscopes and thrusters to counteract orbital drift. engineering
- Neurons in the human brain synchronize firing patterns through inhibitory and excitatory signals, sustaining stable network rhythms. biology
- The Federal Reserve adjusts interest rates in response to inflation trends to keep the economy within targeted growth windows. economics
Emergence
through: The systems' overlapping condition windows allow mutual tolerance of aimless drift, enabling coexistence within a shared spatial region where each sustains its parameters through upkeep.
- mutual tolerance of drift
- shared spatial persistence
- interdependent stability
Chain to foundations
as tree
- harmonyL15
- windowL7
- parameterL4
- rangeL3
- boundaryL2 (shown above)
- persistL1 (shown above)
- changeL1 (shown above)
- outsideL6
- partL1 (shown above)
- driftL11
- parameterL4 (shown above)
- changeL1 (shown above)
- goL3
- makeL4
- nothingL10
- noneL9
- differenceL1 (shown above)
- amountL8
- offL2
- spaceL0 (shown above)
- differenceL1 (shown above)
- noneL9
- wayL9
- spaceL0 (shown above)
- linksL8
- partL1 (shown above)
- connectsL7
- flowL3
- interactionL2 (shown above)
- persistL1 (shown above)
- structureL2 (shown above)
- broughtL6
- happenL2
- parameterL4 (shown above)
- boundaryL2 (shown above)
- maintenanceL14
- acrossL14
- keepL5 (shown above)
- occupiedL8
- othersL2 (shown above)
- regionL6
- severalL7
- systemL5
- setsL3 (shown above)
- partL1 (shown above)
- structureL2 (shown above)
- interactionL2 (shown above)
- windowL7
Neighborhood
Concepts that depend on this one above; what it is built from below.