topology
P1372
predicate
Indicates the structural or spatial arrangement and connectivity pattern among components within a system.
All labels observed (4)
| Label | Occurrences |
|---|---|
| topology canonical | 120 |
| topologicalType | 3 |
| topologyInformation | 1 |
| topologyScope | 1 |
Description generation (PDg)
The one-sentence description above was generated by prompting gpt-5.1 with the predicate name and this instruction.
Instruction
Given a predicate that represents a relationship or action between entities, generate a one-sentence description explaining its meaning. # Instructions Focus on describing the relationship, not the entities themselves. # Response Format Begin the description with \' Indicates...\'
Input
Predicate: topology
Generated description
Indicates the structural or spatial arrangement and connectivity pattern among components within a system.
Sample triples (125)
| Subject | Object |
|---|---|
| Weil group | locally compact topology ⓘ |
| Weil group | non-Hausdorff topology ⓘ |
| CD20 protein | multi‑pass transmembrane protein ⓘ |
| Dehn twist | isotopy class of a homeomorphism via predicate surface "topologicalType" ⓘ |
| PCI-X | shared parallel bus ⓘ |
| Norton equivalent circuit | parallel connection of current source and resistor ⓘ |
| CAN bus | multi-master ⓘ |
| CAN bus | broadcast ⓘ |
| Open System for Communication in Realtime | client–server ⓘ |
| G3-PLC | tree topology ⓘ |
| G3-PLC | mesh topology ⓘ |
| PRIME PLC | low-voltage distribution networks ⓘ |
| PRIME PLC | medium-voltage distribution networks ⓘ |
|
Hilbert–Schmidt operators
surface form:
Hilbert–Schmidt operator
|
Hilbert–Schmidt norm topology ⓘ |
| Sobolev spaces | norm topology induced by Sobolev norm ⓘ |
| 1000BASE-CX | point-to-point ⓘ |
| Sercos I | ring topology ⓘ |
| FSoE (FailSafe over EtherCAT) | supports typical EtherCAT line topology ⓘ |
| FSoE (FailSafe over EtherCAT) | supports EtherCAT ring topology ⓘ |
| FSoE (FailSafe over EtherCAT) | supports EtherCAT tree topology ⓘ |
| PoDL | point-to-point link ⓘ |
| Stone–Weierstrass theorem | uniform norm topology ⓘ |
| Profibus PA | bus topology ⓘ |
| Profibus PA | tree topology with spurs ⓘ |
| ISO(n) | Lie group topology induced from O(n) × R^n ⓘ |
| 100GBASE-KR1 | point-to-point link ⓘ |
| 400GBASE-CR4 | point-to-point link ⓘ |
|
special unitary group SU(n)
surface form:
SU(n)
|
a compact smooth manifold of real dimension n² − 1 ⓘ |
| FTTH | point-to-point fiber ⓘ |
| FTTH | PON ⓘ |
| Rindler wedge | topologically equivalent to half-space in Minkowski spacetime ⓘ |
| Stern–Brocot tree | countably infinite set of nodes ⓘ |
|
StackWise technology (on some models)
surface form:
StackWise technology
|
ring-based stack interconnect ⓘ |
| SL(2,R) | diffeomorphic to S^1×R^2 ⓘ |
| PCI bus | shared bus ⓘ |
| Q-bus | backplane bus ⓘ |
| UUCP | point-to-point ⓘ |
| Julia set | can be a simple closed curve for some polynomials ⓘ |
| Julia set | can be a dendrite (locally connected continuum without simple closed curves) ⓘ |
| Julia set | can be totally disconnected ⓘ |
| FDDI | dual-ring ⓘ |
| FDDI | token-passing ring ⓘ |
| Percona XtraDB Cluster | multi-node cluster ⓘ |
| Percona XtraDB Cluster | multi-datacenter deployment ⓘ |
| Chongqing urban road network | multi-level ⓘ |
| Chongqing urban road network | highly interconnected ⓘ |
| Versa Module Europa bus | backplane bus ⓘ |
| UNIBUS | backplane bus ⓘ |
| AppleTalk Phase 1 | daisy-chain LocalTalk bus ⓘ |
| SPI | master-slave ⓘ |