captures
P4236
predicate
Indicates that one entity seizes, traps, or takes control of another entity, often preventing its escape or freedom.
All labels observed (3)
| Label | Occurrences |
|---|---|
| captures canonical | 304 |
| captured | 202 |
| capturedAssets | 2 |
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: captures
Generated description
Indicates that one entity seizes, traps, or takes control of another entity, often preventing its escape or freedom.
Sample triples (508)
| Subject | Object |
|---|---|
| Travelogue (2002 film) soundtrack | tone of Travelogue (2002 film) ⓘ |
| Travelogue (2002 film) soundtrack | atmosphere of Travelogue (2002 film) ⓘ |
| Aistulf | Ravenna via predicate surface "captured" NERFINISHED ⓘ |
| Aistulf | Exarchate of Ravenna via predicate surface "captured" NERFINISHED ⓘ |
| Aistulf | Duchy of Rome via predicate surface "captured" NERFINISHED ⓘ |
| Battle of Ysterspruit | Lord Methuen via predicate surface "captured" NERFINISHED ⓘ |
| structural operational semantics | step-by-step execution of programs ⓘ |
| structural operational semantics | control flow of programs ⓘ |
| structural operational semantics | interaction between program and state ⓘ |
| TensorFlow GraphDef | nodes and their attributes ⓘ |
| TensorFlow GraphDef | edges representing tensor data flow ⓘ |
| TensorFlow GraphDef | operation types used in the graph ⓘ |
| TensorFlow GraphDef | input and output relationships between nodes ⓘ |
| EBK quantization | topological phase information ⓘ |
| EBK quantization | boundary condition phase shifts ⓘ |
| John Forbes | Fort Duquesne via predicate surface "captured" NERFINISHED ⓘ |
| Wolfenstein parameterization | hierarchy of CKM matrix elements ⓘ |
| Wolfenstein parameterization | CP-violating phase via η ⓘ |
| Wolfenstein parameterization | strength of 2–3 mixing via A ⓘ |
| Wolfenstein parameterization | structure of 1–3 mixing via ρ and η ⓘ |
| Capture of Yerevan 1827 | Yerevan fortress via predicate surface "captured" NERFINISHED ⓘ |
|
diver dentist Philip Sherman
surface form:
Philip Sherman
|
Nemo on the Great Barrier Reef NERFINISHED ⓘ |
| Eönwë | Morgoth via predicate surface "captured" NERFINISHED ⓘ |
| HRG (High Resolution Geometric) | panchromatic imagery ⓘ |
| HRG (High Resolution Geometric) | multispectral imagery ⓘ |
| Zassenhaus filtration | p-local structure of a group ⓘ |
| Gröbner fan | combinatorial structure of all term orders for an ideal ⓘ |
| Shafarevich group of a torus | classes trivial in all local cohomology groups ⓘ |
| Keiko | 1979 via predicate surface "captured" ⓘ |
| Battle of Maaten al-Sarra Air Base | large quantities of Libyan equipment via predicate surface "captured" ⓘ |
| Battle of Maaten al-Sarra Air Base | Libyan prisoners of war via predicate surface "captured" ⓘ |
| Weil–Deligne group | inertia action ⓘ |
| Weil–Deligne group | wild ramification ⓘ |
| Weil–Deligne group | tame ramification ⓘ |
| Weil–Deligne group | unipotent monodromy ⓘ |
| Picard group | algebraic equivalence classes of divisors (via Pic^0 and NS) ⓘ |
| Maslov index | phase change ⓘ |
| Maslov index | winding behavior ⓘ |
| Dini derivative | one-sided limiting rates of change ⓘ |
| Roma (film score) | surreal vision of Rome ⓘ |
| Grothendieck ring | additive invariants such as Euler characteristic ⓘ |
| Grothendieck ring | multiplicative invariants such as Hodge–Deligne polynomials ⓘ |
|
el Batallador
surface form:
Alfonso I of Aragon
|
Zaragoza via predicate surface "captured" NERFINISHED ⓘ |
|
Whitehead product in homotopy theory
surface form:
Whitehead product
|
interaction of homotopy classes of maps from spheres ⓘ |
|
Whitehead product in homotopy theory
surface form:
Whitehead product
|
linking behavior of spheres in a space ⓘ |
|
Whitehead product in homotopy theory
surface form:
Whitehead product
|
nontrivial compositions of sphere maps ⓘ |
| Perl motto "Easy things should be easy, hard things should be possible" | balance between simplicity and power in Perl ⓘ |
| King of the Woodland Realm | Thorin and Company NERFINISHED ⓘ |
|
“The Heterogeneous-Agent New Keynesian Model”
surface form:
The Heterogeneous-Agent New Keynesian Model
|
heterogeneous consumption responses to shocks ⓘ |
|
“The Heterogeneous-Agent New Keynesian Model”
surface form:
The Heterogeneous-Agent New Keynesian Model
|
heterogeneous labor supply responses ⓘ |