tailConfiguration
P3547
predicate
Indicates how the tail of an entity is arranged, structured, or positioned relative to the rest of that entity.
All labels observed (11)
| Label | Occurrences |
|---|---|
| tailConfiguration canonical | 818 |
| tailType | 87 |
| tail | 34 |
| tailFeature | 34 |
| tailShape | 24 |
| tailDesign | 6 |
| tailCarriage | 4 |
| tailCode | 3 |
| tailForm | 2 |
| tailModification | 1 |
| tailStatus | 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: tailConfiguration
Generated description
Indicates how the tail of an entity is arranged, structured, or positioned relative to the rest of that entity.
Sample triples (1,014)
| Subject | Object |
|---|---|
| North American B-25B Mitchell | twin‑tail design ⓘ |
| Royal Aircraft Factory S.E.5 | conventional tailplane ⓘ |
| Sukhoi Su-7 | conventional tail ⓘ |
| Royal Aircraft Factory B.E.2 | conventional tailplane and fin ⓘ |
| Sukhoi Su-24 | twin‑fin ventral fins with single vertical tail ⓘ |
| Airco DH.2 | twin-boom tail via predicate surface "tailType" ⓘ |
| Sukhoi Su-25 | twin vertical stabilizers on a single fin ⓘ |
| Sukhoi Su-27 | twin vertical stabilizers ⓘ |
| Bristol F.2 Fighter | conventional tailplane ⓘ |
| Bennett’s tree-kangaroo | long tail via predicate surface "tail" ⓘ |
| Great Dane | long tail via predicate surface "tailType" ⓘ |
| Avro RJX | T-tail ⓘ |
| Nimrod MR2 | T-tail ⓘ |
| Hawker Siddeley Trident | T-tail ⓘ |
| Asymmetron | post-anal tail present via predicate surface "tail" ⓘ |
| C-5 Galaxy | T-tail ⓘ |
| Stinson SM-1 Detroiter | conventional tail ⓘ |
| Ford Trimotor (early variants) | conventional tail ⓘ |
|
RAF Voyager KC2 aircraft
surface form:
RAF Voyager KC2
|
conventional tail ⓘ |
| Lockheed P-3 Orion | conventional tail ⓘ |
| Saab 35 Draken | single vertical stabilizer ⓘ |
| Mikoyan-Gurevich MiG-9 | conventional tailplane ⓘ |
| Eurofighter Typhoon | canard foreplanes ⓘ |
| RAF Tristar | S-duct tail engine ⓘ |
|
C-27J Spartan aircraft
surface form:
C-27J Spartan
|
T-tail ⓘ |
| Airbus Voyager | conventional tail ⓘ |
| Saab 2000 | T‑tail ⓘ |
| Saab 340 | T‑tail ⓘ |
| RAF VC10 | T-tail ⓘ |
| SpaceShipOne | twin boom ⓘ |
| White Knight | twin-boom tail ⓘ |
| Model 318 White Knight | twin tail ⓘ |
| Proteus | twin-boom ⓘ |
| Stratolaunch carrier aircraft | twin tail ⓘ |
| Virgin Atlantic GlobalFlyer | twin-boom ⓘ |
| Model 281 Proteus | twin-tail ⓘ |
|
Hercules
surface form:
Lockheed C-130 Hercules
|
conventional tail ⓘ |
| Douglas C-47 Skytrain | conventional tail ⓘ |
| ATR 72 | T-tail ⓘ |
| ATR 42 | conventional tail ⓘ |
| Yokosuka D4Y | conventional tail unit ⓘ |
| Alpha Jet | conventional tail ⓘ |
| Boeing T-7A Red Hawk | conventional tail ⓘ |
| Sukhoi Superjet 100 | T‑tail ⓘ |
| Nakajima B6N Tenzan | conventional tail unit via predicate surface "tailDesign" ⓘ |
| Puma concolor | black-tipped tail via predicate surface "tailFeature" ⓘ |
| USAF serial 49-2892 | conventional tail ⓘ |
| Boeing E-767 | conventional tail ⓘ |
| Savoia-Marchetti SM.75 | conventional tail unit ⓘ |
| Sopwith Snipe | conventional tailplane ⓘ |