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 |
|---|---|
| Mitsubishi CRJ700 | T-tail ⓘ |
| Merlin HM2 | conventional tail rotor ⓘ |
| Martin-Baker MB 3 | conventional tail unit ⓘ |
| Handley Page Victor | T-tail ⓘ |
| Lockheed S-3 Viking | T-tail ⓘ |
| KC-10 Extender | T-tail ⓘ |
| A-50 AWACS | T-tail ⓘ |
| Yak-28P | t‑tail ⓘ |
| Embraer R-99 | T-tail ⓘ |
| Nakajima A6M2-N | conventional tailwheel ⓘ |
|
Vickers Warwick aircraft
surface form:
Vickers Warwick
|
conventional tailunit ⓘ |
| McDonnell Douglas MD-80 | T-tail ⓘ |
| Seversky P-35 | conventional tail unit ⓘ |
| CASA C-212 Aviocar | conventional tail ⓘ |
| Heinkel He 60 | conventional tail ⓘ |
| PB4Y-2 Privateer | single vertical tail ⓘ |
| PB4Y-2 Privateer | single tall vertical fin replacing B-24 twin tail via predicate surface "tailModification" ⓘ |
| CASA CN-235 | conventional tail ⓘ |
| Bücker Bü 131 | conventional tail ⓘ |
| Boeing YC-14 | T-tail ⓘ |
| Aérospatiale Corvette | T‑tail ⓘ |
| Boeing P-26 Peashooter | conventional tailwheel via predicate surface "tailType" ⓘ |
| Northrop YF-17 | twin vertical stabilizers ⓘ |
| Heinkel He 176 | conventional tail unit ⓘ |
| Airco DH.5 | conventional tailplane ⓘ |
| McDonnell Douglas MD-11 | T-tail ⓘ |
| BAe Jetstream 31 | conventional tail ⓘ |
| MiG-19 | conventional tailplane ⓘ |
| Su-15 | conventional tail ⓘ |
| Slinky Dog | springy tail via predicate surface "tailType" ⓘ |
| SF.260C | conventional tail ⓘ |
| McDonnell Douglas MD-90 | T-tail ⓘ |
| Tu-128 | conventional tail ⓘ |
|
Vickers Viscount airliner
surface form:
Vickers Viscount
|
conventional tail ⓘ |
|
Vickers Valiant bomber
surface form:
Vickers Valiant
|
conventional tailplane ⓘ |
| Aérospatiale SA 321 Super Frelon | conventional tail rotor ⓘ |
| McDonnell Douglas MD-95 | T-tail ⓘ |
| SNCASO SO.9000 Trident | conventional tail ⓘ |
| MiG-25 | twin vertical stabilizers ⓘ |
| KJ-500 | conventional tail ⓘ |
| Hawker Siddeley HS 125 | T-tail ⓘ |
| Arado Ar 196 | conventional tailwheel ⓘ |
| Hien | conventional tail ⓘ |
| MiG-31 | twin vertical stabilizers ⓘ |
| Shenyang J-16 | twin‑tail ⓘ |
| Blohm & Voss Ha 138 | twin-tail ⓘ |
| Hawker Siddeley Nimrod | T-tail ⓘ |
| Hawker Siddeley HS 748 | conventional tail ⓘ |
| Chengdu J-20 | all-moving vertical stabilizers via predicate surface "tailType" ⓘ |
| Breguet Atlantique 2 | conventional tail ⓘ |