demonstratedConcept
P463
predicate
Indicates that an entity has shown, illustrated, or made evident a particular concept through example, explanation, or action.
All labels observed (20)
| Label | Occurrences |
|---|---|
| explainsConcept | 442 |
| relatesConcept | 400 |
| demonstrates | 326 |
| illustratesConcept | 40 |
| clarifiedConcept | 35 |
| portraysConcept | 27 |
| visualMotive | 25 |
| demonstratedConcept canonical | 22 |
| testedConcept | 14 |
| exposesConcept | 11 |
| demonstratesConcept | 9 |
| testsConcept | 6 |
| articulatesConcept | 5 |
| illustratesValue | 4 |
| preachedConcept | 4 |
| demonstratesMethod | 2 |
| exhibitConcept | 2 |
| testedPhenomenon | 2 |
| demonstratedFailureMode | 1 |
| previewedConcept | 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: demonstratedConcept
Generated description
Indicates that an entity has shown, illustrated, or made evident a particular concept through example, explanation, or action.
Sample triples (1,378)
| Subject | Object |
|---|---|
| Le Corbusier buildings in France | roof garden via predicate surface "demonstrates" ⓘ |
| Climbing Mount Improbable | cumulative selection via predicate surface "explainsConcept" ⓘ |
| Climbing Mount Improbable | complex adaptations evolving step by step via predicate surface "explainsConcept" ⓘ |
| Climbing Mount Improbable | adaptive landscapes via predicate surface "explainsConcept" ⓘ |
| Climbing Mount Improbable | natural selection as a stepwise process via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | evolution by natural selection via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | replicator concept via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | DNA as digital information via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | cumulative selection via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | common ancestry of life via predicate surface "explainsConcept" ⓘ |
| River Out of Eden | evolutionary time scales via predicate surface "explainsConcept" ⓘ |
| Asmara: A Modernist African City | early adoption of modernism in Africa via predicate surface "demonstrates" ⓘ |
| Ollerton watermill | traditional flour production via predicate surface "demonstrates" ⓘ |
| Ollerton watermill | water-powered machinery via predicate surface "demonstrates" ⓘ |
| Peano curve | that a one-dimensional interval can be mapped continuously onto a two-dimensional area via predicate surface "demonstrates" ⓘ |
| Peano curve | that there exists a continuous surjection from [0,1] onto [0,1]×[0,1] via predicate surface "demonstrates" ⓘ |
| Peano curve | that topological dimension differs from intuitive geometric dimension via predicate surface "demonstrates" ⓘ |
| Belarusian Pahonia | armed knight in armor via predicate surface "visualMotive" ⓘ |
| Belarusian Pahonia | sword raised above head via predicate surface "visualMotive" ⓘ |
| Belarusian Pahonia | shield held by knight via predicate surface "visualMotive" ⓘ |
| Kramers–Wannier duality in the Ising model | equivalence of certain thermodynamic quantities at dual temperatures via predicate surface "demonstrates" ⓘ |
| Flourish | positive emotion via predicate surface "explainsConcept" ⓘ |
| Flourish | engagement via predicate surface "explainsConcept" ⓘ |
| Flourish | relationships via predicate surface "explainsConcept" ⓘ |
| Flourish | meaning via predicate surface "explainsConcept" ⓘ |
| Flourish | accomplishment via predicate surface "explainsConcept" ⓘ |
| Quantum cryptography: Public key distribution and coin tossing | advantages of quantum channels for key distribution via predicate surface "demonstrates" ⓘ |
| Quantum cryptography: Public key distribution and coin tossing | limitations of classical coin tossing protocols via predicate surface "demonstrates" ⓘ |
| De Morgan's laws | conjunction via predicate surface "relatesConcept" ⓘ |
| De Morgan's laws | disjunction via predicate surface "relatesConcept" ⓘ |
| De Morgan's laws | negation via predicate surface "relatesConcept" ⓘ |
| De Morgan's laws | intersection via predicate surface "relatesConcept" ⓘ |
| De Morgan's laws | union via predicate surface "relatesConcept" ⓘ |
| De Morgan's laws | complement via predicate surface "relatesConcept" ⓘ |
| AWAKE Run 1 experiments | use of high-energy proton beams as drivers for plasma wakefields via predicate surface "testsConcept" ⓘ |
| Stone’s theorem on one-parameter unitary groups | unitary group via predicate surface "relatesConcept" ⓘ |
| Stone’s theorem on one-parameter unitary groups | self-adjoint operator via predicate surface "relatesConcept" ⓘ |
| Stone’s theorem on one-parameter unitary groups | strong continuity via predicate surface "relatesConcept" ⓘ |
| Stone’s theorem on one-parameter unitary groups | one-parameter group via predicate surface "relatesConcept" ⓘ |
| Two-Face | bicolored suit via predicate surface "visualMotive" ⓘ |
| Two-Face | split hairstyle via predicate surface "visualMotive" ⓘ |
|
Xenophilius Lovegood in Harry Potter and the Deathly Hallows – Part 1
surface form:
Xenophilius Lovegood (Harry Potter and the Deathly Hallows – Part 1)
|
Deathly Hallows via predicate surface "explainsConcept" NERFINISHED ⓘ |
|
“A Question-Answering System for High School Algebra Word Problems”
surface form:
A Question-Answering System for High School Algebra Word Problems
|
machine understanding of natural language via predicate surface "demonstrates" ⓘ |
|
“A Question-Answering System for High School Algebra Word Problems”
surface form:
A Question-Answering System for High School Algebra Word Problems
|
machine reasoning in mathematics via predicate surface "demonstrates" ⓘ |
|
“A Computer Program for Understanding Natural Language”
surface form:
A Computer Program for Understanding Natural Language
|
execution of commands in a simulated world via predicate surface "demonstrates" ⓘ |
|
“A Computer Program for Understanding Natural Language”
surface form:
A Computer Program for Understanding Natural Language
|
system answering questions about the world state via predicate surface "demonstrates" ⓘ |
|
“A Computer Program for Understanding Natural Language”
surface form:
A Computer Program for Understanding Natural Language
|
system maintaining an internal model of the world via predicate surface "demonstrates" ⓘ |
| Language Models are Unsupervised Multitask Learners | zero-shot learning capabilities via predicate surface "demonstrates" ⓘ |
| Language Models are Unsupervised Multitask Learners | few-shot learning capabilities via predicate surface "demonstrates" ⓘ |
| Language Models are Unsupervised Multitask Learners | multitask performance without task-specific training via predicate surface "demonstrates" ⓘ |