Triple
T1565456
| Position | Surface form | Disambiguated ID | Type / Status |
|---|---|---|---|
| Subject | Brillouin–Wigner perturbation theory |
E33422
|
entity |
| Predicate | instanceOf |
P0
|
FINISHED |
| Object | quantum mechanical formalism |
C5732
|
CONCEPT FINISHED |
How this triple was built (1 step)
Every LLM step that produced this triple, in pipeline order — named-entity classification, the disambiguation choices (the exact options shown, with the pick highlighted), and the generated description. The batch + timestamp of each is in the Provenance table below.
CD
Concept disambiguation
gpt-5-mini-2025-08-07
Target class: quantum mechanical formalism Context triple: [Brillouin–Wigner perturbation theory, instanceOf, quantum mechanical formalism]
-
A.
quantum theory formalism
chosen
A quantum theory formalism is a mathematical framework that specifies the states, observables, and dynamical laws governing quantum systems, enabling the prediction of measurement outcomes and their probabilities.
-
B.
formulation of quantum mechanics
The formulation of quantum mechanics is the conceptual and mathematical framework that describes physical systems in terms of wavefunctions or state vectors, operators, and probabilistic measurement outcomes, replacing classical deterministic trajectories.
-
C.
quantum mechanical concept
A quantum mechanical concept is an abstract idea or principle that describes the behavior, properties, or interactions of physical systems at atomic and subatomic scales, where phenomena are governed by the rules of quantum theory rather than classical physics.
-
D.
molecular quantum mechanics method
A molecular quantum mechanics method is a theoretical and computational approach that applies quantum mechanical principles to describe and predict the electronic structure, properties, and behavior of molecules.
-
E.
quantum statistics
Quantum statistics is the branch of physics and mathematics that studies the statistical behavior of systems of indistinguishable quantum particles, governed by Bose-Einstein or Fermi-Dirac distributions rather than classical Maxwell-Boltzmann statistics.
- F. None of above.
Provenance (1 batch)
The batch behind each pipeline step, in order, with when it ran. Timestamps are batch-level — stages were processed in waves, so the object chain (NER → NED1 → NEDg → NED2) reads in order, but predicate / elicitation batches can sit in a different wave.
| Step | Stage | Batch ID | Status | When |
|---|---|---|---|---|
| creating | Elicitation | batch_69a885f11b048190935025a035302715 |
completed | March 4, 2026, 7:20 p.m. |
Created at: March 4, 2026, 7:27 p.m.