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- Petrov_classification abstract "In differential geometry and theoretical physics, the Petrov classification describes the possible algebraic symmetries of the Weyl tensor at each event in a Lorentzian manifold.It is most often applied in studying exact solutions of Einstein's field equations, but strictly speaking the classification is a theorem in pure mathematics applying to any Lorentzian manifold, independent of any physical interpretation. The classification was found in 1954 by A. Z. Petrov.".
- Petrov_classification thumbnail Petrov.png?width=300.
- Petrov_classification wikiPageID "2045417".
- Petrov_classification wikiPageRevisionID "599263792".
- Petrov_classification hasPhotoCollection Petrov_classification.
- Petrov_classification subject Category:Differential_geometry.
- Petrov_classification subject Category:Exact_solutions_in_general_relativity.
- Petrov_classification subject Category:Tensors_in_general_relativity.
- Petrov_classification type Abstraction100002137.
- Petrov_classification type Cognition100023271.
- Petrov_classification type Concept105835747.
- Petrov_classification type Content105809192.
- Petrov_classification type ExactSolutionsInGeneralRelativity.
- Petrov_classification type Idea105833840.
- Petrov_classification type Matter100020827.
- Petrov_classification type Mixture114586258.
- Petrov_classification type Part113809207.
- Petrov_classification type PhysicalEntity100001930.
- Petrov_classification type PsychologicalFeature100023100.
- Petrov_classification type Quantity105855125.
- Petrov_classification type Relation100031921.
- Petrov_classification type Solution114589223.
- Petrov_classification type Substance100019613.
- Petrov_classification type Tensor105864481.
- Petrov_classification type TensorsInGeneralRelativity.
- Petrov_classification type Variable105857459.
- Petrov_classification comment "In differential geometry and theoretical physics, the Petrov classification describes the possible algebraic symmetries of the Weyl tensor at each event in a Lorentzian manifold.It is most often applied in studying exact solutions of Einstein's field equations, but strictly speaking the classification is a theorem in pure mathematics applying to any Lorentzian manifold, independent of any physical interpretation. The classification was found in 1954 by A. Z. Petrov.".
- Petrov_classification label "Petrov classification".
- Petrov_classification label "Классификация Петрова".
- Petrov_classification sameAs m.06h8g8.
- Petrov_classification sameAs Q4223027.
- Petrov_classification sameAs Q4223027.
- Petrov_classification sameAs Petrov_classification.
- Petrov_classification wasDerivedFrom Petrov_classification?oldid=599263792.
- Petrov_classification depiction Petrov.png.
- Petrov_classification isPrimaryTopicOf Petrov_classification.