Search results for "paces"

showing 10 items of 496 documents

Voltor, Buitre leonado (VER0000216)

Eurasian Griffon (Anglès), Vautour fauve (Francès), Gänsegeier (Alemany) Gabinet de Vertebrats (Departament de Zoologia), Facultat de Ciències Biològiques (Campus de Burjassot), C/ Doctor Moliner, s/n, Bloque B. 5é plant, Burjassot (Valencia). Armari: 5-2 Fuente la Higuera Hembra Adulto/Joven

AccipitridaeRapaces diurnas: águilas buitres y halconesGyps fulvus (Hablizl 1783)
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Caragoler comú, Milano caracolero (VER0000139)

1897

Altres noms vulgars: Snail Kite (Anglès), Milan des marais (Francès), Schneckenweih (Alemany) Gabinet de Vertebrats (Departament de Zoologia), Facultat de Ciències Biològiques (Campus de Burjassot), C/ Doctor Moliner, s/n, Bloque B. 5é plant, Burjassot (Valencia). Armari: 3-2 América Meridional 25/08/1897 Hembra Juvenil

AccipitridaeRosthramus sociabilis (Vieillot 1817)Rapaces diurnas: águilas buitres y halcones
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Àguila batallaire, àguila saltimbanqui, Águila volatinera (VER0000155)

1857

Altres noms vulgars: Bateleur (Anglès), Bateleur des savanes (Francès), Gaukler (Alemany) Gabinet de Vertebrats (Departament de Zoologia), Facultat de Ciències Biològiques (Campus de Burjassot), C/ Doctor Moliner, s/n, Bloque B. 5é plant, Burjassot (Valencia). Armari: 4-2 Valencia 25/08/1857 Macho Adulto

AccipitridaeTerathopius ecaudatus (Daudin 1800)Rapaces diurnas: águilas buitres y halcones
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Voltor negre, Buitre negro (VER0000126)

Altres noms vulgars: Cinereous Vulture (Anglès), Vautour moine (Francès), Mönchsgeier (Alemany) Gabinet de Vertebrats (Departament de Zoologia), Facultat de Ciències Biològiques (Campus de Burjassot), C/ Doctor Moliner, s/n, Bloque B. 5é plant, Burjassot (Valencia). Armari: 6-2 La Albufera Hembra Adulto

Aegypius monachus (Linnaeus 1766)AccipitridaeRapaces diurnas: águilas buitres y halcones
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Products of snowflaked Euclidean lines are not minimal for looking down

2017

We show that products of snowflaked Euclidean lines are not minimal for looking down. This question was raised in Fractured fractals and broken dreams, Problem 11.17, by David and Semmes. The proof uses arguments developed by Le Donne, Li and Rajala to prove that the Heisenberg group is not minimal for looking down. By a method of shortcuts, we define a new distance $d$ such that the product of snowflaked Euclidean lines looks down on $(\mathbb R^N,d)$, but not vice versa.

Ahlfors-regularity26B05 (Primary) 28A80 (Secondary)01 natural sciences010104 statistics & probabilityFractalMathematics - Metric GeometryEuclidean geometryClassical Analysis and ODEs (math.CA)FOS: MathematicsHeisenberg groupMathematics::Metric GeometryBPI-spacesbpi-spacessecondary 28a800101 mathematicsbilipschitz piecesMathematicsDiscrete mathematicsQA299.6-433ahlfors-regularityApplied Mathematics010102 general mathematicsprimary 26b05Metric Geometry (math.MG)biLipschitz piecesMathematics - Classical Analysis and ODEsProduct (mathematics)Geometry and TopologyAnalysis
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Cardinal estimates involving the weak Lindelöf game

2021

AbstractWe show that if X is a first-countable Urysohn space where player II has a winning strategy in the game $$G^{\omega _1}_1({\mathcal {O}}, {\mathcal {O}}_D)$$ G 1 ω 1 ( O , O D ) (the weak Lindelöf game of length $$\omega _1$$ ω 1 ) then X has cardinality at most continuum. This may be considered a partial answer to an old question of Bell, Ginsburg and Woods. It is also the best result of this kind since there are Hausdorff first-countable spaces of arbitrarily large cardinality where player II has a winning strategy even in the weak Lindelöf game of countable length. We also tackle the problem of finding a bound on the cardinality of a first-countable space where player II has a wi…

Algebra and Number TheoryCardinal invariants Cardinality bounds First-countable Lindelöf Topological game Weakly LindelöfApplied MathematicsFirst-countable spaceHausdorff spaceESPAÇOS TOPOLÓGICOSUrysohn and completely Hausdorff spacesCombinatoricsComputational MathematicsTopological gameCardinalityCompact spaceCountable setSettore MAT/03 - GeometriaGeometry and TopologyContinuum (set theory)AnalysisMathematicsRevista de la Real Academia de Ciencias Exactas, Físicas y Naturales. Serie A. Matemáticas
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On Hurwitz spaces of coverings with one special fiber

2009

Let X X' Y be a covering of smooth, projective complex curves such that p is a degree 2 etale covering and f is a degree d covering, with monodromy group Sd, branched in n + 1 points one of which is a special point whose local monodromy has cycle type given by the partition e = (e1,...,er) of d. We study such coverings whose monodromy group is either W(Bd) or wN(W(Bd))(G1)w-1 for some w in W(Bd), where W(Bd) is the Weyl group of type Bd, G1 is the subgroup of W(Bd) generated by reflections with respect to the long roots ei - ej and N(W(Bd))(G1) is the normalizer of G1. We prove that in both cases the corresponding Hurwitz spaces are not connected and hence are not irreducible. In fact, we s…

AlgebraCombinatoricsWeyl groupsymbols.namesakeMonodromyGeneral MathematicssymbolsPartition (number theory)Settore MAT/03 - GeometriaCentralizer and normalizerMathematicsHurwitz spaces connected components special fiber Weyl groups of type B_d
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Polish G-spaces and continuous logic

2017

Abstract We extend the generalised model theory of H. Becker from [2] to the case of Polish G -spaces when G is an arbitrary Polish group. Our approach is inspired by logic actions of Polish groups which arise in continuous logic.

AlgebraModel theoryContinuous logic010201 computation theory & mathematicsLogicGroup (mathematics)010102 general mathematicsPolish G-spaces0102 computer and information sciences0101 mathematics01 natural sciencesMathematicsAnnals of Pure and Applied Logic
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Tensor product characterizations of mixed intersections of non quasianalytic classes and kernel theorems

2009

Mixed intersections of non quasi-analytic classes have been studied in [12]. Here we obtain tensor product representations of these spaces that lead to kernel theorems as well as to tensor product representations of intersections of non quasi-analytic classes on product of open or of compact sets (© 2009 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

AlgebraPure mathematicsCompact spaceTensor productTensor product of algebrasKernel (set theory)General MathematicsTensor (intrinsic definition)Product (mathematics)Tensor product of Hilbert spacesTensor product of modulesMathematicsMathematische Nachrichten
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Fuzzy algebras as a framework for fuzzy topology

2011

The paper introduces a variety-based version of the notion of the (L,M)-fuzzy topological space of Kubiak and Sostak and embeds the respective category into a suitable modification of the category of topological systems of Vickers. The new concepts provide a common framework for different approaches to fuzzy topology and topological systems existing in the literature, paving the way for studying the problem of interweaving algebra and topology in mathematics, which was raised by Denniston, Melton and Rodabaugh in their recent research on variable-basis topological systems over the category of locales.

AlgebraPure mathematicsTopological algebraArtificial IntelligenceLogicCategory of topological spacesExtension topologyInitial topologyGeneral topologyTopological spaceTopological vector spaceHomeomorphismMathematicsFuzzy Sets and Systems
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