Search results for "Variant"

showing 10 items of 1267 documents

"Table 2.3" of "Measurement of electrons from semileptonic heavy-flavour hadron decays at midrapidity in pp and Pb-Pb collisions at $\sqrt{s_{\rm{NN}…

2020

HFe cross section in Pb-Pb, 60-80 centrality

5023.01/(Nev*2*PI*PT)*D2(N)/DPT/DYRAPSemileptonic Heavy-Flavour Hadron DecaysCentrality 60-80%Invariant Yield
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"Table 2.2" of "Measurement of electrons from semileptonic heavy-flavour hadron decays at midrapidity in pp and Pb-Pb collisions at $\sqrt{s_{\rm{NN}…

2020

HFe cross section in Pb-Pb, 30-50 centrality

5023.01/(Nev*2*PI*PT)*D2(N)/DPT/DYRAPSemileptonic Heavy-Flavour Hadron DecaysInvariant YieldCentrality 30-50%
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"Table 2.1" of "Measurement of electrons from semileptonic heavy-flavour hadron decays at midrapidity in pp and Pb-Pb collisions at $\sqrt{s_{\rm{NN}…

2020

HFe cross section in Pb-Pb, 0-10 centrality

5023.0Centrality 0-10%1/(Nev*2*PI*PT)*D2(N)/DPT/DYRAPSemileptonic Heavy-Flavour Hadron DecaysInvariant Yield
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Variations of selective separability II: Discrete sets and the influence of convergence and maximality

2012

A space $X$ is called selectively separable(R-separable) if for every sequence of dense subspaces $(D_n : n\in\omega)$ one can pick finite (respectively, one-point) subsets $F_n\subset D_n$ such that $\bigcup_{n\in\omega}F_n$ is dense in $X$. These properties are much stronger than separability, but are equivalent to it in the presence of certain convergence properties. For example, we show that every Hausdorff separable radial space is R-separable and note that neither separable sequential nor separable Whyburn spaces have to be selectively separable. A space is called \emph{d-separable} if it has a dense $\sigma$-discrete subspace. We call a space $X$ D-separable if for every sequence of …

54D65 54A25 54D55 54A20H-separable spaceSubmaximalD+-separable spaceSequential spaceFUNCTION-SPACESSeparable spaceSpace (mathematics)INVARIANTSSeparable spaceCombinatoricsGN-separable spaceStrong fan tightnessM-separable spaceMaximal spaceConvergence (routing)Radial spaceFOS: MathematicsFréchet spaceCountable setStratifiable spaceWhyburn propertyTOPOLOGIESDH+-separable spaceTightnessMathematics - General TopologyMathematicsDH-separable spaceD-separable spaceSequenceExtra-resolvable spaceGeneral Topology (math.GN)Hausdorff spaceResolvableR-separable spaceLinear subspaceResolvable spaceSequentialDiscretely generated spaceSubmaximal spaceGeometry and TopologyTOPOLOGIES; FUNCTION-SPACES; INVARIANTSSS+ spaceFan tightnessCrowded spaceSubspace topologyTopology and its Applications
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Evidence of oblate-prolate shape coexistence in the strongly-deformed nucleus 119Cs

2021

International audience; Prolate-oblate shape coexistence close to the ground state in the strongly-deformed proton-rich A≈120 nuclei is reported for the first time. One of the four reported bands in 119Cs, built on a 11/2− state at 670 keV, consists of nearly degenerate signature partners, and has properties which unequivocally indicate the strongly-coupled πh11/2[505]11/2− configuration associated with oblate shape. Together with the decoupled πh11/2[541]3/2− band built on the 11/2− prolate state at 110 keV, for which a half-life of T1/2=55(5)μs has been measured, the new bands bring evidence of shape coexistence at low spin in the proton-rich strongly deformed A≈120 nuclei, a phenomenon p…

58Ni(64Zn3p)119CsNuclear reactionNuclear and High Energy PhysicsQC1-999Nuclear TheoryModel calculation-coincidences[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesMolecular physicsMeasured γγγ-coincidencescesium0103 physical sciencesmedicineNuclear reaction:58Ni(64Zn3p)119CsZnCovariant transformationCs010306 general physicsSpin (physics)Ni(PhysicsLinear polarization010308 nuclear & particles physicsLinear polarizationPhysicsDegenerate energy levels3p)Oblate-prolate coexistenceNuclear reactionmedicine.anatomical_structureNuclear reaction:Angular correlationsDensity functional theoryydinfysiikkaGround stateMeasuredNucleusPhysics Letters B
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Client Applications and Server-Side Docker for Management of RNASeq and/or VariantSeq Workflows and Pipelines of the GPRO Suite

2023

The GPRO suite is an in-progress bioinformatic project for -omics data analysis. As part of the continued growth of this project, we introduce a client- and server-side solution for comparative transcriptomics and analysis of variants. The client-side consists of two Java applications called “RNASeq” and “VariantSeq” to manage pipelines and workflows based on the most common command line interface tools for RNA-seq and Variant-seq analysis, respectively. As such, “RNASeq” and “VariantSeq” are coupled with a Linux server infrastructure (named GPRO Server-Side) that hosts all dependencies of each application (scripts, databases, and command line interface software). Implementation of the Serv…

:Informàtica::Aplicacions de la informàtica::Bioinformàtica [Àrees temàtiques de la UPC]PipelinesArtificial intelligenceRNA sequenceRNASeqGraphical user interfaces (Computer systems)WorkflowsVariantSeqGeneticsInterface environmentsLinux device driversGenomesGenetics (clinical)Server-sideResequencingGenes
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Search for a common baryon source in high-multiplicity pp collisions at the LHC

2020

Physics letters / B B811, 135849 (2020). doi:10.1016/j.physletb.2020.135849

:Kjerne- og elementærpartikkelfysikk: 431 [VDP]HadronHadron - hadron reactionHEAVY-ION COLLISIONSHigh multiplicityhiukkasfysiikkanucl-exdecay [resonance]01 natural sciencesHigh Energy Physics - ExperimentExperimentHigh Energy Physics - Experiment (hep-ex)hadron–hadron interactions LHC ALICEBarions; strong interaction; LHCALICEstrong resonance decayIonic Collisionsscattering [p p][PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]Nuclear Experiment (nucl-ex)Nuclear ExperimentNuclear ExperimentBarionsPION INTERFEROMETRYhadron-hadron scatteringPhysicsLarge Hadron ColliderMesonsHadron - hadron reactionsmass: transversestrong interactionPhysicsbaryon correlations ; invariant radius ; strong hadron–hadron interactions ; strong resonance decayVDP::Kjerne- og elementærpartikkelfysikk: 431RadiusAU+AUInvariant (physics)lcsh:QC1-999quark gluon plasmaPRIRODNE ZNANOSTI. Fizika.HEAVY-ION COLLISIONS; PION INTERFEROMETRY; SIGMA(0) PRODUCTION; AU+AU; COLLISIONS; FEMTOSCOPY; SYSTEMS; PB:Nuclear and elementary particle physics: 431 [VDP]CERN LHC CollVDP::Nuclear and elementary particle physics: 431Transverse massLHCPBParticle Physics - Experimentbaryon correlationsCOLLISIONSNuclear and High Energy Physicsp p: scatteringHigh Energy Physics; ExperimentcollectiveFOS: Physical sciences[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]530114 Physical sciencesNuclear physicsHadron - hadron reactions; LHCbaryon baryon: correlationSYSTEMSresonance: decay0103 physical sciencesfemtoscopyddc:530Nuclear Physics - ExperimentHigh Energy Physics010306 general physicshadron hadron: interactioninteraction [hadron hadron]010308 nuclear & particles physicshep-exhadron-hadron scattering ALICE experiment femtoscopySIGMA(0) PRODUCTIONHigh Energy Physics::PhenomenologyALICE experimentcorrelation [baryon baryon]Kaonsstrong hadron–hadron interactionsNATURAL SCIENCES. Physics.invariant radiusBaryonKaons; Ionic Collisions; Mesonstransverse [mass]Antiproton13000 GeV-cms/nucleonHigh Energy Physics::Experimentlcsh:Physicsexperimental results
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Inmersiones de superficies en Rn+2

2019

El objetivo principal de esta tesis es caracterizar, a través de relaciones entre sus invariantes, propiedades geométricas de superficies inmersas en R^{n+2}. Los invariantes de una superficie serán conceptos que sólo dependen del punto sobre la superficie. De manera que si consideramos una condición geométrica que sólo dependa del punto sobre la superficie, deberá haber una condición en términos de sus invariantes. En el estudio clásico de superficies en el espacio euclídeo de tres dimensiones, se definían los invariantes escalares de la curvatura de Gauss y la curvatura media. Se obtenía que ambos invariantes determinaban el invariante geométrico de las curvaturas principales, esto es, el…

:MATEMÁTICAS [UNESCO]inmersiones de superficiesespacio de lorentzinvariantes localesángulos de jordanUNESCO::MATEMÁTICASesferas
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Challenges in clinical analysis by infrared spectroscopy

2014

En els últims anys, el desenvolupament de metodologies d’anàlisi clínic basades en espectroscòpia infraroja (IR) s’ha convertit en un camp molt actiu d’investigació. Millores en la instrumentació i en el processament de les dades han contribuït a que l’espectroscòpia IR s’utilitze per a obtindré informació de la composició de fluids i teixits biològics. Aquesta tesis consolida aquesta tècnica com una eina versàtil en el desenvolupament de metodologies per a extraure una gran quantitat d’informació en un ampli espectre de mostres mitjançant instrumentació senzilla, ràpida i econòmica. Tot i que la tècnica té problemes de sensibilitat i selectivitat, els resultats obtinguts en aquesta Tesi de…

:QUÍMICA::Química analítica::Análisis bioquímico [UNESCO]UNESCO::QUÍMICA::Química analítica::Espectroscopía de infrarrojosdiagnosisinfrared:MATEMÁTICAS::Estadística::Análisis multivariante [UNESCO]UNESCO::MATEMÁTICAS::Estadística::Análisis multivarianteclinical analysisUNESCO::QUÍMICA::Química analítica::Análisis bioquímicochemometrics:QUÍMICA::Química analítica::Espectroscopía de infrarrojos [UNESCO]vibrational spectroscopy
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Chemical Compositions and Antioxidant Activities of Essential Oils, and Their Combinations, Obtained from Flavedo By-Product of Seven Cultivars of Si…

2022

In this work, seven Citrus aurantium essential oils (EOs) derived from flavedo of cultivars ‘Canaliculata’, ‘Consolei’, ‘Crispifolia’, ‘Fasciata’, ‘Foetifera’, ‘Listata’, and ‘Bizzaria’ were investigated. EOs were also combined in 1:1 (v/v) ratio to identify possible synergism or antagonism of actions. GC-MS analysis was done to investigate Eos’ phytochemical profiles. The antioxidant activity was studied by using a multi-target approach based on FRAP, DPPH, ABTS, and β-carotene bleaching tests. A great difference was observed in EOs’ phytochemical profiles. d-limonene (33.35–89.17%) w…

<i>Citrus aurantium</i>; GC-MS analysis; essential oil combinations; <span style="font-variant: small-caps">d</span>-limonene; PCA analysis; global antioxidant scoreOrganic ChemistryPharmaceutical ScienceGC-MS analysid-limoneneAnalytical Chemistryglobal antioxidant scoreChemistry (miscellaneous)Drug Discoveryessential oil combinationMolecular MedicinePCA analysiPhysical and Theoretical ChemistryCitrus aurantiumMolecules
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