Search results for "Dynamic data"

showing 9 items of 9 documents

Automatic Detection of Left Ventricular Contours from Cardiac Cine Magnetic Resonance Imaging Using Fuzzy Logic

1999

Gated cardiac cine magnetic resonance imaging provides accurate dynamic data of the left ventricular function. However, the manual extraction of important physiologic parameters such as myocardium wall thickness and left ventricular volumes is invariably time consuming and subjective. To reduce the variability and time constraints inherent in observer contour tracing, the authors developed an automatic left ventricle contour-detection method.The purpose was to apply fuzzy logic-based automatic contour detection to identification of endocardial and epicardial borders in short-axis magnetic resonance images. The automatic contouring was compared with manual tracing using the calculated ejecti…

Adultmedicine.diagnostic_testVentricular functionComputer scienceDynamic dataMyocardial InfarctionMagnetic Resonance Imaging CineStroke VolumeMagnetic resonance imagingGeneral MedicineMiddle AgedFuzzy logicManual extractionFuzzy LogicImage Processing Computer-Assistedcardiovascular systemmedicineHumansVentricular FunctionRadiology Nuclear Medicine and imagingcardiovascular diseasesWall thicknessAgedBiomedical engineeringInvestigative Radiology
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Thermodynamic Interaction Parameters of Tetra-n-undecylcalix[4]resorcinarenes with Selected Solvents Studied by Inverse Gas Chromatography

2004

The basic thermodynamic parameters, characterising intermolecular interactions of tetra-n-undecylcalix[4]resorcinarene and its octaacetate derivative with simple organic solutes, were calculated by using the inverse gas chromatography method. Free energy, enthalpy and entropy of sorption were determined.

Entropy (classical thermodynamics)biologyChemistryIntermolecular forceEnthalpyInverse gas chromatographyPhysical chemistryTetraSorptionThermodynamic databases for pure substancesPhysics::Chemical PhysicsResorcinarenebiology.organism_classificationJournal of Inclusion Phenomena
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Mercury(II) removal from aqueous solution by sorption onto alginate, pectate and polygalacturonate calcium gel beads. A kinetic and speciation based …

2013

Abstract Gel beads of calcium alginate, pectate and polygalacturonate salts have been tested as sorbent materials for mercury(II) removal from aqueous solutions. Physico-chemical properties of gel beads, defined by SEM–EDX, TGA and texture and density analysis, were correlated with gel beads sorption capacity towards Hg 2+ ion. A speciation study in aqueous solution was carried out to define the strength of interaction of mercury ion with the polymers investigated and to assess the more suitable experimental conditions to achieve the best effectiveness of Hg 2+ sorption by gel beads. On the basis of the speciation study, pH values in the 3–5.5 pH range were considered appropriated for mercu…

LangmuirAqueous solutionSorbentCalcium alginatePolymers and PlasticsChemistrySpeciationGeneral Chemical EngineeringInorganic chemistrychemistry.chemical_elementSorptionGeneral Chemistrycomplex mixturesBiochemistryMercury (element)chemistry.chemical_compoundAdsorptionMercury(II) ionKinetic and thermodynamic dataMaterials ChemistryEnvironmental ChemistrySettore CHIM/01 - Chimica AnaliticaFreundlich equationAdsorptionBioremediationReactive and Functional Polymers
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Interface thermodynamic model for low pressure evaporation

1979

Materials scienceInterface (Java)[SPI] Engineering Sciences [physics]EvaporationGeneral Physics and AstronomyThermodynamics02 engineering and technologyGeneral ChemistryThermodynamic databases for pure substances[SPI.FLUID] Engineering Sciences [physics]/Reactive fluid environment021001 nanoscience & nanotechnology01 natural sciencesThermodynamic system010406 physical chemistry0104 chemical sciencesThermodynamic modelThermodynamic diagrams0210 nano-technologyMaterial propertiesThermodynamic process
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The reaction enthalpy of hydrogen dissociation calculated with the Small System Method from simulation of molecular fluctuations.

2014

We show how we can find the enthalpy of a chemical reaction under non-ideal conditions using the Small System Method to sample molecular dynamics simulation data for fluctuating variables. This method, created with Hill's thermodynamic analysis, is used to find properties in the thermodynamic limit, such as thermodynamic correction factors, partial enthalpies, volumes, heat capacities and compressibility. The values in the thermodynamic limit at (T,V, μj) are then easily transformed into other ensembles, (T,V,Nj) and (T,P,Nj), where the last ensemble gives the partial molar properties which are of interest to chemists. The dissociation of hydrogen from molecules to atoms was used as a conve…

Standard enthalpy of reactionChemistryThermodynamic equilibriumEnthalpyGeneral Physics and AstronomyThermodynamicsPartial molar propertyThermodynamic databases for pure substancessymbols.namesakeThermodynamic limitsymbolsPhysical and Theoretical ChemistryEquilibrium constantVan 't Hoff equationPhysical chemistry chemical physics : PCCP
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Gibbs equation in the nonlinear nonequilibrium thermodynamics of dilute nonviscous gases

2003

AbstractThis paper deals with the derivation of the Gibbs equation for a nonviscous gas in the presence of heat flux. The analysis aims to shed some light on the physical interpretation of thermodynamic potentials far from equilibrium. Two different definitions for the chemical potential and thermodynamic pressure far from equilibrium are introduced: nonequilibrium chemical potential and nonequilibrium thermodynamic pressure at constant heat flux q and nonequilibrium chemical potential and nonequilibrium thermodynamic pressure at constant J = Vq, where V is the specific volume.

Thermodynamic stateThermodynamic equilibriumApplied MathematicsNonequilibrium thermodynamic potentialsThermodynamicsThermodynamic databases for pure substancesNonequilibrium thermodynamicsThermodynamic equationsThermodynamic systemExtended thermodynamicsThermodynamic potentialsymbols.namesakeGibbs equationGibbs–Helmholtz equationsymbolsKinetic theoryMathematicsThermodynamic processApplied Mathematics Letters
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Decremental 2- and 3-connectivity on planar graphs

1996

We study the problem of maintaining the 2-edge-, 2-vertex-, and 3-edge-connected components of a dynamic planar graph subject to edge deletions. The 2-edge-connected components can be maintained in a total ofO(n logn) time under any sequence of at mostO(n) deletions. This givesO(logn) amortized time per deletion. The 2-vertex- and 3-edge-connected components can be maintained in a total ofO(n log2n) time. This givesO(log2n) amortized time per deletion. The space required by all our data structures isO(n). All our time bounds improve previous bounds.

Vertex (graph theory)Discrete mathematicsDynamic data structuresAmortized analysisGeneral Computer ScienceApplied MathematicsVertex connectivityPlanar graphsData structureEdge connectivityComputer Science ApplicationsPlanar graphCombinatoricssymbols.namesakeAnalysis of algorithms Dynamic data structures Edge connectivity Planar graphs Vertex connectivitysymbolsAnalysis of algorithmsVertex connectivityDynamic data structuresAnalysis of algorithmsMathematicsAlgorithmica
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Mining Maximal Frequent Patterns in Transactional Databases and Dynamic Data Streams: A Spark-based Approach

2018

Mining maximal frequent patterns (MFPs) in transactional databases (TDBs) and dynamic data streams (DDSs) is substantially important for business intelligence. MFPs, as the smallest set of patterns, help to reveal customers’ purchase rules and market basket analysis (MBA). Although, numerous studies have been carried out in this area, most of them extend the main-memory based Apriori or FP-growth algorithms. Therefore, these approaches are not only unscalable but also lack parallelism. Consequently, ever increasing big data sources requirements cannot be met. In addition, mining performance in some existing approaches degrade drastically due to the presence of null transactions. We, therefo…

dynamic data streamsprime number theorybig datatransactional databasesnull transactionsapache sparkmaximal frequent patternstiedonlouhinta
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Formulas for the thermodynamic properties of dense nitrogen.

1969

symbols.namesakeVan der Waals equationCantileverMaterials sciencesymbolsCompressibilityDetonationShear stressAerospace EngineeringThermodynamicsThermodynamic databases for pure substancesMaterial propertiesHarmonic oscillatorAIAA Journal
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