Search results for " Thermal"

showing 10 items of 492 documents

Spectral function for overoccupied gluodynamics from real-time lattice simulations

2018

We study the spectral properties of a highly occupied non-Abelian non-equilibrium plasma appearing ubiquitously in weak coupling descriptions of QCD matter. The spectral function of this far-from-equilibrium plasma is measured by employing linear response theory in classical-statistical real-time lattice Yang-Mills simulations. We establish the existence of transversely and longitudinally polarized quasiparticles and obtain their dispersion relations, effective mass, plasmon frequency, damping rate and further structures in the spectral and statistical functions. Our new method can be interpreted as a non-perturbative generalization of hard thermal loop (HTL) effective theory. We see indica…

CLASSICAL APPROXIMATIONNuclear Theorynucl-thquark-gluon plasmahep-latFOS: Physical sciencesHEAVY-ION COLLISIONShiukkasfysiikka114 Physical sciences01 natural sciencesNuclear Theory (nucl-th)High Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)Lattice (order)0103 physical sciencesquantum chromodynamicsQCD PLASMA INSTABILITIESStatistical physicsGauge theorynonperturbative effects in field theory010306 general physicsHARD THERMAL LOOPSParticle Physics - PhenomenologyPhysicsQuantum chromodynamicsta114010308 nuclear & particles physicsHigh Energy Physics - Lattice (hep-lat)kvarkki-gluoniplasmafinite temperature field theorylattice field theoryISOTROPIZATIONParticle Physics - Latticehep-ph16. Peace & justiceFIELD-THEORYGluonHigh Energy Physics - PhenomenologyNuclear Physics - TheoryQuark–gluon plasmaHIGH-TEMPERATUREGAUGE-THEORIESQuasiparticleSpectral functionkvanttikenttäteoriaStatistical correlationrelativistic heavy-ion collisions
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Paper consolidation with Halloysite nanotubes. TGA, DMA and contact angle investigations

2013

Calorimetry Thermal analysis halloysite cultural heritage
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Salso-bromo-iodine thermal water: a nonpharmacological alternative treatment for postnasal drip-related cough in children with upper respiratory trac…

2018

Postnasal drip (PND)-related cough is a very common symptom in patients with upper respiratory tract infections (URTis). At present, there is not a standard treatment for postnasal drip and postnasal drip-related cough. The aim of this pilot study was to evaluate the efficacy of a specific salso-bromoiodine thermal water containing hyaluronic acid and grapefruit seed extract (SBI-H-GSE) comparing it with a normal saline solution in children with URTis who refer PND-related symptoms. The study was randomized, single-blind, and controlled. Study group (75 children) was treated with SBI-HGSE and control group (65 children) was treated with a normal saline solution; both compounds were administ…

Cancer ResearchPhysiologyEndocrinology Diabetes and MetabolismImmunologyPilot ProjectsSalso-bromo-iodine thermal water isotonic saline postnasal dripEndocrinologyPhysiology (medical)Immunology and AllergyHumansSingle-Blind MethodHyaluronic AcidChildRespiratory Tract InfectionsPlant Extractspostnasal dripSalso-bromo-iodine thermal water isotonic saline postnasal drip; Endocrinology Diabetes and Metabolism; Immunology and Allergy; Physiology; Immunology; Oncology; Endocrinology; Physiology (medical); Cancer ResearchSalso-bromo-iodine thermal waterDiabetes and MetabolismNasal MucosaOncologyCoughSeedsQuality of Lifeisotonic salineSaline SolutionCitrus paradisiIodineJournal of biological regulators and homeostatic agents
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Sensor Properties of Pristine and Functionalized Carbon Nanohorns

2016

Nanodispersions of pristine single-wall carbon nanohorns (i.e., p-SWCNHs) and oxidized-SWCNHs (i.e.; o-SWCNHs) were used to modify screen printed electrode (SPE). p-SWCNHs and o-SWCNHs were fully characterized by using several analytical techniques, as: HR-TEM (High Resolution-Transmission Electron Microscopy), FE-SEM/EDX (Field Emission-Scanning Electron Microscopy/Energy Dispersive X-ray Analysis), Raman spectroscopy, thermogravimetric analysis, differential thermal analysis (DTA), and the Brunauer-Emmett-Teller (BET) method. The chemically modified SPEs were also characterized with Cyclic Voltammetry (CV), using several different electro-active targets. In all cases, p-SWCNHs showed bett…

Carbon NanohornThermogravimetric analysisScreen Printed ElectrodesMaterials scienceAnalytical chemistrychemistry.chemical_element02 engineering and technologyGlassy carbon010402 general chemistryElectrochemistry01 natural sciencesCarbon NanohornsAnalytical Chemistrysymbols.namesakeDifferential thermal analysisElectrochemistrySettore CHIM/01 - Chimica AnaliticaSingle-WallCarbon Nanohorns; Screen Printed Electrodes; Single-Wall; Analytical Chemistry; ElectrochemistryScreen Printed Electrode021001 nanoscience & nanotechnology0104 chemical scienceschemistryElectrodesymbolsCyclic voltammetry0210 nano-technologyRaman spectroscopyCarbonElectroanalysis
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Effect of Sheep Wool Fibers on Thermal Insulation and Mechanical Properties of Cement-Based Composites

2019

The use of sheep wool as a filler of cement in order to produce mortar or plaster involves several advantages for environment and energy. Moreover, it is considered as a waste and, therefore, its use is characterized by low cost. The aim of this paper is to evaluate the influence of wool fibers on thermal conductivity and mechanical properties of cement. The samples were prepared using wool fibers, obtained from a breed of Sicilian sheep, with three different lengths (i.e., 1, 6, and 20 mm). Furthermore, in order to evaluate the influence of fiber content, the samples were prepared by varying the fiber weight fraction. The thermal conductivity of the samples was analyzed by using a heat flo…

CementFiller (packaging)Materials sciencebusiness.industrytheoretical modelWoolMaterials Science (miscellaneous)02 engineering and technology010501 environmental sciences021001 nanoscience & nanotechnology01 natural sciencesCement mortarnatural fiberSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiThermal insulationmechanical propertiethermal conductivityMortarComposite material0210 nano-technologybusinesscement mortar; mechanical properties; natural fibers; theoretical model; thermal conductivity; WoolSheep wool0105 earth and related environmental sciencesCement based composites
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Characterization of hydraulic mortars by means of simultaneous thermal analysis

2008

The properties of hydraulic mortars were studied by means of simultaneous thermal analysis (STA), according to a procedure proposed in the literature. Hydraulic limes, cement and/or slaked lime were mixed using different proportions of both inert and reactive aggregates, in order to test the effectiveness of such procedure in distinguishing the different degree of hydraulicity of such samples. The use of the normalized coordinates suggested in the literature results in overlapping of the clusters of different kinds of mortars. Modified coordinates are proposed, which give promising results in view of outlining a 'master curve' of hydraulicity.

CementInertHydraulic binderHydraulic limePozzolanaCrushed brickMaterials scienceHydraulic limeCementengineering.materialCondensed Matter PhysicsCharacterization (materials science)Simultaneous thermal analysisengineeringPhysical and Theoretical ChemistryComposite materialMortarPozzolanaThermal analysisLimeJournal of Thermal Analysis and Calorimetry
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Some fundamentals of the vapor and solution growth of ZnSe and ZnO

1999

Abstract Some fundamentals of ZnSe and ZnO vapor and solution growth are investigated. Residual water present in gases or gaseous mixtures such as H 2 , Ar or H 2 +H 2 O is shown to act as a sublimation activator in the vapor-phase transport of both compounds. The processes involved in the growth by chemically activated sublimation with such gases and gas mixtures have been studied by close-spaced vapor transport (CSVT). The ZnSe growth rate is found to be constant, while in the ZnO case a high initial growth rate is followed by slower growth subsequently. Using a theoretical model, the thermodynamic constants of the transport – energies of activation, sublimation and condensation and entha…

ChemistryInorganic chemistryAnalytical chemistrychemistry.chemical_elementCondensed Matter PhysicsInorganic ChemistrySolventDifferential thermal analysisActivator (phosphor)Materials ChemistryChlorineSublimation (phase transition)Growth rateStandard enthalpy change of formationPhase diagramJournal of Crystal Growth
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On the synthesis and characterization of layered antimony(III) phosphate and its interaction with moist ammonia and amines

1998

Samples of antimony(III) phosphate, a layered material, were prepared at room temperature, using the two allotropic forms of Sb2O3, layered valentinite and cubic senarmontite. The compounds were characterized by infrared spectroscopy, X-ray diffraction, and thermogravimetric–differential thermal analysis. Solids exposed to ammonia, ethylenediamine, or hydrazine vapors also were studied. The interaction between SbPO4 and the bases always led to the formation of stoichiometric amounts of Sb2O3 and hydrogen phosphate(–2) salts of the bases. With ammonia, the SbPO4 raw materials gave rise to valentinite or senarmontite, depending on which Sb2O3 allotropic form was used to prepare antimony phosp…

ChemistryMechanical EngineeringInorganic chemistryHydrazineIntercalation (chemistry)Infrared spectroscopychemistry.chemical_elementEthylenediamineCondensed Matter PhysicsPhosphateThermogravimetrychemistry.chemical_compoundAntimonyMechanics of MaterialsDifferential thermal analysisGeneral Materials ScienceMaterials Research Bulletin
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Negative thermal expansion of quartz glass at low temperatures: An ab initio simulation study

2017

Abstract Using a mixed classical Molecular dynamics (MD)/ab initio simulation scheme combined with a quasi-harmonic approximation, we calculate the linear thermal expansion coefficient αL(T) in vitreous silica glasses. The systems are first cooled down by classical MD simulations. Then they are structurally relaxed by ab initio DFT calculations. The vibrational properties are calculated employing the frozen phonon method, and these results are finally used to calculate the Helmholtz free energy as a function of volume. In agreement with experiments, our simulations predict that αL(T) is negative at low temperatures up to T ≈ 150 K. In this low-temperature regime, the simulation results are …

ChemistryPhononAb initioThermodynamics02 engineering and technologyFunction (mathematics)021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesThermal expansionElectronic Optical and Magnetic Materialssymbols.namesakeMolecular dynamicsVolume (thermodynamics)Negative thermal expansionHelmholtz free energy0103 physical sciencesMaterials ChemistryCeramics and CompositessymbolsPhysical chemistry010306 general physics0210 nano-technologyJournal of Non-Crystalline Solids
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Photocatalytic and Catalytic Reactions in Gas–Solid and in Liquid–Solid Systems

2019

Abstract Heterogeneous photocatalytic and thermal-catalytic reactions are here presented focusing the differences and similarities between the two processes. When possible, the comparison was made for the same chemical reaction in the presence of an inorganic material playing the role of both catalyst or/and photocatalyst. Several examples are presented where a catalytic reaction can occur at milder experimental conditions and, particularly, at lower temperature when the system is also irradiated by UV and/or visible light. The differences in mechanistic aspects, conversions, and selectivities between catalytic and photocatalytic reactions will be also considered because these occurrences a…

ChemistryPhotocatalysisCatalytic versus photocatalytic reactions thermal-catalytic reactions photo-assisted reactions partial (photo)oxidation reactionsSettore CHIM/07 - Fondamenti Chimici Delle TecnologieActivation energyIrradiationLiquid solidGas solidPhotochemistryChemical reactionVisible spectrumCatalysis
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