Search results for "lcsh:Physics"

showing 10 items of 778 documents

Deep and Meaningful E-Learning with Social Virtual Reality Environments in Higher Education: A Systematic Literature Review

2021

Deep and meaningful learning (DML) in distant education should be an essential outcome of quality education. In this literature review, we focus on e-learning effectiveness along with the factors and conditions leading to DML when using social virtual reality environments (SVREs) in distance mode higher education (HE). Hence, a systematic literature review was conducted summarizing the findings from thirty-three empirical studies in HE between 2004 (appearance of VR) and 2019 (before coronavirus appearance). We searched for the cognitive, social, and affective aspects of DML in a research framework and studied their weight in SVREs. The findings suggest that the use of SVREs can provide aut…

Higher educationDistance educationopen and distance learning (ODL)Agency (philosophy)050801 communication & media studiesPersonalized learningdeep and meaningful learning (DML)lcsh:Technologylcsh:Chemistry0508 media and communicationsEmpirical researchSocial integrationMeaningful learningsystematic literature review (SLR)General Materials Sciencelcsh:QH301-705.5Instrumentatione-learningFluid Flow and Transfer Processeslcsh:Tbusiness.industryProcess Chemistry and Technologysocial virtual reality environments (SVREs)05 social sciencesGeneral Engineering050301 educationlcsh:QC1-999Computer Science Applicationslcsh:Biology (General)lcsh:QD1-999Conceptual frameworklcsh:TA1-2040distance educationlcsh:Engineering (General). Civil engineering (General)businessPsychology0503 educationlcsh:PhysicsCognitive psychologyApplied Sciences
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Gender Diversity in STEM Disciplines: A Multiple Factor Problem.

2019

La falta de diversidad, y específicamente de diversidad de género, es uno de los problemas clave que se están encontrando tanto las empresas del sector tecnológico como las instituciones del ámbito académico en la educación superior. Según la UNESCO, las mujeres representan el 35% de todos los matriculados en las ramas de Ciencia, Tecnología, Ingeniería y Matemáticas (STEM, en sus siglas en inglés), encontrándose el mínimo, un 3%, en el área de las Tecnologías de la Información y las Comunicaciones (TIC). Al mismo tiempo, el número de mujeres profesionales que abandonan trabajos de perfil tecnológico es inaceptablemente alto. Como miembros de una institución de educación superior centrada e…

Higher educationGender diversitygendered innovationmedia_common.quotation_subjecteducationGeneral Physics and Astronomylcsh:Astrophysics010501 environmental sciencesBachelor01 natural sciencesArticleDones en la cièncialcsh:QB460-466ComputingMilieux_COMPUTERSANDEDUCATIONlcsh:ScienceGender diversity0105 earth and related environmental sciencesmedia_commonMedical educationComputingMilieux_THECOMPUTINGPROFESSIONbusiness.industry05 social sciences050301 educationlcsh:QC1-999Test (assessment)Gendered innovationWomen in STEM fieldsInformation and Communications TechnologyInformació Teoria de lawomen in STEMWomen in STEMgender diversitylcsh:Qbusiness0503 educationlcsh:PhysicsDiversity (politics)GraduationEntropy (Basel, Switzerland)
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Evolutionary Design Optimization of an Alkaline Water Electrolysis Cell for Hydrogen Production

2020

Hydrogen is an excellent energy source for long-term storage and free of greenhouse gases. However, its high production cost remains an obstacle to its advancement. The two main parameters contributing to the high cost include the cost of electricity and the cost of initial financial investment. It is possible to reduce the latter by the optimization of system design and operation conditions, allowing the reduction of the cell voltage. Because the CAPEX (initial cost divided by total hydrogen production of the electrolyzer) decreases according to current density but the OPEX (operating cost depending on the cell voltage) increases depending on the current density, there exists an optimal cu…

Hydrogen020209 energychemistry.chemical_element02 engineering and technologylcsh:Technologylaw.inventionlcsh:Chemistrylawgenetic algorithm0202 electrical engineering electronic engineering information engineeringGeneral Materials ScienceCost of electricity by sourceOperating expenseProcess engineeringlcsh:QH301-705.5InstrumentationOperating costhydrogen costHydrogen productionFluid Flow and Transfer ProcessesElectrolysislcsh:Tbusiness.industryProcess Chemistry and TechnologyAlkaline water electrolysisGeneral Engineering021001 nanoscience & nanotechnologylcsh:QC1-999Computer Science ApplicationsSettore ING-IND/23 - Chimica Fisica Applicatalcsh:Biology (General)lcsh:QD1-999chemistrylcsh:TA1-2040Environmental sciencealkaline water electrolysialkaline water electrolysislcsh:Engineering (General). Civil engineering (General)0210 nano-technologybusinessEnergy sourceoptimizationlcsh:PhysicsApplied Sciences
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Assessing the performance of thermal inertia and Hydrus models to estimate surface soil water content

2017

The knowledge of soil water content (SWC) dynamics in the upper soil layer is important for several hydrological processes. Due to the difficulty of assessing the spatial and temporal SWC dynamics in the field, some model-based approaches have been proposed during the last decade. The main objective of this work was to assess the performance of two approaches to estimate SWC in the upper soil layer under field conditions: the physically-based thermal inertia and the Hydrus model. Their validity was firstly assessed under controlled laboratory conditions. Thermal inertia was firstly validated in laboratory conditions using the transient line heat source (TLHS) method. Then, it was applied in…

Hydrus010504 meteorology & atmospheric sciencesMean squared error0208 environmental biotechnologyHydrus numerical modelSoil science02 engineering and technologyHydrus numerical model; Soil thermal inertia; Soil water content; Sparse vegetation; Applied MathematicsThermal diffusivitySoil water content01 natural scienceslcsh:TechnologySparse vegetationlcsh:ChemistrySoil thermal propertiesSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliGeneral Materials ScienceTime domainSoil thermal inertiaReflectometryInstrumentationlcsh:QH301-705.50105 earth and related environmental sciencesRemote sensingFluid Flow and Transfer Processeslcsh:TProcess Chemistry and TechnologyApplied MathematicsSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaGeneral EngineeringRanginglcsh:QC1-999020801 environmental engineeringComputer Science Applicationslcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040Soil waterEnvironmental sciencelcsh:Engineering (General). Civil engineering (General)lcsh:Physicssoil water content; soil thermal inertia; Hydrus numerical model; sparse vegetationSettore ICAR/06 - Topografia E Cartografia
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The weak mixing angle from low energy neutrino measurements: A global update

2016

Taking into account recent theoretical and experimental inputs on reactor fluxes we reconsider the determination of the weak mixing angle from low energy experiments. We perform a global analysis to all available neutrino-electron scattering data from reactor antineutrino experiments, obtaining sin^2(theta_W) = 0.252 \pm 0.030. We discuss the impact of the new theoretical prediction for the neutrino spectrum, the new measurement of the reactor antineutrino spectrum by the Daya Bay collaboration, as well as the effect of radiative corrections. We also reanalyze the measurements of the nu_e-e cross section at accelerator experiments including radiative corrections. By combining reactor and ac…

ImaginationNuclear and High Energy Physicsmedia_common.quotation_subjectFOS: Physical sciences01 natural sciencesHigh Energy Physics - ExperimentPhysics::GeophysicsNuclear physicsHigh Energy Physics - Experiment (hep-ex)Cross section (physics)High Energy Physics - Phenomenology (hep-ph)Low energy0103 physical sciencesRadiative transfer010306 general physicsMixing (physics)media_commonPhysics010308 nuclear & particles physicsScatteringWeinberg anglelcsh:QC1-999High Energy Physics - PhenomenologyHigh Energy Physics::ExperimentNeutrinolcsh:PhysicsPhysics Letters B
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Tropical tropopause ice clouds: a dynamic approach to the mystery of low crystal numbers

2012

Abstract. The occurrence of high, persistent ice supersaturation inside and outside cold cirrus in the tropical tropopause layer (TTL) remains an enigma that is intensely debated as the "ice supersaturation puzzle". However, it was recently confirmed that observed supersaturations are consistent with very low ice crystal concentrations, which is incompatible with the idea that homogeneous freezing is the major method of ice formation in the TTL. Thus, the tropical tropopause "ice supersaturation puzzle" has become an "ice nucleation puzzle". To explain the low ice crystal concentrations, a number of mainly heterogeneous freezing methods have been proposed. Here, we reproduce in situ measure…

In situAtmospheric ScienceSupersaturationIce crystalsChemistryAtmospheric scienceslcsh:QC1-999lcsh:ChemistryCrystallcsh:QD1-999Sea ice growth processesIce nucleusddc:550CirrusClear icelcsh:Physics
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Space syntax analysis applied to urban street lighting: Relations between spatial properties and lighting levels

2019

According to the international technical standards, higher lighting levels (luminance and illuminance levels) are expected in trafficked and central roads (where restrictive minimum lighting requirements are necessary) and lower lighting levels are expected in peripheral and less trafficked roads. Starting from this assumption, in this paper, the authors analyse the correlations between spatial properties (expressed by spatial indicators, for example, the integration index and the choice index) and lighting levels (expressed by lighting parameters, for example luminance and illuminance) upon roads of an urban context. The analysis has been applied to the case study of the medium sized town …

Index (economics)Lighting refurbishment designComputer science0211 other engineering and technologiesTechnical standardspace syntax analysiContext (language use)02 engineering and technologylighting measurementLuminancelcsh:TechnologyTransport engineeringlcsh:ChemistryLighting simulationsTraffic volumeLighting measurementsGeneral Materials Science021108 energyUrban street lightingInstrumentationlcsh:QH301-705.5Space syntax analysisSpace syntaxFluid Flow and Transfer ProcessesSettore ING-IND/11 - Fisica Tecnica Ambientalelcsh:TProcess Chemistry and TechnologyGeneral EngineeringIlluminance021107 urban & regional planningLighting measurements; Lighting refurbishment design; Lighting simulations; Space syntax analysis; Urban street lightinglcsh:QC1-999Computer Science Applicationslcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040Urban scalelcsh:Engineering (General). Civil engineering (General)lcsh:Physics
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From hybrid to quadratic inflation with high-scale supersymmetry breaking

2014

Motivated by the reported discovery of inflationary gravity waves by the BICEP2 experiment, we propose an inflationary scenario in supergravity, based on the standard superpotential used in hybrid inflation. The new model yields a tensor-to-scalar ratio r ~ 0.14 and scalar spectral index ns ~ 0.964, corresponding to quadratic (chaotic) inflation. The important new ingredients are the high-scale, (1.6-10) x 10^13 GeV, soft supersymmetry breaking mass for the gauge singlet inflaton field and a shift symmetry imposed on the K\"ahler potential. The end of inflation is accompanied, as in the earlier hybrid inflation models, by the breaking of a gauge symmetry at (1.2-7.1) x 10^16 GeV, comparable…

Inflation (cosmology)PhysicsHigh Energy Physics - TheoryParticle physicsNuclear and High Energy PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)SupergravitySpontaneous symmetry breakingSuperpotentialHigh Energy Physics::PhenomenologyFOS: Physical sciencesAstrophysics::Cosmology and Extragalactic AstrophysicsInflatonSupersymmetry breakingSymmetry (physics)lcsh:QC1-999High Energy Physics - PhenomenologyHigh Energy Physics::TheoryGeneral Relativity and Quantum CosmologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)lcsh:PhysicsGauge symmetryAstrophysics - Cosmology and Nongalactic AstrophysicsPhysics Letters B
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Information Decomposition in Multivariate Systems: Definitions, Implementation and Application to Cardiovascular Networks

2016

The continuously growing framework of information dynamics encompasses a set of tools, rooted in information theory and statistical physics, which allow to quantify different aspects of the statistical structure of multivariate processes reflecting the temporal dynamics of complex networks. Building on the most recent developments in this field, this work designs a complete approach to dissect the information carried by the target of a network of multiple interacting systems into the new information produced by the system, the information stored in the system, and the information transferred to it from the other systems; information storage and transfer are then further decomposed into amou…

Information transferDynamical systems theoryComputer scienceGeneral Physics and Astronomylcsh:AstrophysicsInformation theorycomputer.software_genreMachine learning01 natural sciencesEntropy - Cardiorespiratory interactions - Dynamical systems -cardiovascular interactions03 medical and health sciencessymbols.namesake0302 clinical medicinelcsh:QB460-4660103 physical sciencesinformation transferEntropy (information theory)lcsh:Science010306 general physicsGaussian processautoregressive processesmultivariate time series analysisbusiness.industryautonomic nervous systemredundancy and synergycardiorespiratory interactionsdynamical systemsComplex networkNetwork dynamicslcsh:QC1-999autonomic nervous system; autoregressive processes; cardiorespiratory interactions; cardiovascular interactions; Granger causality; dynamical systems; information dynamics; information transfer; redundancy and synergy; multivariate time series analysisAutoregressive modelSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaGranger causalitysymbolslcsh:QArtificial intelligenceData mininginformation dynamicsbusinesscomputerlcsh:Physics030217 neurology & neurosurgeryEntropy; Volume 19; Issue 1; Pages: 5
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Synergistic Information Transfer in the Global System of Financial Markets.

2020

Uncovering dynamic information flow between stock market indices has been the topic of several studies which exploited the notion of transfer entropy or Granger causality, its linear version. The output of the transfer entropy approach is a directed weighted graph measuring the information about the future state of each target provided by the knowledge of the state of each driving stock market index. In order to go beyond the pairwise description of the information flow, thus looking at higher order informational circuits, here we apply the partial information decomposition to triplets consisting of a pair of driving markets (belonging to America or Europe) and a target market in Asia. Our …

Information transferFLOWGeneral Physics and Astronomysynergylcsh:AstrophysicsGRANGER CAUSALITYArticleeconometricsstock marketBusiness and EconomicsGranger causalityFinancial marketsHigher order dependencies SynergyOrder (exchange)lcsh:QB460-466EconomicsEconometricsfinancial marketsInformation flow (information theory)NETWORKlcsh:Scienceinformation theoryhigher order dependenciesCROSS-CORRELATIONSFinancial marketStock market indexlcsh:QC1-999Mathematics and Statisticstime series analysislcsh:QTransfer entropyStock marketlcsh:PhysicsEntropy (Basel, Switzerland)
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