Search results for "SCALE"

showing 10 items of 5180 documents

Displacements measurement in a building model using the speckle photography technique

2005

The use of reduced scale models in civil engineering has made it possible to study large structures such as buildings. Using non-destructive optical techniques such as double-exposure speckle photography, extremely valuable results can be obtained, where mathematical methods are often not very exact. This work studies the model of an eighteen-storey building in which displacements can be measured at each storey of each view. It also presents a comparison of the displacement field, which was obtained with the Finite Element Method.

Speckle photographybusiness.industryComputer scienceWork (physics)Displacement fieldBuilding modelStructural engineeringbusinessScale modelFinite element methodCivil and Structural EngineeringEngineering Structures
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Data repeatability and acquisition techniques for Time-Domain Spectral Induced Polarization

2013

The Time Domain Induced Polarization (TDIP) technique is widely used in applied geophysics, particularly for environmental issues, for instance for delineating landfills or detecting leachate percolation. Because the reliability of IP data remains an issue at the field scale, this paper deals with the factors controlling data quality and compares different arrays and acquisition parameters for optimal collection of data in the field. The first part focuses on repeatability experiments carried out in the former Horlokke landfill (Denmark), in order to infer the degree of which a signal can be reproduced over time. Results show a good repeatability, with on average less than 10% of difference…

Spectral induced polarisationgeophysicsMineralogyScale (descriptive set theory)RepeatabilityInduced polarizationSignalGeophysicsData qualityspectral induced polarizationspectralTime domainAlgorithmGeologyReliability (statistics)
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The Fluorescence Explorer (FLEX) Mission: From Spectral Measurements to High-Level Science Products

2021

The Fluorescence Explorer (FLEX) mission was selected in 2015, by the European Space Agency (ESA), as an Earth Explorer mission, with a launch planned for 2024. The key scientific objective of the mission is the quantitative global mapping of actual photosynthetic activity of terrestrial ecosystems, as a function of variable vegetation health status and environmental stress conditions. The measurements will have a spatial resolution of 300 m, adequate to resolve land surface processes associated to vegetation dynamics at a global scale. To be able to accomplish such objective, the FLEX mission carries the FLORIS spectrometer, specially optimized to map vegetation fluorescence with a spectra…

SpectrometerFLEXEnvironmental scienceSampling (statistics)VegetationScale (map)Image resolutionEnvironmental stressSpace explorationRemote sensing2021 IEEE International Geoscience and Remote Sensing Symposium IGARSS
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Multi-scale Modelling of Segmentation

2016

While listening to music, people often unwittingly break down musical pieces into constituent chunks such as verses and choruses. Music segmentation studies have suggested that some consensus regarding boundary perception exists, despite individual differences. However, neither the effects of experimental task (i.e., real-time vs. annotated segmentation), nor of musicianship on boundary perception are clear. Our study assesses musicianship effects and differences between segmentation tasks. We conducted a real-time experiment to collect segmentations by musicians and nonmusicians from nine musical pieces. In a second experiment on non-real-time segmentation, musicians indicated boundaries a…

Speech recognitionmedia_common.quotation_subject05 social sciencesKernel density estimationBoundary (topology)Pulse (music)Scale (music)050105 experimental psychologyTask (project management)03 medical and health sciences0302 clinical medicinePerception0501 psychology and cognitive sciencesActive listeningSegmentationPsychology030217 neurology & neurosurgeryMusicmedia_commonMusic Perception
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Circuits and excitations to enable Brownian token-based computing with skyrmions

2021

Brownian computing exploits thermal motion of discrete signal carriers (tokens) for computations. In this paper we address two major challenges that hinder competitive realizations of circuits and application of Brownian token-based computing in actual devices for instance based on magnetic skyrmions. To overcome the problem that crossings generate for the fabrication of circuits, we design a crossing-free layout for a composite half-adder module. This layout greatly simplifies experimental implementations as wire crossings are effectively avoided. Additionally, our design is shorter to speed up computations compared to conventional designs. To address the key issue of slow computation base…

SpeedupCondensed Matter - Mesoscale and Nanoscale PhysicsPhysics and Astronomy (miscellaneous)Computer science530 PhysicsComputationFOS: Physical sciencesTopologySecurity token530 PhysikPower (physics)Discrete-time signalMesoscale and Nanoscale Physics (cond-mat.mes-hall)TorqueBrownian motionElectronic circuit
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Self-organization and nanostructural control in thin film heterojunctions.

2013

In spite of more than two-decades of studies of molecular self-assembly, the achievement of low cost, easy-to-implement and multi-parameter bottom-up approaches to address the supramolecular morphology in three-dimensional (3D) systems is still missing. In the particular case of molecular thin films, the 3D nanoscale morphology and function are crucial for both fundamental and applied research. Here we show how it is possible to tune the 3D film structure (domain size, branching, etc.) of thin film heterojunctions with nanoscale accuracy together with the modulation of their optoelectronic properties by employing an easy two-step approach. At first we prepared multi-planar heterojunctions w…

Spin coatingMaterials sciencebusiness.industryExcitonSupramolecular chemistryNanotechnologyHeterojunction3D nanopatterning thin films non-equilibrium exciton diffusion length optoelectronic properties bulk heterojunctionsSemiconductorGeneral Materials ScienceThin filmLuminescencebusinessNanoscopic scaleNanoscale
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Room temperature antiferromagnetic resonance and inverse spin-Hall voltage in canted antiferromagnets

2021

We study theoretically and experimentally the spin pumping signals induced by the resonance of canted antiferromagnets with Dzyaloshinskii-Moriya interaction and demonstrate that they can generate easily observable inverse spin-Hall voltages. Using a bilayer of hematite/heavy metal as a model system, we measure at room temperature the antiferromagnetic resonance and an associated inverse spin-Hall voltage, as large as in collinear antiferromagnets. As expected for coherent spin pumping, we observe that the sign of the inverse spin-Hall voltage provides direct information about the mode handedness as deduced by comparing hematite, chromium oxide and the ferrimagnet yttrium-iron garnet. Our r…

Spin pumpingMaterials scienceCondensed matter physicsCondensed Matter - Mesoscale and Nanoscale PhysicsTerahertz radiation530 PhysicsGeneral Physics and AstronomyResonanceFOS: Physical sciencesObservable530 PhysikCondensed Matter::Mesoscopic Systems and Quantum Hall Effect01 natural sciencesCondensed Matter::Materials ScienceFerrimagnetismHall effect0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)AntiferromagnetismCondensed Matter::Strongly Correlated Electrons010306 general physicsSpin (physics)
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Vanadyl dithiolate single molecule transistors: the next spintronic frontier?

2018

The role of Chemistry in the road towards quantum devices is the design of elementary pieces with a built-in function. A brilliant example is the use of molecular transistors as nuclear spin detectors, which, up to now, has been implemented only on [TbPc$_2$]$^-$. We argue that this is an artificial constraint and critically discuss the limitations of current theoretical approaches to assess the potential of molecules for their use in spintronics. In connection with this, we review the recent progress in the preparation of highly coherent spin qubits based on vanadium dithiolate complexes and argue that the use of vanadyl dithiolates as single molecule transistors to read and control a trip…

SpintronicsCondensed matter physicsCondensed Matter - Mesoscale and Nanoscale PhysicsTransistorSpin valveFOS: Physical sciencesVanadiumchemistry.chemical_element02 engineering and technologyQuantum devices010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter::Mesoscopic Systems and Quantum Hall Effect01 natural sciences0104 chemical scienceslaw.inventionInorganic ChemistrychemistrylawQubitMesoscale and Nanoscale Physics (cond-mat.mes-hall)MoleculeCondensed Matter::Strongly Correlated Electrons0210 nano-technologySpin (physics)
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Performance of Radiomics Features in the Quantification of Idiopathic Pulmonary Fibrosis from HRCT.

2020

Background: Our study assesses the diagnostic value of different features extracted from high resolution computed tomography (HRCT) images of patients with idiopathic pulmonary fibrosis. These features are investigated over a range of HRCT lung volume measurements (in Hounsfield Units) for which no prior study has yet been published. In particular, we provide a comparison of their diagnostic value at different Hounsfield Unit (HU) thresholds, including corresponding pulmonary functional tests. Methods: We consider thirty-two patients retrospectively for whom both HRCT examinations and spirometry tests were available. First, we analyse the HRCT histogram to extract quantitative lung fibrosis…

Spirometrymusculoskeletal diseasesHigh-resolution computed tomographyhigh resolution computed tomographyClinical Biochemistry-Article030218 nuclear medicine & medical imagingPulmonary function testing03 medical and health sciencesIdiopathic pulmonary fibrosis0302 clinical medicineRadiomicsHounsfield scalemedicineSettore ING-INF/05 - Sistemi Di Elaborazione Delle Informazionilcsh:R5-920Lungmedicine.diagnostic_testbusiness.industryLung fibrosisrespiratory systemmedicine.diseaseidiopathic pulmonary fibrosisrespiratory tract diseasesmedicine.anatomical_structure030228 respiratory systemradiomicslcsh:Medicine (General)businessNuclear medicineDiagnostics (Basel, Switzerland)
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Impact of COVID-19 on Sustainable University Sports: Analysis of Physical Activity and Positive and Negative Affects in Athletes

2021

The suspension of university activities due to the pandemic affected training and sports competitions. However, some universities adapted online education, allowing students to carry out their activities without being infected by the virus. The aim of this study was to find out the impact of the pandemic on physical activity levels and the positive and negative effects on Chilean university athletes. The information was obtained by applying the PANAS scale and demographic and physical activity variables were also measured. The sample of Chilean university athletes (n = 254) were aged between 18 and 31 years (M = 22.17

Sports analysisGerontology2019-20 coronavirus outbreakCoronavirus disease 2019 (COVID-19)Geography Planning and DevelopmentPhysical activityTJ807-830physical activityManagement Monitoring Policy and LawTD194-195Renewable energy sources03 medical and health sciences0302 clinical medicinepositive and negative affectsPandemicGE1-350030212 general & internal medicineEnvironmental effects of industries and plantsbiologyRenewable Energy Sustainability and the EnvironmentAthletesCOVID-19030229 sport sciencesbiology.organism_classificationPANAS scaleMental healthEnvironmental sciencesScale (social sciences)university athletesPsychologySustainability
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