147 resultados para Holographic Optical Elements
Resumo:
Ens han demanat que en aquesta edició de Temps d'Educació es presenti una qüestió difícil, i pel que sembla incomoda, que sobrepassa els idealismes pedagògics destinats als «sants innocents» i ens situa més enllà de certes omnipotències tècniques que semblen voler reduir qualsevol problema infantil o juvenil a l'àmbit d'una educació curricular. Es tracta de la Justícia de Menors. Per aixo agraïm l'aportació de totes les persones que des del coneixement i l'experiència en han ofert generosament els seus escrits i la seva veu com a elements introductoris per a un debat obert.
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La comunicació com a mètode per aprendre no és nou, tot i així les noves tecnologies obren la porta a noves oportunitats i nous projectes entorn aquest concepte. No només es tracta de treballar elements curriculars, sinó també actitudinals a través de la opció de connexió entre contextos. L’objectiu d’aquesta recerca és analitzar quina és l’actitud i els aprenentatges i/o retencions dels infants a partir d’una connexió generada entre dos contextos. Per tal de donar resposta a aquest plantejament de la investigació es crea una intervenció entre les aules i s’utilitzen com a instruments de recollida de dades les observacions, els dibuixos i els grups de discussió. Els resultats mostren una actitud oberta i d’interès per part dels infants davant de la metodologia de comunicació a l’aula, però un aprenentatge i/o retenció relacionat amb els continguts dels elements de l’altre context per sobre dels elements TIC. Es conclou doncs que dins l’aula treballant amb les noves tecnologies es genera un incentiu pels infants fent evident que hi ha hagut un aprenentatge compartit.
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Las características específicas del colectivo de profesionales de la etapa de Educación infantil proyectan una dinámica muy activa que genera nuevas metodologías, estrategias y recursos para una intervención educativa de calidad, en una etapa de vital importancia para el correcto desarrollo infantil. Estas características han de tenerse en cuenta en la formación de formadores del profesorado de esta etapa educativa, para favorecer su desarrollo profesional. Son necesarios proyectos de formación alternativos que conecten los «ámbitos de educación» a partir de propuestas integradas: escuela, familia, instituciones locales y asociaciones. Conjuntamente han de elaborar modelos desinteresados y democráticos, capaces de canalizar la interacción y la reciprocidad entre la cultura de la escuela y la cultura externa a ella.
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It is often assumed that total head losses in a sand filter are solely due to the filtration media and that there are analytical solutions, such as the Ergun equation, to compute them. However, total head losses are also due to auxiliary elements (inlet and outlet pipes and filter nozzles), which produce undesirable head losses because they increase energy requirements without contributing to the filtration process. In this study, ANSYS Fluent version 6.3, a commercial computational fluid dynamics (CFD) software program, was used to compute head losses in different parts of a sand filter. Six different numerical filter models of varying complexities were used to understand the hydraulic behavior of the several filter elements and their importance in total head losses. The simulation results show that 84.6% of these were caused by the sand bed and 15.4% were due to auxiliary elements (4.4% in the outlet and inlet pipes, and 11.0% in the perforated plate and nozzles). Simulation results with different models show the important role of the nozzles in the hydraulic behavior of the sand filter. The relationship between the passing area through the nozzles and the passing area through the perforated plate is an important design parameter for the reduction of total head losses. A reduced relationship caused by nozzle clogging would disproportionately increase the total head losses in the sand filter
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We present a polarimetric-based optical encoder for image encryption and verification. A system for generating random polarized vector keys based on a Mach-Zehnder configuration combined with translucent liquid crystal displays in each path of the interferometer is developed. Polarization information of the encrypted signal is retrieved by taking advantage of the information provided by the Stokes parameters. Moreover, photon-counting model is used in the encryption process which provides data sparseness and nonlinear transformation to enhance security. An authorized user with access to the polarization keys and the optical design variables can retrieve and validate the photon-counting plain-text. Optical experimental results demonstrate the feasibility of the encryption method.
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We present a general algorithm for the simulation of x-ray spectra emitted from targets of arbitrary composition bombarded with kilovolt electron beams. Electron and photon transport is simulated by means of the general-purpose Monte Carlo code PENELOPE, using the standard, detailed simulation scheme. Bremsstrahlung emission is described by using a recently proposed algorithm, in which the energy of emitted photons is sampled from numerical cross-section tables, while the angular distribution of the photons is represented by an analytical expression with parameters determined by fitting benchmark shape functions obtained from partial-wave calculations. Ionization of K and L shells by electron impact is accounted for by means of ionization cross sections calculated from the distorted-wave Born approximation. The relaxation of the excited atoms following the ionization of an inner shell, which proceeds through emission of characteristic x rays and Auger electrons, is simulated until all vacancies have migrated to M and outer shells. For comparison, measurements of x-ray emission spectra generated by 20 keV electrons impinging normally on multiple bulk targets of pure elements, which span the periodic system, have been performed using an electron microprobe. Simulation results are shown to be in close agreement with these measurements.
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Postprint (published version)
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Optical transport networks (OTN) must be prepared in terms of better resource utilization, for accommodating unicast and multicast traffic together. Light-trees have been proposed for supporting multicast connections in OTN. Nevertheless when traffic grooming is applied in light-trees, resources can be underutilized as traffic can be routed to undesirable destinations in order to avoid optical-electrical-optical (OEO) conversions. In this paper, a novel architecture named S/G light- tree for supporting unicast/multicast connections is proposed. The architecture allows traffic dropping and aggregation in different wavelengths without performing OEO conversions. A heuristic that routes traffic demands using less wavelengths by taking advantage of the proposed architecture is designed as well. Simulation results show that the architecture can minimize the number of used wavelengths and OEO conversions when compared to light-trees
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El present treball cerca elements eròtics i sensuals en l'obra dels principals trobadors medievals catalans i compara els resultats amb el llibre de cavalleria més famós de la literatura castellana, l'Amadís de Gaula.
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A cohesive element for shell analysis is presented. The element can be used to simulate the initiation and growth of delaminations between stacked, non-coincident layers of shell elements. The procedure to construct the element accounts for the thickness offset by applying the kinematic relations of shell deformation to transform the stiffness and internal force of a zero-thickness cohesive element such that interfacial continuity between the layers is enforced. The procedure is demonstrated by simulating the response and failure of the Mixed Mode Bending test and a skin-stiffener debond specimen. In addition, it is shown that stacks of shell elements can be used to create effective models to predict the inplane and delamination failure modes of thick components. The results indicate that simple shell models can retain many of the necessary predictive attributes of much more complex 3D models while providing the computational efficiency that is necessary for design
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The optical, mechanical, and microstructural properties of MgF2 single layers grown by ion beam sputtering have been investigated by spectrophotometric measurements, film stress characterization, x-ray photoelectron spectroscopy (XPS), x-ray diffraction, and transmission electron microscopy. The deposition conditions, using fluorine reactive gas or not, have been found to greatly influence the optical absorption and the stress of the films as well as their microstructure. The layers grown with fluorine compensation exhibit a regular columnar microstructure and an UV-optical absorption which can be very low, either as deposited or after thermal annealings at very low temperatures. On the contrary, layers grown without fluorine compensation exhibit a less regular microstructure and a high ultraviolet absorption which is particularly hard to cure. On the basis of calculations, it is shown that F centers are responsible for this absorption, whereas all the films were found to be stoichiometric, in the limit of the XPS sensitivity. On the basis of external data taken from literature, our experimental curves are analyzed, so we propose possible diffusion mechanisms which could explain the behaviors of the coatings.