946 resultados para Windows Azure
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Fibre reinforced thermoplastic pre impregnated materials produced continuously by diverse methods and processing conditions were used to produce composites using pultrusion. The processing windows used to produce these materials and composites profiles were optimized by using the Taguchi / DOE (Design of Experiments) methods. Composites were manufactured by pultrusion and compression moulding and subsequently submitted to mechanical testing and microscopy analysis. The obtained results were compared with the expected theoretical ones predicted from the Rule of Mixtures (ROM) and with those of similar engineering conventional available materials. The results obtained shown that produced composites have adequate properties for applications in common and structural engineering markets.
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Dissertação de mestrado em Engenharia de Materiais
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Polymer electrolytes are currently the focus of much attention as potential electrolytes in electrochemical devices such as batteries, display devices and sensors. Generically, solid polymer electrolytes (SPEs) are mixtures of salts with soft polar polymers. SPEs have many advantages including high energy density, no risk of leakage, no issues related to the presence of solvent, wide electrochemical stability windows, simplified processability and light weight. With the goal of developing a new family of environmentally friendly multifunctional biohybrid materials displaying high ionic conductivity we have produced in the present work, flexible films based on different polymers or hybrids incorporating different salts. The polymer electrolytes studied here have been characterized by means of Differential Scanning Calorimetry, Thermogravimetric Analysis, X-ray diffraction, Polarized Optical Microscopy, complex impedance spectroscopy and cyclic voltammetry. An evaluation of the performance of the sample with the highest conductivity as electrolyte in all solid-state ECDs was performed.
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Silk fibroin (SF) is a commonly available natural biopolymer produced in specialized glands of arthropods, with a long history of use in textile production and also in health cares. The exceptional intrinsic properties of these fibers, such as self-assembly, machinability, biocompatibility, biodegradation or non-toxicity, offer a wide range of exciting opportunities [1]. It has long been recognized that silk can be a rich source of inspiration for designing new materials with tailored properties, enhanced performance and high added value for targeted applications, opening exciting new prospects in the domain of materials science and related technological fields, including bio-friendly integration, miniaturization and multifunctionalization. In recent years it has been demonstrated that fibroin is an excellent material for active components in optics and photonics devices. Progress in new technological fields such as optics, photonics and electronics are emerging [2,3]. The incorporation of polymer electrolytes as components of various devices (advanced batteries, smart windows, displays and supercapacitors) offers significant advantages with respect to traditional electrolytes, including enhanced reliability and improved safety. SF films are particularly attractive in this context. They have near-perfect transparency across the VIS range, surface flatness (together with outstanding mechanical robustness), ability to replicate patterned substrates and their thickness may be easily tailored from a few nanometers to hundreds of micrometers through spin-casting of a silk solution into subtract. Moreover, fibroin can be added to other biocomponents or salts in order to modify the biomaterial properties leading to optimized and total different functions. Preliminary tests performed with a prototype electrochromic device (ECD) incorporating SF films doped with lithium triflate and lithium tetrafluoroborate (LiTFSI and LiBF4, respectively) as electrolyte and WO3 as cathodic electrochromic layer, are extremely encouraging. Aiming to evaluate the performance of the ion conducting SF membranes doped with LiTFSI and LiBF4 (SF-Li), small ECDs with glass/ITO/WO3/SF-Li/CeO2-TiO2/ITO/glass configuration were assembled and characterized. The device exhibited, after 4500 cycles, the insertion of charge at -3.0 V reached –1.1 mC.cm-2 in 15 s. After 4500 cycles the window glass-staining, glass/ITO/WO3/Fibrin-Li salts electrolyte/CeO2-TiO2/ITO/glass configuration was reversible and featured a T 8 % at λ = 686 nm
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Noble metal powders containing gold and silver have been used for many centuries, providing different colours in the windows of the medieval cathedrals and in ancient Roman glasses. Nowadays, the interest in nanocomposite materials containing noble nanoparticles embedded in dielectric matrices is related with their potential use for a wide range of advanced technological applications. They have been proposed for environmental and biological sensing, tailoring colour of functional coatings, or for surface enhanced Raman spectroscopy. Most of these applications rely on the so-called localised surface plasmon resonance absorption, which is governed by the type of the noble metal nanoparticles, their distribution, size and shape and as well as of the dielectric characteristics of the host matrix. The aim of this work is to study the influence of the composition and thermal annealing on the morphological and structural changes of thin films composed of Ag metal clusters embedded in a dielectric TiO2 matrix. Since changes in size, shape and distribution of the clusters are fundamental parameters for tailoring the properties of plasmonic materials, a set of films with different Ag concentrations was prepared. The optical properties and the thermal behaviour of the films were correlated with the structural and morphological changes promoted by annealing. The films were deposited by DC magnetron sputtering and in order to promote the clustering of the Ag nanoparticles the as-deposited samples were subjected to an in-air annealing protocol. It was demonstrated that the clustering of metallic Ag affects the optical response spectrum and the thermal behaviour of the films.
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Introdução: informação, conteúdos, saberes: Os conteúdos digitais; Projeto 1: A vida quotidiana dos infonautas; Netiquette; Produção e consumo cultural na sociedade da informação; Cibercultura e vida académica; Media studies e new media studies; Diversas áreas de pesquisa; Proliferação de questões; Reflexividade dos especialistas do saber prático; A falência das antigas certezas. Estética digital: Sean Cubbit: Digital Aesthetics; Computação estética; Natureza da arte digital; Interfaces; o iPhone e iPad; o Windows 8; Design da interação digital; Luvas de realidade virtual; Inputs diretos da eletricidade cerebral; o Sistema de interação com múltiplas interfaces.
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Dissertação de mestrado integrado em Engenharia de Telecomunicações e Informática
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Tese de Doutoramento em Estudos da Criança (Especialidade de Metodologia e Supervisão em Educação de Infância)
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Dissertação de mestrado integrado em Engenharia Civil
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Dissertação de mestrado em Gestão de Recursos Humanos
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El empleo intensivo de computadoras constituye para las investigaciones en los campos de diseño, arte y arquitectura, como así también en las investigaciones formales y/o generativas de cualquier tipo una constante en nuestra actividad. Todo ello trae aparejadas ventajas innegables (velocidad y diversidad de resultados) como también una nueva estructura de costos. (...) Todas nuestras investigaciones tradicionales se valen de recursos muy semejantes a los mecanismos de las computadoras por tratarse de crecimientos o desarrollos numéricos como también leyes de color (tablas cromáticas). Ahora estamos trabajando bajo el sistema de operativo de Windows (empleando herramientas de programación los lenguajes Pascal y C++) empleados equipos PC 486. Paralelamente continuamos las Investigaciones Tradicionales no-computarizadas en lo referido a Color por considerarlas absolutamente indispensables como complemento de las resoluciones que nos brindan las Computadoras. Objetivo general: Avance y ampliación de posibilidades investigativas en el campo de la Geometría Generativa (Creación de Formas) y Cromogénesis (Estudio sistemático y generación del color). Objetivos específicos: 1. Creación y utilización de programas computarizados sobre Puntos Generadores sobre Circunferencia. 2.Creación de obras pictórico-investigativas con base numérica.
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FUNDAMENTO: A doença de Chagas é uma doença parasitária tropical causada pelo protozoário flagelado Trypanosoma cruzi. A cardiomiopatia chagásica é caracterizada por distúrbios na regulação autonômica e na condução do potencial de ação nas fases aguda e crônica da infecção. Embora o fator de necrose tumoral alfa (TNF-α) tenha sido associadoà cardiomiopatia em modelos experimentais e em pacientes com doença de Chagas, outros relatos sugerem que o TNF-α pode exercer ações antiparasitárias durante a fase aguda da infecção. OBJETIVOS: Este estudo teve como objetivo determinar os efeitos de um blocker TNF-α solúvel, o etanercepte, em parâmetros eletrocardiográficos na fase aguda da infecção experimental com Trypanosoma cruzi. MÉTODOS: Foram feitos eletrocardiogramas em camundongos infectados não tratados e camundongos infectados que foram tratados com etanercepte 7 dias após a infecção. Os parâmetros de variabilidade onda do eletrocardiograma e frequência cardíaca foram determinados utilizando o Chart para Windows. RESULTADOS: O tratamento com etanercepte resultou em uma baixa tensão do complexo QRS e uma redução da variabilidade da frequência cardíaca em comparação com a ausência de tratamento. No entanto, os camundongos tratados apresentaram um atraso na queda da curva de sobrevivência durante a fase aguda. CONCLUSÃO: Os resultados deste estudo sugerem que, embora o tratamento com etanercepte promova a sobrevivência em camundongos infectados com uma linhagem virulenta de T. cruzi, o bloqueio do TNF-α gera um complexo de baixa tensão e disfunção autonômica durante a fase aguda da infecção. Esses resultados indicam que a mortalidade durante a fase aguda pode ser atribuída a uma resposta inflamatória sistêmica, em vez da disfunção cardíaca.
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En aquest projecte es presenta el disseny i desenvolupament d'un conjunt d'interfícies per a un sistema de comunicació basat en l'estàndard Zigbee. El sistema està composat per una tarja que integra el mòdul Zigbee, un microcontrolador i una FPGA, que es vol controlar des d'un sistema Pocket PC a través del port SD. La implementació consta d’un driver SDIO per Windows CE 4.2, el controlador SDIO a la FPGA i l'enllaç de comunicació entre la FPGA i el microcontrolador.
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BACKGROUND AND PURPOSE: Accurate placement of an external ventricular drain (EVD) for the treatment of hydrocephalus is of paramount importance for its functionality and in order to minimize morbidity and complications. The aim of this study was to compare two different drain insertion assistance tools with the traditional free-hand anatomical landmark method, and to measure efficacy, safety and precision. METHODS: Ten cadaver heads were prepared by opening large bone windows centered on Kocher's points on both sides. Nineteen physicians, divided in two groups (trainees and board certified neurosurgeons) performed EVD insertions. The target for the ventricular drain tip was the ipsilateral foramen of Monro. Each participant inserted the external ventricular catheter in three different ways: 1) free-hand by anatomical landmarks, 2) neuronavigation-assisted (NN), and 3) XperCT-guided (XCT). The number of ventricular hits and dangerous trajectories; time to proceed; radiation exposure of patients and physicians; distance of the catheter tip to target and size of deviations projected in the orthogonal plans were measured and compared. RESULTS: Insertion using XCT increased the probability of ventricular puncture from 69.2 to 90.2 % (p = 0.02). Non-assisted placements were significantly less precise (catheter tip to target distance 14.3 ± 7.4 mm versus 9.6 ± 7.2 mm, p = 0.0003). The insertion time to proceed increased from 3.04 ± 2.06 min. to 7.3 ± 3.6 min. (p < 0.001). The X-ray exposure for XCT was 32.23 mSv, but could be reduced to 13.9 mSv if patients were initially imaged in the hybrid-operating suite. No supplementary radiation exposure is needed for NN if patients are imaged according to a navigation protocol initially. CONCLUSION: This ex vivo study demonstrates a significantly improved accuracy and safety using either NN or XCT-assisted methods. Therefore, efforts should be undertaken to implement these new technologies into daily clinical practice. However, the accuracy versus urgency of an EVD placement has to be balanced, as the image-guided insertion technique will implicate a longer preparation time due to a specific image acquisition and trajectory planning.
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Thermal systems interchanging heat and mass by conduction, convection, radiation (solar and thermal ) occur in many engineering applications like energy storage by solar collectors, window glazing in buildings, refrigeration of plastic moulds, air handling units etc. Often these thermal systems are composed of various elements for example a building with wall, windows, rooms, etc. It would be of particular interest to have a modular thermal system which is formed by connecting different modules for the elements, flexibility to use and change models for individual elements, add or remove elements without changing the entire code. A numerical approach to handle the heat transfer and fluid flow in such systems helps in saving the full scale experiment time, cost and also aids optimisation of parameters of the system. In subsequent sections are presented a short summary of the work done until now on the orientation of the thesis in the field of numerical methods for heat transfer and fluid flow applications, the work in process and the future work.