977 resultados para Aluminio - Propriedades elétricas


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O livro expõe a trajetória de Stephen Gray (1666‑1736), cientista inglês que dedicou sua vida à Astronomia e à Física, especificamente na área da Eletricidade, e realizou uma série de experimentos que levaram a conclusões inéditas para a época. Sua principal descoberta foi perceber que existem dois tipos de substâncias com propriedades elétricas muito distintas, hoje conhecidas como condutores e isolantes. A obra mostra que Gray foi o primeiro cientista da história a atribuir aos metais e outros condutores a propriedade de atrair corpos leves colocados em suas proximidades, fenômeno que atualmente é conhecido como indução ou polarização elétrica. E também o pioneiro na criação de eletretos, substâncias que apresentam uma eletrização de longa duração, mostrando ainda como preservar temporalmente a eletrização dos corpos. Os autores apresentam uma breve biografia do cientista Stephen Gray, que apesar de sua importância permanece bastante desconhecido dos pesquisadores contemporâneos, principalmente brasileiros, uma vez que seus escritos e experimentos carecem de divulgação no país. Por conta dessa condição, a obra traz a tradução de seus dez artigos sobre eletricidade. Os experimentos de Gray são contextualizados, ilustrados com figuras didáticas e explicados com base nos conhecimentos atuais da Física. O livro mostra também como reproduzir os principais experimentos do cientista inglês com a utilização de materiais de baixo custo. De acordo com os autores, com o objetivo de motivar outros cientistas a se aprofundarem nessas pesquisas e a desenvolverem a obra de Gray de forma que seja utilizada no ensino, o livro busca “resgatar a memória desse grande pesquisador, que tinha um olhar afiado, era bastante preciso em suas explicações, criativo em suas ideias e muito claro em seus textos”

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Ciência dos Materiais - FEIS

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Technology always advances and thus the device miniaturization and improved performance, besides multifunctionality, they become extremely necessary. A wave of research on the area tends to grow in number and importance in today's market, it is necessary to search for new materials, new applicability of the existing ones and new processes for increasingly cheaper costs. Dielectric materials are considered a key element in this sector being the main electrical properties its high dielectric constant and low dielectric loss. The Polymeric Precursor Method appears as a good alternative because is a low cost, simple process with controlled stoichiometry. In this method, two steps were performed. In a first step, the precursor solution was decomposed into powders and in a second step the precursor solution was converted in thin films. In this work, was used the polymeric precursor methods to get thin films where they were heat treated and characterized by XRD, SEM and AFM. We have obtained Bi3NbO7 thin films with good homogeneity and uniform distribution of grains were noted. We observed that the best condition to obtain the tetragonal phase is annealing the film at high temperatures for a longer soaking time and with excess of bismuth. Several oxides electrodes were evaluated aiming to obtain textured dielectric thin films

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The contamination of the physical environment occurs as a result of the lack of planning and inadequate management of hazardous products. Due to the difficulty of the characterization and study of soil and groundwater, the contamination has been long neglected. The characterization of these areas by research techniques through direct methods such as physical and chemical analysis, are widely used in the diagnosis and monitoring. However, despite presenting quantitative results, this method is not representative in spatial terms. The purpose of this work is to bring geophysical complementation with the diagnosis, bringing the spatial element for the detection of the contamination plume. In the study area, there was a railway accident in 1999 in which three wagons fell and spilled 240,000 L of diesel onto the soil. The main objective is to assess the presence of contaminants in the residual phase and dissolved in the subsurface, using the technique of Electrical Tomography (ETR), understand the effects of natural attenuation process in the degradation of hydrocarbons and changes in electrical properties in soil and groundwater. The results allowed the definition of three distinct patterns of resistivity region with presence of dissolved phase, set in a historical chemical analyzes: low values (> 60Ω.m) associated with the presence of hydrocarbons in an advanced stage of degradation, intermediate values (260Ω.me 511Ω .m) indicative of coexistence of residual hydrocarbons and dissolved phase, and high values (> 1000Ω.m), which reveal the prevalence of residual phase with incipient degradation, possibly in high toxicity concentrations for effective action of biodegradation processes. The diagnostic of areas with potential accumulation of residual phase can subsidize the planning of remediation techniques and promote the complete decontamination of the area

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Eletronicalceramics are used in many applications such as: multilayer capacitor, transducer, pyroelectric sensors and electrooptic devices. In recent years there has been a growing demand for eletronicalceramics with better performance and functionality. This demand has accelerated the development of synthesis techniques to produce powders with well-defined particle size, shape and crystallinity. The eletronicalceramics in the form of bulk are determined by their performance characteristics of the powders used and the preparation process. So, physical and chemical properties of powders, such as chemical control of stoichiometry, purity, homogeneity, particle size and shape should be observed when choosing the methods of synthesis. Among the techniques used so far, the polymeric precursor method, also known as Pechini, has been considered ideal for the preparation of nanosized powders. Thus, this research project aims to use the polymeric precursor method to prepare powders of lithium tantalate and lanthanum tantalate, with good chemical stability. In this aspect is proposed to investigate the effects of variation of the concentration of europium about the properties of tantalate because doping with Eu3 + indicates that they may occupy different sites in the crystal structure, as in the case of LiTaO3. Effects of things like occupation sites, stability of phases and formation temperature have been previously investigated by the group, which motivated the formulation of this project. Our proposal aims to introduce the Eu3 + LaTaO4 and LiTaO3 and study the structural and optical properties of the powders obtained by Pechini method, as well as correlate these studies with the electrical properties of the material, mainly the Ironelectricty Hysteresis.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)