998 resultados para Classificação de fibras


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Neste trabalho será apresentada a modelagem por regressão logística, com a finalidade de prever qual seria a inadimplência dos clientes que compõem o portfólio de uma grande instituição financeira do país. Sendo assim, será explorada a ideia de usar o conceito de provisionamento pura e simplesmente, através da estimação de uma probabilidade de default dado por um ou mais modelos estatísticos que serão construídos no decorrer do trabalho, conforme incentiva o comitê de Basileia. Um dos modelos será feito a partir de uma separação prévia de público através de clusters e a outra técnica a ser explorada será a criação de um modelo sem nenhuma separação. O objetivo será a comparação entre as duas métricas de classificação de risco e verificar os trade-off entre elas e os impactos de variáveis macroeconômicas nestes modelos.

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A ferramenta de custos se mostra relevante do ponto de vista gerencial, auxiliando no controle de gastos e na tomada de decisões nas empresas. Para melhor entender este conceito, o material apresenta a taxonomia dos sistemas de custos, além de suas classificações quanto à natureza, à identificação com o produto e à variação quantitativa. Como o estoque representa grande parte dos custos de produção, são apresentadas três formas contábeis para avaliação dos mesmos: PEPS (primeiro a entrar, primeiro a sair), UEPS (último a entrar, primeiro a sair) e Custo Médio.

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Esta videoaula pertence ao curso de "Desenvolvimento de jogos' oferecido pela Secretaria de Educação à Distancia (SEAD) da Universidade Federal de São Carlos (UFSCar)

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ANDRADE JR., T. E. et al. Infiltração de sal de alumínio em fibras de sisal para obtenção de fibras de alumina. Cerâmica, v.51, n.317, p.37-41.ISSN 0366-6913. Disponível em:. Acesso em: 06 out. 2010.

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PEREIRA, Edinete do Nascimento et al. Classificação bibliográfica: as diversas contribuições para o tratamento da informação. In: SEMINÁRIO DE PESQUISA DO CCSA, 15., 2009. Anais... Natal: UFRN, 2009.

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The use of raw materials from renewable sources for production of materials has been the subject of several studies and researches, because of its potential to substitute petrochemical-based materials. The addition of natural fibers to polymers represents an alternative in the partial or total replacement of glass fibers in composites. In this work, carnauba leaf fibers were used in the production of biodegradable composites with polyhydroxybutyrate (PHB) matrix. To improve the interfacial properties fiber / matrix were studied four chemical treatments to the fibers..The effect of the different chemical treatments on the morphological, physical, chemical and mechanical properties of the fibers and composites were investigated by scanning electron microscopy (SEM), infrared spectroscopy, X-ray diffraction, tensile and flexural tests, dynamic mechanical analysis (DMA), thermogravimetry (TGA) and diferential scanning calorimetry (DSC). The results of tensile tests indicated an increase in tensile strength of the composites after the chemical treatment of the fibers, with best results for the hydrogen peroxide treated fibers, even though the tensile strength of fibers was slightly reduced. This suggests a better interaction fiber/matrix which was also observed by SEM fractographs. The glass transition temperature (Tg) was reduced for all composites compared to the pure polymer which can be attributed to the absorption of solvents, moisture and other low molecular weight molecules by the fibers

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Sisal is a renewable agricultural resource adapted to the hostile climatic and soil conditions particularly encountered in the semi-arid areas of the state of Rio Grande do Norte. Consequently, sisal has played a strategic role in the economy of the region, as one of few options of income available in the semi-arid. Find new options and adding value to products manufactured from sisal are goals that contribute not only to the scientific and technological development of the Northeastern region, but also to the increase of the family income for people that live in the semi-arid areas where sisal is grown. Lignocellulosic fibers are extracted from sisal and commonly used to produce both handcrafted and industrial goods including ropes, mats and carpets. Alternatively, addedvalue products can be made using sisal to produce alumina fibers (Al2O3) by biotemplating, which consists in the reproduction of the natural fiber-like structure of the starting material. The objective of this study was to evaluate the conditions necessary to convert sisal into alumina fibers by biotemplating. Alumina fibers were obtaining after pretreating sisal fibers and infiltrating them with a Al2Cl6 saturated solution, alumina sol from aluminum isopropoxide or aluminum gas. Heat-treating temperatures varied from 1200 ºC to 1650 °C. The resulting fibers were then characterized by X-ray diffraction and scanning electronic microscopy. Fibers obtained by liquid infiltration revealed conversion only of the surface of the fiber into α-Al2O3, which yielded limited resistance to handling. Gas infiltration resulted in stronger fibers with better reproduction of the inner structure of the original fiber. All converted fibers consisted of 100% α-Al2O3 suggesting a wide range of technological applications especially those that require thermal isolation