298 resultados para fea-tures


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O objetivo deste trabalho é entender o processo de institucionalização do curso de graduação em Administração de Empresas da Faculdade de Economia, Administração e Contabilidade da Universidade de São Paulo (FEA-USP), tendo como referencial teórico o modelo de Barley e Tolbert (1997). Explorando aspectos históricos para tentar explicar o “espírito do tempo” (Zeitgeist) e ilustrar o processo de surgimento de uma nova graduação para a USP, a metodologia do estudo de caso (YIN, 2001) foi a escolhida por permitir uma maior gama de recursos de pesquisa. Dessa forma, o trabalho analisou as Atas de Reunião da Congregação da época (1946-1965), entrevistas colhidas com quinze pessoas entre protagonistas e observadores da história desta instituição durante o período analisado, jornais publicados pelos próprios alunos da Faculdade e bibliografia sobre o assunto. Utilizando-se de conceitos presentes em Giddens (1979, 1986), Machado-da-Silva, Fonseca e Crubellate (2005), DiMaggio e Powell (1983), Hardy e Maguire (2008), Khurana (2007), entre outros autores que trabalham com a Teoria Institucional, o processo de institucionalização do curso de Administração de Empresas na FEA-USP é analisado, relacionando-se a literatura disponível com os fatos encontrados em documentos e depoimentos colhidos. Alguns acontecimentos chamam a atenção, como a demora em mais de uma década para a fundação da FEA dentro da USP, a ligação da cadeira de Ciência da Administração com o Instituto de Administração (IA), que teve sua gênese a partir do Departamento do Serviço Público (DSP), órgão ligado ao Governo do Estado de São Paulo. Singularidades à parte, houve pessoas e situações necessárias para que o curso surgisse na USP apenas a partir da década de 1960. Nesse sentido, os papéis desempenhados pelo Prof. Antônio Delfim Netto e pelo Prof. Ruy Aguiar da Silva Leme são explorados com maior detalhamento, tendo em vista o grande impacto que suas decisões tiveram no processo de criação e estabelecimento da carreira de administração. De fato, tem-se que as instituições, com ênfase nesta pesquisa sobre a FEA-USP, são locais propícios para o estudo da mudança e que os atores sociais através de suas ações empreendidas são capazes de gerar modificação ou reprodução do status quo dentro destes estabelecimentos. As instituições constituem possibilidades para aqueles que a compõem ao mesmo tempo em que constrangem ações e são necessárias na sociedade tal qual como é apresentada na modernidade.

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

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The aim of this study was to compare the stress distribution induced by posterior functional loads on conventional complete dentures and implant-retained overdentures with different attachment systems using a two-dimentional Finite Element Analysis (FEA-2D). Three models representative of edentulous mandible were constructed on AutoCAD software; Group A (control), a model of edentulous mandible supporting a complete denture; Group B, a model of edentulous mandible supporting an overdenture over two splinted implants connected with the bar-clip system; Group C, a model of edentuluos mandible supporting an overdenture over two unsplinted impants with the O-ring system. Evaluation was conducted on Ansys software, with a vertical force of 100 N applied on the mandibular left first molar. When the stress was evaluated in supporting tissues, groups B (51.0 MPa) and C (52.6 MPa) demonstrated higher stress values than group A (10.1 MPa). Within the limits of this study, it may be conclued that the use of an attachment system increased stress values; furthermore, the use of splinted implants associated with the bar-clip attachment system favoured a lower stress distribution over the supporting tissue than the unsplinted implants with an O-ring abutment to retain the manibular overdenture.

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Objective. To determine the influence of cement thickness and ceramic/cement bonding on stresses and failure of CAD/CAM crowns, using both multi-physics finite element analysis and monotonic testing.Methods. Axially symmetric FEA models were created for stress analysis of a stylized monolithic crown having resin cement thicknesses from 50 to 500 mu m under occlusal loading. Ceramic-cement interface was modeled as bonded or not-bonded (cement-dentin as bonded). Cement polymerization shrinkage was simulated as a thermal contraction. Loads necessary to reach stresses for radial cracking from the intaglio surface were calculated by FEA. Experimentally, feldspathic CAD/CAM crowns based on the FEA model were machined having different occlusal cementation spaces, etched and cemented to dentin analogs. Non-bonding of etched ceramic was achieved using a thin layer of poly(dimethylsiloxane). Crowns were loaded to failure at 5 N/s, with radial cracks detected acoustically.Results. Failure loads depended on the bonding condition and the cement thickness for both FEA and physical testing. Average fracture loads for bonded crowns were: 673.5 N at 50 mu m cement and 300.6 N at 500 mu m. FEA stresses due to polymerization shrinkage increased with the cement thickness overwhelming the protective effect of bonding, as was also seen experimentally. At 50 mu m cement thickness, bonded crowns withstood at least twice the load before failure than non-bonded crowns.Significance. Occlusal "fit" can have structural implications for CAD/CAM crowns; pre-cementation spaces around 50-100 mu m being recommended from this study. Bonding benefits were lost at thickness approaching 450-500 mu m due to polymerization shrinkage stresses. (C) 2012 Academy of Dental Materials. Published by Elsevier Ltd. All rights reserved.

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Purpose: This study compared the biomechanical behavior of tilted long implant and vertical short implants to support fixed prosthesis in an atrophic maxilla. Materials and Methods: The maxilla model was built based on a tomographic image of the patient. Implant models were based on micro-computer tomography imaging of implants. The different configurations considered were M4S, four vertical anterior implants; M4T, two mesial vertical implants and two distal tilted (45°) implants in the anterior region of the maxilla; and M6S, four vertical anterior implants and two vertical posterior implants. Numerical simulation was carried out under bilateral 150N loads applied in the cantilever region in axial (L1) and oblique (45°) (L2) direction. Bone was analyzed using the maximum and minimum principal stress (σmax and σmin), and von Mises stress (σvM) assessments. Implants were analyzed using the σvM. Results: The higher σmax was observed at: M4T, followed by M6S/L1, M6S/L2, M4S/L2, and M4S/L1 and the higher σvM: M4T/L1, M4T/L2 and M4S/L2, M6S/L2, M4S/L1, and M6S/L1. Conclusions: The presence of distal tilted (all-on-four) and distal short implants (all-on-six) resulted in higher stresses in both situations in the maxillary bone in comparison to the presence of vertical implants (all-on-four). © 2013 Wiley Periodicals, Inc.

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

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

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"Ouvrage approuvé par le Conseil royal de l'Université de France pour servir à l'enseignement de l'histoire moderne dans les colléges royaux et dans les établissemens d'instruction publique."

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Mode of access: Internet.