984 resultados para Ciberespaço, Media, Ciberutopia, Poder


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Eterio Pajares, Raquel Merino y José Miguel Santamaría (eds.)

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Compara o texto da Proposta de Emenda Constitucional nº 565, de 2006, aprovada pela Câmara dos Deputados em 27/8/13, com as sugestões apresentadas informalmente pelo Poder Executivo, durante a discussão da matéria, em reunião das ministras das Relações Institucionais e do Planejamento com os líderes da base aliada na Casa.

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Visa a atender à Solicitação de Trabalho nº 17/2015-CONOF, por meio da qual o Deputado Pauderney Avelino solicita a esta Consultoria que elabore nota técnica acerca do veto ao art. 118 da Lei 13.080, de 2 de janeiro 2015 (LDO 2015), que determinava ao Poder Executivo a criação de “Cadastro de Obras Públicas”

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Monografia (especialização) – Curso de Parlamento e Direito, Câmara dos Deputados, Centro de Formação, Treinamento e Aperfeiçoamento (Cefor), 2015.

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Analisa os aspectos físicos e psicossociais dos oito departamentos que mais adoeceram na Câmara dos Deputados (CD) no período de novembro de 2012 a novembro de 2013, tendo por base a Síndrome do Edifício Doente (SED). Justifica-se devido à preocupação da CD em oferecer a seus trabalhadores uma gestão com ênfase em qualidade de vida no trabalho, o que inclui um ambiente saudável.

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Phosphorus removal by wetlands and basins in Lake Tahoe may be improved through designing these systems to filter storm water through media having higher phosphorus removal capabilities than local parent material. Substrates rich in iron, aluminum and calcium oftentimes have enhanced phosphorus removal. These substrates can be naturally occurring, byproducts of industrial or water treatment processes, or engineered. Phosphorus removal fundamentally occurs through chemical adsorption and/or precipitation and much of the phosphorus can be irreversibly bound. In addition to these standard media, other engineered substrates are available to enhance P removal. One such substrate is locally available in Reno and uses lanthanum coated diatomaceous earth for arsenate removal. This material, which has a high positive surface charge, can also irreversibly remove phosphorus. Physical factors also affect P removal. Specifically, specific surface area and particle shape affect filtration capacity, contact area between water and the surface area, and likelihood of clogging and blinding. A number of substrates have been shown to effectively remove P in case studies. Based upon these studies, promising substrates include WTRs, blast furnace slag, steel furnace slag, OPC, calcite, marble Utelite and other LWAs, zeolite and shale. However, other nonperformance factors such as environmental considerations, application logistics, costs, and potential for cementification narrow the list of possible media for application at Tahoe. Industrial byproducts such as slags risk possible leaching of heavy metals and this potential cannot be easily predicted. Fly ash and other fine particle substrates would be more difficult to apply because they would need to be blended, making them less desirable and more costly to apply than larger diameter media. High transportation costs rule out non-local products. Finally, amorphous calcium products will eventually cementify reducing their effectiveness in filtration systems. Based upon these considerations, bauxite, LWAs and expanded shales/clays, iron-rich sands, activated alumina, marble and dolomite, and natural and lanthanum activated diatomaceous earth are the products most likely to be tested for application at Tahoe. These materials are typically iron, calcium or aluminum based; many have a high specific surface area; and all have low transportation costs. (PDF contains 21 pages)

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In this paper, a new computational scheme for solving flows in porous media was proposed. The scheme was based on an improved CE/SE method (the space-time Conservation Element and Solution Element method). We described porous flows by adopting DFB (Brinkman-Forchheimer extended Darcy) equation. The comparison between our computational results and Ghia's confirmed the high accuracy, resolution, and efficiency of our CE/SE scheme. The proposed first-order CE/SE scheme is a new reliable way for numerical simulations of flows in porous media. After investigation of effects of Darcy number on porous flow, it shows that Darcy number has dominant influence on porous flow for the Reynolds number and porosity considered.