1000 resultados para Política industrial
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Mauro Sá Rego Costa é professor associado da Universidade do Estado do Rio de Janeiro. Doutorado em Educação (UFRJ, 1994) e mestre em comunicação (UFRJ, 1983). As suas áreas de interesse de investigação e pesquisa têm sido a teoria da rádio, radioarte, rádio experimental, rádio educativa e rádios comunitárias. Com uma abordagem teórica herdeira do legado de Rudolf Arnheim, centrada no estudo da rádio como meio expressivo, Mauro Sá Rego Costa convoca para a reflexão a possibilidade de analisar o carácter educativo de qualquer área experimental da radioarte, que, na sua concepção, se apresenta como o oposto das narrativas sonoras produzidas pelas rádios comerciais.
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia de Manutenção
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Mecãnica
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Trabalho de projecto para obtenção do grau de Mestre em Engenharia Civil na Área de Especialização em Estruturas
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Cultura Moderna e Contemporânea, n.2
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Cultura Moderna e Contemporânea, n.5, vol. 1
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Cultura Moderna e Contemporânea, n.5, vol.2
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Cultura Moderna e Contemporânea, n.6
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Dissertação de mestrado Universidade do Minho
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do grau de Mestre em Gestão e Políticas Ambientais
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Crítica ao espectáculo de teatro Júlio César, de William Shakespeare, encenado por Luís Miguel Cintra, Teatro da Cornucópia (2007).
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The industrial activity is inevitably associated with a certain degradation of the environmental quality, because is not possible to guarantee that a manufacturing process can be totally innocuous. The eco-efficiency concept is globally accepted as a philosophy of entreprise management, that encourages the companies to become more competitive, innovative and environmentally responsible by promoting the link between its companies objectives for excellence and its objectives of environmental excellence issues. This link imposes the creation of an organizational methodology where the performance of the company is concordant with the sustainable development. The main propose of this project is to apply the concept of eco-efficiency to the particular case of the metallurgical and metal workshop industries through the development of the particular indicators needed and to produce a manual of procedures for implementation of the accurate solution.
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The aim of this work was to assess the influence of meteorological conditions on the dispersion of particulate matter from an industrial zone into urban and suburban areas. The particulate matter concentration was related to the most important meteorological variables such as wind direction, velocity and frequency. A coal-fired power plant was considered to be the main emission source with two stacks of 225 m height. A middle point between the two stacks was taken as the centre of two concentric circles with 6 and 20 km radius delimiting the sampling area. About 40 sampling collectors were placed within this area. Meteorological data was obtained from a portable meteorological station placed at approximately 1.7 km to SE from the stacks. Additional data was obtained from the electrical company that runs the coal power plant. These data covers the years from 2006 to the present. A detailed statistical analysis was performed to identify the most frequent meteorological conditions concerning mainly wind speed and direction. This analysis revealed that the most frequent wind blows from Northwest and North and the strongest winds blow from Northwest. Particulate matter deposition was obtained in two sampling campaigns carried out in summer and in spring. For the first campaign the monthly average flux deposition was 1.90 g/m2 and for the second campaign this value was 0.79 g/m2. Wind dispersion occurred predominantly from North to South, away from the nearest residential area, located at about 6 km to Northwest from the stacks. Nevertheless, the higher deposition fluxes occurred in the NW/N and NE/E quadrants. This study was conducted considering only the contribution of particulate matter from coal combustion, however, others sources may be present as well, such as road traffic. Additional chemical analyses and microanalysis are needed to identify the source linkage to flux deposition levels.
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Dissertação apresentada à Escola Superior de Comunicação Social como parte dos requisitos para obtenção de grau de mestre em Jornalismo.