842 resultados para Crespí de Borja, Luis , (C.O.), 1607-1663-Oracions funebres


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Fil: Raggio, Sandra María. Universidad Nacional de La Plata. Facultad de Humanidades y Ciencias de la Educación; Argentina.

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Fil: Cobeñas, Pilar. Universidad Nacional de La Plata. Facultad de Humanidades y Ciencias de la Educación; Argentina.

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La cadena de valor de los productos oleaginosos de la Provincia de San Luis cuenta en la actualidad con tres ventajas principales. La primera de ellas es que la provincia se encuentra estratégicamente ubicada en un corredor bioceánico de la República Agentina; la segunda es la implantación de la Zona de Actividades Logísticas (ZAL) en Villa Mercedes; y la tercera es el desarrollo empresarial motivado por las inversiones de empresas multinacionales en el sector. Para el intercambio comercial de países del Atlántico, como la Argentina, con los de Asia y Costa Oeste de los Estados Unidos es necesaria la integración entre la Argentina y Chile fortaleciendo lazos comerciales, culturales y sociales. La implantación de la Zona de Actividades Logísticas adquiere relevancia teniendo en cuenta que el principal efecto de este emprendimiento es la reducción sustancial de los costos operativos. Por otro lado, la fusión de empresas multinacionales con empresas del medio en industrias agroalimentarias provocará un aumento de la capacidad de procesamiento de granos (en particular maíz) en un 50, con lo que se estaría en condiciones de absorber más de la mitad de la cosecha de la provincia. Para los agricultores será un gran desafío aumentar la superficie cultivada para comercializar con un comprador local y ampliar el margen de rentabilidad al eliminarse los elevados costos por flete. El objetivo de este trabajo es analizar e interrelacionar los factores, los actores y el impacto de estas tres ventajas en el final de la cadena de valor de productos oleaginosos en la Provincia de San Luis

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In this work we study the optimization of laser-fired contact (LFC) processing parameters, namely laser power and number of pulses, based on the electrical resistance measurement of an aluminum single LFC point. LFC process has been made through four passivation layers that are typically used in c-Si and mc-Si solar cell fabrication: thermally grown silicon oxide (SiO2), deposited phosphorus-doped amorphous silicon carbide (a-SiCx/H(n)), aluminum oxide (Al2O3) and silicon nitride (SiNx/H) films. Values for the LFC resistance normalized by the laser spot area in the range of 0.65–3 mΩ cm2 have been obtained

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Aplicación del CTE DB SE-C para pilotes de edificación, criterios y comparación con otros procedimientos de cálculo

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A review of the experimental data for natC(n,c) and 12C(n,c) was made to identify the origin of the natC capture cross sections included in evaluated data libraries and to clarify differences observed in neutronic calculations for graphite moderated reactors using different libraries. The performance of the JEFF-3.1.2 and ENDF/B-VII.1 libraries was verified by comparing results of criticality calculations with experimental results obtained for the BR1 reactor. This reactor is an air-cooled reactor with graphite as moderator and is located at the Belgian Nuclear Research Centre SCK-CEN in Mol (Belgium). The results of this study confirm conclusions drawn from neutronic calculations of the High Temperature Engineering Test Reactor (HTTR) in Japan. Furthermore, both BR1 and HTTR calculations support the capture cross section of 12C at thermal energy which is recommended by Firestone and Révay. Additional criticality calculations were carried out in order to illustrate that the natC thermal capture cross section is important for systems with a large amount of graphite. The present study shows that only the evaluation carried out for JENDL-4.0 reflects the current status of the experimental data.

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Solid State Lasers (SSL) have been used in microelectronic and photovoltaic (PV) industry for decades but, currently, laser technology appears as a key enabling technology to improve efficiency and to reduce production costs in high efficiency solar cells fabrication. Moreover, the fact that the interaction between the laser radiation and the device is normally localized and restricted to a controlled volume makes SSL a tool of choice for the implementation of low temperature concepts in PV industry. Specifically, SSL are ideally suited to improve the electrical performance of the contacts further improving the efficiency of these devices. Advanced concepts based on standard laser firing or advanced laser doping techniques are optimal solutions for the back contact of a significant number of structures of growing interest in the c-Si PV industry, and a number of solutions has been proposed as well for emitter formation, to reduce the metallization optical losses or even to remove completely the contacts from the front part of the cell. In this work we present our more recent results of SSL applications for contact optimization in c-Si solar cell technology, including applications on low temperature processes demanding devices, like heterojunction solar cells.