994 resultados para 187-1162B


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Os resultados apresentados referem-se à pesquisa sobre a transição Ensino Médio e Superior para as noções de Geometria Analítica. O referencial teórico da pesquisa é a Teoria Antropológica do Didático de Bosch e Chevallard (1999), a noção de quadro de Douady (1984), a noção de ponto de vista de Rogalski (1995, 2001) e a abordagem teórica em termos de níveis de conhecimento de Robert (1997). As análises das relações institucionais foram efetuadas por meio de documentos oficiais e livros didáticos e as relações pessoais por meio de macro avaliações. Os resultados encontrados mostram uma crescente preocupação institucional com a articulação dos ostensivos e não ostensivos associados às noções de Geometria Analítica e uma tendência em deixar o tratamento do espaço IR3 para Ensino Superior.

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Este estudio tiene como objetivo examinar cómo los futuros profesores de secundaria (EPS) reconocen evidencias de la comprensión del proceso de generalización en estudiantes de secundaria. Los EPS realizaron dos tareas: (1) describir las respuestas dadas por estudiantes de secundaria a dos problemas de generalización lineal y agrupar las que reflejaban características comunes de la comprensión del proceso de generalización; (2) participar en un debate virtual sobre las características de la comprensión del proceso de generalización. Los resultados indican que la participación en el debate virtual permitió a los EPS centrar su mirada en las ideas que subyacen en el proceso de generalización (generalización cercana y lejana e intento de expresar la regla general, pasando de una estrategia aditiva a una funcional) más que en el procedimiento realizado.

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Esta investigación se realizó con alumnos de Nivel Medio Superior (NMS) que habían cursado la asignatura de Matemáticas I y que tenían dificultades con la comprensión del concepto de número racional. El propósito fue poner en escena situaciones didácticas, para explorar sus efectos en la comprensión de este concepto. Para tener información precisa de cuál es el estado que guardaba este conocimiento en los alumnos, se hizo un diagnóstico, por lo que se diseñaron y validaron las situaciones que se utilizarían tanto en el diagnóstico como en la puesta en escena. En su diseño se consideraron los contenidos de aritmética de NMS, diferentes sistemas de representación y el modelo utilizado por Sierpinska sobre los actos de comprensión de conceptos matemáticos. Al comparar los resultados que se obtuvieron en el diagnóstico con los de la puesta en escena de las situaciones didácticas, se encontró que: el permitir que los alumnos conocieran diferentes formas de representar a los números racionales, el significado de cada una de ellas, así como convertir o traducir unas representaciones en otras a través de las situaciones didácticas, propició la construcción de este concepto y mejoraran su comprensión.

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We have performed for the first time a molecular dynamics simulation of the adsorption of gas-phase Ag particles on a graphite substrate to provide an insight into the results of a comprehensive STM-based experiment on this system. Both pair-wise and many-body interatomic potentials have been employed, and a Morse-type Ag–C potential was specifically constructed to describe the interactions at the interface. Our simulation has successfully reproduced a significant portion of the experimental findings. We have also observed the intercalation of silver in graphite.

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Mathematical models of straight-grate pellet induration processes have been developed and carefully validated by a number of workers over the past two decades. However, the subsequent exploitation of these models in process optimization is less clear, but obviously requires a sound understanding of how the key factors control the operation. In this article, we show how a thermokinetic model of pellet induration, validated against operating data from one of the Iron Ore Company of Canada (IOCC) lines in Canada, can be exploited in process optimization from the perspective of fuel efficiency, production rate, and product quality. Most existing processes are restricted in the options available for process optimization. Here, we review the role of each of the drying (D), preheating (PH), firing (F), after-firing (AF), and cooling (C) phases of the induration process. We then use the induration process model to evaluate whether the first drying zone is best to use on the up- or down-draft gas-flow stream, and we optimize the on-gas temperature profile in the hood of the PH, F, and AF zones, to reduce the burner fuel by at least 10 pct over the long term. Finally, we consider how efficient and flexible the process could be if some of the structural constraints were removed (i.e., addressed at the design stage). The analysis suggests it should be possible to reduce the burner fuel lead by 35 pct, easily increase production by 5+ pct, and improve pellet quality.

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An explosion occurred in a busy university laboratory during a few minutes when it happened to be unoccupied. The explosion was puzzling since the laboratory was dedicated to geochemical work, such as digesting rock samples with stable, inorganic reagents. The only unstable substance knowingly stored or handled for this purpose, perchloric acid, was not in use on the day of the incident. The investigation was unable to reach an exact conclusion but did prove that a substantial organic contaminant, not on the laboratory inventory, must have been present

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Introduction to abstracts from papers given at BMS History of Mathematics Splinter Group, held 17 April 2007, in Swansea.

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This account provides an overview of the study day, entitled 'Topics in the History of Financial Mathematics: Early commerce to chaos in modern stock markets,' held by the British Society for the History of Mathematics jointly with Gresham College, at Gresham College, London on 25th April 2008. The series of talks explored the development of mathematics and mathematical techniques in a commercial and financial context.

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Measurement of heteronuclear spin-lattice relaxation times is hampered by both low natural abundance and low detection sensitivity. Combined with typically long relaxation times, this results in extended acquisition times which often renders the experiment impractical. Recently a variant of dynamic nuclear polarisation has been demonstrated in which enhanced nuclear spin polarisation, generated in the cryo-solid state, is transferred to the liquid state for detection. Combining this approach with small flip angle pulse trains, similar to the FLASH-T(1) imaging sequence, allows the rapid determination of spin-lattice relaxation times. In this paper we explore this method and its application to the measurement of T(1) for both carbon-13 and nitrogen-15 at natural abundance. The effects of RF inhomogeneity and the influence of proton decoupling in the context of this experiment are also investigated.

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Habitat selection processes in highly migratory animals such as sharks and whales are important to understand because they influence patterns of distribution, availability and therefore catch rates. However, spatial strategies remain poorly understood over seasonal scales in most species, including, most notably, the plankton-feeding basking shark Cetorhinus maximus. It was proposed nearly 50 yr ago that this globally distributed species migrates from coastal summer-feeding areas of the northeast Atlantic to hibernate during winter in deep water on the bottom of continental-shelf slopes. This view has perpetuated in the literature even though the 'hibernation theory' has not been tested directly. We have now tracked basking sharks for the first time over seasonal scales (1.7 to 6.5 mo) using 'pop-up' satellite archival transmitters. We show that they do not hibernate during winter but instead undertake extensive horizontal (up to 3400 km) and vertical (> 750 m depth) movements to utilise productive continental-shelf and shelf-edge habitats during summer, autumn and winter. They travel long distances (390 to 460 km) to locate temporally discrete productivity 'hotspots' at shelf-break fronts, but at no time were prolonged movements into open-ocean regions away from shelf waters observed. Basking sharks have a very broad vertical diving range and can dive beyond the known range of planktivorous whales. Our study suggests this species can exploit shelf and slope-associated zooplankton communities in mesopelagic (200 to 1000 m) as well as epipelagic habitat (0 to 200 m).