997 resultados para Layout : Circuitos integrados


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"First three editions comprising 2400 copies were published between Dec. 1934 and June 1939."

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"Complementary to ... ʻTechnical aerodynamics' by the same author."--Pref.

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Cover title.

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Changes in plantings indicated in pen. Unsigned. 88 x 52 cm. Scale 1/8" = 1' [from photographic copy by Lance Burgharrdt]

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Bibliography: leaf 46.

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Las transformaciones del espacio agrario en los últimos años, definidas a partir de la aparición de la consolidación de grupos económicos con poder de interpelación con el Estado a través de sus organismos específicos, de nuevos actores sociales y de nuevos usos del suelo han hecho surgir un nuevo territorio social, económico y ambiental. La necesidad por parte del Estado de conocer, regular y orientar este proceso, a partir de políticas públicas, requiere instrumentos que puedan medir con precisión estos cambios. La utilización de índices integrados que reúnan las diferentes dimensiones de esta nueva configuración es una tarea imperiosa. Nuestro grupo de investigación, a partir de la medición de la calidad de suelo considera necesario la revisión y ampliación de una metodológica limitada, que separa los indicadores sociales y económicos de los edafológicos en una concepción que desarticula el fenómeno ambiental, desagregando y con ello, ocultando su naturaleza. La propuesta consiste en el desarrollo de índices integrados que haga justicia y muestre los cambios ambientales generados en el espacio pampeano como un resultado de un triángulo, cuyos lados son profundamente solidarios

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Good quality concept lattice drawings are required to effectively communicate logical structure in Formal Concept Analysis. Data analysis frameworks such as the Toscana System use manually arranged concept lattices to avoid the problem of automatically producing high quality lattices. This limits Toscana systems to a finite number of concept lattices that have been prepared a priori. To extend the use of formal concept analysis, automated techniques are required that can produce high quality concept lattice drawings on demand. This paper proposes and evaluates an adaption of layer diagrams to improve automated lattice drawing. © Springer-Verlag Berlin Heidelberg 2006.

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Disk drives are the bottleneck in the processing of large amounts of data used in almost all common applications. File systems attempt to reduce this by storing data sequentially on the disk drives, thereby reducing the access latencies. Although this strategy is useful when data is retrieved sequentially, the access patterns in real world workloads is not necessarily sequential and this mismatch results in storage I/O performance degradation. This thesis demonstrates that one way to improve the storage performance is to reorganize data on disk drives in the same way in which it is mostly accessed. We identify two classes of accesses: static, where access patterns do not change over the lifetime of the data and dynamic, where access patterns frequently change over short durations of time, and propose, implement and evaluate layout strategies for each of these. Our strategies are implemented in a way that they can be seamlessly integrated or removed from the system as desired. We evaluate our layout strategies for static policies using tree-structured XML data where accesses to the storage device are mostly of two kinds—parent-to-child or child-to-sibling. Our results show that for a specific class of deep-focused queries, the existing file system layout policy performs better by 5–54X. For the non-deep-focused queries, our native layout mechanism shows an improvement of 3–127X. To improve performance of the dynamic access patterns, we implement a self-optimizing storage system that performs rearranges popular block accesses on a dedicated partition based on the observed workload characteristics. Our evaluation shows an improvement of over 80% in the disk busy times over a range of workloads. These results show that applying the knowledge of data access patterns for allocation decisions can substantially improve the I/O performance.

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