6 resultados para Year 2000 date conversion (Computer systems)

em WestminsterResearch - UK


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This interdisciplinary collection of essays focuses on critical and theoretical responses to the apocalypse of the late twentieth- and early twenty-first-century cultural production. Examining the ways in which apocalyptic discourses have had an impact on how we read the world’s globalised space, the traumatic burden of history, and the mutual relationship between language and eschatological belief, fifteen original essays by a group of internationally established and emerging critics reflect on the apocalypse, its past tradition, pervasive present and future legacy. The collection seeks to offer a new reading of the apocalypse, understood as a complex – and, frequently, paradoxical – paradigm of (contemporary) Western culture. The majority of published collections on the subject have been published prior to the year 2000 and, in their majority of cases, locate the apocalypse in the future and envision it as something imminent. This collection offers a post-millennial perspective that perceives "the end" as immanent and, simultaneously, rooted in the past tradition.

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Recently honeycomb meshes have been considered as alternative candidates for interconnection networks in parallel and distributed computer systems. This paper presents a solution to one of the open problems about honeycomb meshes—the so-called three disjoint path problem. The problem requires minimizing the length of the longest of any three disjoint paths between 3-degree nodes. This solution provides information on the re-routing of traffic along the network in the presence of faults.

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Energy-efficient computing remains a critical challenge across the wide range of future data-processing engines — from ultra-low-power embedded systems to servers, mainframes, and supercomputers. In addition, the advent of cloud and mobile computing as well as the explosion of IoT technologies have created new research challenges in the already complex, multidimensional space of modern and future computer systems. These new research challenges led to the establishment of the IEEE Rebooting Computing Initiative, which specifically addresses novel low-power solutions and technologies as one of the main areas of concern.With this in mind, we thought it timely to survey the state of the art of energy-efficient computing.

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The objective of this study was to develop, test and benchmark a framework and a predictive risk model for hospital emergency readmission within 12 months. We performed the development using routinely collected Hospital Episode Statistics data covering inpatient hospital admissions in England. Three different timeframes were used for training, testing and benchmarking: 1999 to 2004, 2000 to 2005 and 2004 to 2009 financial years. Each timeframe includes 20% of all inpatients admitted within the trigger year. The comparisons were made using positive predictive value, sensitivity and specificity for different risk cut-offs, risk bands and top risk segments, together with the receiver operating characteristic curve. The constructed Bayes Point Machine using this feature selection framework produces a risk probability for each admitted patient, and it was validated for different timeframes, sub-populations and cut-off points. At risk cut-off of 50%, the positive predictive value was 69.3% to 73.7%, the specificity was 88.0% to 88.9% and sensitivity was 44.5% to 46.3% across different timeframes. Also, the area under the receiver operating characteristic curve was 73.0% to 74.3%. The developed framework and model performed considerably better than existing modelling approaches with high precision and moderate sensitivity.