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  • Safari, an O'Reilly Media Company.  (3)
  • Därr-Expeditionsservice
  • Sciences, AI
  • [Erscheinungsort nicht ermittelbar] : CRC Press  (3)
  • [Erscheinungsort nicht ermittelbar] : Packt Publishing
  • Science  (2)
  • Biological models  (1)
  • 1
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : CRC Press | Boston, MA : Safari
    Language: English
    Pages: 1 online resource (439 pages)
    Edition: 1st edition
    Keywords: Mathematics ; Science ; Electronic books ; local
    Abstract: Soft errors are a multifaceted issue at the crossroads of applied physics and engineering sciences. Soft errors are by nature multiscale and multiphysics problems that combine not only nuclear and semiconductor physics, material sciences, circuit design, and chip architecture and operation, but also cosmic-ray physics, natural radioactivity issues, particle detection, and related instrumentation. Soft Errors: From Particles to Circuits addresses the problem of soft errors in digital integrated circuits subjected to the terrestrial natural radiation environment-one of the most important primary limits for modern digital electronic reliability. Covering the fundamentals of soft errors as well as engineering considerations and technological aspects, this robust text: Discusses the basics of the natural radiation environment, particle interactions with matter, and soft-error mechanisms Details instrumentation developments in the fields of environment characterization, particle detection, and real-time and accelerated tests Describes the latest computational developments, modeling, and simulation strategies for the soft error-rate estimation in digital circuits Explores trends for future technological nodes and emerging devices Soft Errors: From Particles to Circuits presents the state of the art of this complex subject, providing comprehensive knowledge of the complete chain of the physics of soft errors. The book makes an ideal text for introductory graduate-level courses, offers academic researchers a specialized overview, and serves as a practical guide for semiconductor industry engineers or application engineers.
    Note: Online resource; Title from title page (viewed February 25, 2015) , Mode of access: World Wide Web.
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  • 2
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : CRC Press | Boston, MA : Safari
    ISBN: 9781498728478 , 1498728472 , 1420084119 , 9781420084115 , 9781315222615 , 1315222612 , 9781420084108 , 9781420084108
    Language: English
    Pages: 1 online resource (367 pages)
    Edition: 1st edition
    Parallel Title: Erscheint auch als
    Keywords: Systems biology ; Biological systems Mathematical models ; Molecular biology Mathematical models ; Cytology Mathematical models ; Human genetics Variation ; Biological models ; Systems Biology ; Genetic Variation ; Models, Biological ; Electronic books ; local ; Biologie systémique ; Systèmes biologiques ; Modèles mathématiques ; Biologie moléculaire ; Modèles mathématiques ; Cytologie ; Modèles mathématiques ; Variabilité génétique ; Modèles biologiques ; SCIENCE ; Life Sciences ; Biochemistry ; Human genetics ; Variation ; Biological models ; Molecular biology ; Mathematical models ; Cytology ; Mathematical models ; Biological systems ; Mathematical models ; Systems biology
    Abstract: For decades biology has focused on decoding cellular processes one gene at a time, but many of the most pressing biological questions, as well as diseases such as cancer and heart disease, are related to complex systems involving the interaction of hundreds, or even thousands, of gene products and other factors. How do we begin to understand this complexity? Fundamentals of Systems Biology: From Synthetic Circuits to Whole-cell Models introduces students to methods they can use to tackle complex systems head-on, carefully walking them through studies that comprise the foundation and frontier of systems biology. The first section of the book focuses on bringing students quickly up to speed with a variety of modeling methods in the context of a synthetic biological circuit. This innovative approach builds intuition about the strengths and weaknesses of each method and becomes critical in the book's second half, where much more complicated network models are addressed-including transcriptional, signaling, metabolic, and even integrated multi-network models. The approach makes the work much more accessible to novices (undergraduates, medical students, and biologists new to mathematical modeling) while still having much to offer experienced modelers--whether their interests are microbes, organs, whole organisms, diseases, synthetic biology, or just about any field that investigates living systems.
    Note: Online resource; Title from title page (viewed February 4, 2015) , Mode of access: World Wide Web.
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  • 3
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : CRC Press | Boston, MA : Safari
    Language: English
    Pages: 1 online resource (598 pages)
    Edition: 1st edition
    Keywords: Mathematics ; Science ; Electronic books ; local
    Abstract: In the 20 years since the publication of the author's multi-contributor volume on defoaming, a vast amount of new work has been published and many new insights have been revealed. A cohesive, single-authored book, The Science of Defoaming: Theory, Experiment and Applications provides comprehensive coverage of the topic. It describes the mode of action of antifoams, presenting the relevant theory and the supporting experimental evidence. Beginning with an introductory chapter that discusses the intrinsic properties of foam, the book then describes experimental methods for measuring foam properties important for studying antifoam action and techniques used in establishing the mode of action of antifoams. Since most commercially effective antifoams are oil based, a chapter is devoted to the entry and spreading behavior of oils and the role of thin film forces in determining that behavior. The book reviews the mode of action of antifoams, including theories of antifoam mechanisms and the role of bridging foam films by particles and oil drops. It also addresses issues related to the effect of antifoam concentration on foam formation by air entrainment and the process of deactivation of mixed oil-particle antifoams during dispersal and foam generation. For applications where chemical antifoam use is unacceptable, the text examines mechanical means of defoaming, such as the use of rotary devices and ultrasound. The final chapters consider the application of defoaming in radically different contexts including waterborne latex paints and varnishes, machine washing of textiles, gas-oil separation in crude oil production, and cardiopulmonary bypass surgery. Focusing on the basic science of defoaming, this book presents a balanced view, which also addresses the challenges that may arise for these specific defoaming applications.
    Note: Online resource; Title from title page (viewed July 9, 2013) , Mode of access: World Wide Web.
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