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Writing, Medium, Machine: Modern Technographies is a collection of thirteen essays by leading scholars which explores the mutual determination of forms of writing and forms of technology in modern literature. The essays unfold from a variety of historical and theoretical perspectives the proposition that literature is not less but more mechanical than other forms of writing: a transfigurative ideal machine. The collection breaks new ground archaeologically, unearthing representations in literature and film of a whole range of decisive technologies from the stereopticon through census-and slot-machines to the stock ticker, and from the Telex to the manipulation of genetic code and the screens which increasingly mediate our access to the world and to each other. It also contributes significantly to critical and cultural theory by investigating key concepts which articulate the relation between writing and technology: number, measure, encoding, encryption, the archive, the interface. Technography is not just a modern matter, a feature of texts that happen to arise in a world full of machinery and pay attention to that machinery in various ways. But the mediation of other machines has beyond doubt assisted literature to imagine and start to become the ideal machine it is always aspiring to be. Contributors: Ruth Abbott, John Attridge, Kasia Boddy, Mark Byron, Beci Carver, Steven Connor, Esther Leslie, Robbie Moore, Julian Murphet, James Purdon, Sean Pryor, Paul Sheehan, Kristen Treen.
Literature & literary studies --- literature --- encoding --- technology --- number --- the archive --- the interface --- technology in modern literature --- encryption --- measure --- modern literature --- Stereopticon
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This book describes recent advances in geomechanics for energy and the sustainable environment. Four research articles, related to high-level radioactive nuclear waste disposal stability, geological effect and wellbore stability considerations for methane gas hydrate production, and artificial soil freezing, are presented in this book. In addition, a comprehensive state-of-the-art review verifies the strong correlation between global climate change and the occurrence of geotechnical engineering hazards. The review also summarizes recent attempts to reduce CO2 emissions from civil and geotechnical engineering practices. Readers will gain ideas as to how we can deal with conventional and renewable energy sources and environment-related geotechnical engineering issues.
HLW disposal --- strength criterion --- dilation angle --- mechanical property --- shear shrinkage --- clay content --- constitutive model --- hydrate mining --- temperature field --- greenhouse gas --- disaster --- plastic strain --- phase change --- extreme precipitation --- geotechnical engineering hazard --- slippage at the interface --- plastic shear strain --- soil stabilization --- shear/normal coupling stiffness --- temperature --- triaxial shear --- numerical simulation --- depressurization method --- CWFS --- climate change --- carbon dioxide --- wellbore stability analysis --- direct shear experiment --- damage process --- global warming --- methane hydrate --- normal stress --- ground improvement --- yield condition --- granite --- lattice Boltzmann method --- artificial frozen soil wall
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