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Computer. Automation --- Pure sciences. Natural sciences (general) --- Chemistry --- Chemical apparatus --- Chimie --- Data processing --- Appareils et matériel --- Informatique --- -Physical sciences --- Apparatus, Chemical --- Chemical instruments --- Physical instruments --- Scientific apparatus and instruments --- Apparatus --- Instruments --- -Data processing --- Appareils et matériel --- Chemistry - Data processing
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Modern chemical experiments rely heavily on electronic instrumentation; some techniques in common use owe their existence to electronics. This text provides students with an understanding of some of the basic techniques that are harnessed for the benefit of chemists.
Chemical apparatus. --- Electronic instruments. --- 542.2 --- 542.2 Laboratory apparatus and techniques in general --- Laboratory apparatus and techniques in general --- Instruments, Electronic --- Engineering instruments --- Industrial electronics --- Electronic apparatus and appliances --- Apparatus, Chemical --- Chemical instruments --- Chemistry --- Physical instruments --- Scientific apparatus and instruments --- Apparatus --- Instruments --- Chemical analysis --- Chemical apparatus --- Electronic instruments
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"Sulphuric Utopias presents the comprehensive history of fumigation in early-twentieth-century global health. It tells the story of a technology that transformed global practices of maritime quarantine through the combination of chemical and engineering innovation. Fumigation combined chemical and industrial engineering so as to apply gases like sulphur dioxide and sulphuric acid to the task of eliminating pathogens, insects, and rats while leaving goods and the structure of the vessel itself unharmed. Its purpose was to shorten detention times of ships and cargo in quarantine stations, to minimize the risk of importing infectious diseases, such as yellow fever and plague, and to establish universally applicable standards of hygiene in maritime trade. Sulphuric Utopias explores this overlooked but historically crucial practice at the intersection of epidemiology, hygiene, applied chemistry and engineering. Focused on the invention, experimentation, and transformation of competing technologies, it posits maritime fumigation at the pivot of the emergence of visions and practices of modern sanitary globalization. The book unpacks this story around a machine, developed and patented in the disease-ridden swamps of 1890s New Orleans: the Clayton apparatus. A simple furnace, attached to a ventilator, the Clayton could exchange the air of enclosed compartments with SO2. Initially emerging as a response to the threat of yellow fever in the American South, the apparatus quickly assumed a global role in the context of the third plague pandemic (1894-1959). By 1905, the apparatus would be installed in ports across the globe, pioneering the emerging paradigm of complete maritime deratization and disinfection. As the book shows, however, far from claiming a monopoly on maritime fumigation, the global distribution of the Clayton unfolded within the context of a persistent competition with other innovative technologies of fumigation. The book explores the complex international landscape of fumigation experiments, trials, applications and conferences at the turn of the twentieth century. It shows how, for the first time, an international community of researchers, epidemiologists and sanitarians deliberated a scientifically sound mode of fumigation, that would kill pathogens as much as insects and rats. Sulphuric Utopias is focused on the invention, contestation, transformation, and eventual overcoming of the Clayton apparatus. The book thus draws the history of a process that was, for the first time, based on a combination of scientific principles and industrial design, leading both to more efficient epidemic control in the context of pandemic crises and to the standardization of maritime sanitary rules and conditions. At the same time, the global project for maritime fumigation fueled hygienic utopian visions of disease-free trade, liberated from the burden of quarantine and infection alike. In this sense, the book will locate the Clayton in the context of early economic globalization and transnational scientific collaboration to show how maritime fumigation worked as a powerful switch between bacteriological science, industrial prophylaxis, and the spectacle of technological triumph over epidemic threats"--
Ships --- Fumigation --- History --- Vessels (Ships) --- Boats and boating --- Shipbuilding --- quarantine --- shipping --- disinfection --- plague --- yellow fever --- disease --- cholera --- hygiene --- syphilis --- Chemical apparatus. --- Disinfection --- SCIENCE, TECHNOLOGY & SOCIETY/History of Science --- SCIENCE, TECHNOLOGY & SOCIETY/History of Technology --- SCIENCE, TECHNOLOGY & SOCIETY/General --- Apparatus, Chemical --- Chemical instruments --- Chemistry --- Physical instruments --- Scientific apparatus and instruments --- Apparatus --- Instruments
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Analytical chemistry --- Chemistry, Analytic --- Chimie analytique --- Chemistry, Analytical --- Chemical apparatus --- Chimie --- methods --- Appareils et matériel --- Chemistry Techniques, Analytical --- 543.08 --- #WSCH:AAS1 --- Apparatus, Chemical --- Chemical instruments --- Chemistry --- Physical instruments --- Scientific apparatus and instruments --- Analysis, Chemical --- Chemical analysis --- Metallurgical analysis --- Mineralogy, Determinative --- Analytical measurement --- methods. --- Apparatus --- Instruments --- Instrumentele analyse --- Instrumentele analyse. --- 543.08 Analytical measurement --- Appareils et matériel --- Analytical chemistry. --- Analytic chemistry --- Chemistry Techniques, Analytical - methods --- Instrumentation
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Chemical apparatus --- Chemistry --- Research --- Science --- Natural Science Disciplines --- Disciplines and Occupations --- Physical Sciences & Mathematics --- Chemistry - General --- History. --- Experiments --- instrumentation. --- Laboratory Research --- Research Activities --- Research and Development --- Research Priorities --- Activities, Research --- Activity, Research --- Development and Research --- Priorities, Research --- Priority, Research --- Research Activity --- Research Priority --- Research, Laboratory --- Natural Sciences --- Physical Sciences --- Discipline, Natural Science --- Disciplines, Natural Science --- Natural Science --- Natural Science Discipline --- Physical Science --- Science, Natural --- Science, Physical --- Sciences, Natural --- Sciences, Physical --- Sciences --- Apparatus, Chemical --- Chemical instruments --- Apparatus --- Instruments --- Ethics, Research --- Physical sciences --- Physical instruments --- Scientific apparatus and instruments
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Gradient Elution in Column Liquid Chromatography
Chemical laboratory practice --- Fysicochemical separation methods --- Liquid chromatography --- Chemical apparatus --- Chromatographie en phase liquide. --- Chimie --- Appareils et matériel. --- Analytical biochemistry --- Enzymology --- Pharmacognosy --- 543.544 --- High performance liquid chromatography --- Liquid-liquid partition chromatography --- Chromatographic analysis --- High performance chromatography --- High pressure liquid chromatography --- High sensitivity liquid chromatography --- High speed liquid chromatography --- HPLC (Chromatography) --- High pressure (Science) --- 543.544 Chromatographic analysis. Chromatography --- Chromatographic analysis. Chromatography --- Chromatography, High Pressure Liquid --- Apparatus, Chemical --- Chemical instruments --- Chemistry --- Physical instruments --- Scientific apparatus and instruments --- instrumentation --- Apparatus --- Instruments --- Chromatographie en phase liquide --- Chromatography, High Pressure Liquid. --- Chromatographie en phase liquide à hautes performances --- Microchemistry --- Microchimie --- congresses. --- Congresses. --- Chromatography, Liquid --- instrumentation. --- methods. --- Appareils et matériel --- Gas chromatography --- Chromatographie en phase gazeuse --- Chemical apparatus. --- Liquid chromatography. --- Gas-liquid chromatography --- GLC (Chromatographic analysis) --- Vapor-phase chromatography --- 543.54 --- 543.54 Capillary analysis. Adsorption analysis. Stalagmometry. Chromatography. Electrophoresis --- Capillary analysis. Adsorption analysis. Stalagmometry. Chromatography. Electrophoresis --- Chromatography, High Performance Liquid --- Chromatography, High Speed Liquid --- Chromatography, Liquid, High Pressure --- HPLC --- High Performance Liquid Chromatography --- High-Performance Liquid Chromatography --- Chromatography, High-Performance Liquid --- High-Performance Liquid Chromatographies --- Liquid Chromatography, High-Performance --- Chromatography --- Measuring instruments --- Spectrometric and optical chemical analysis --- fysicochemie --- High performance liquid chromatography. --- Miniaturization --- Biosensing Techniques --- Nanotechnology --- Lab-On-A-Chip Devices --- Analysis, Microchemical --- Microanalysis (Chemistry) --- Microchemical analysis --- Analytical chemistry --- Chromatographic detectors --- Liquid Chromatography --- Chromatography detectors --- Chemical detectors --- Equipment and supplies --- Chromatographic analysis. --- Analysis, Chromatographic --- Phase partition --- quid chromatography. --- Chromatographic detectors. --- Gas chromatography. --- Microchemistry.
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