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Harbors. --- Environmental engineering --- Safety
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Groundwater. --- Impervious materials --- Environmental engineering
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Environmental engineering. --- Noise control --- Traffic noise
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Environmental engineering --- Environmental protection --- Dictionaries --- Dictionaries
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Buildings --- Office buildings --- Environmental engineering --- Standards --- Automation --- Standards
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Organizations and modern technology give us much of what we value, but they have also given us Chernobyl, Three Mile Island, and Bhopal. The question at the heart of this paradox is "What is acceptable risk?" Based on his examination of the 1981 contamination of an office building in Binghamton, New York, Lee Clarke's compelling study argues that organizational processes are the key to understanding how some risks rather than others are defined as acceptable. He finds a pattern of decision-making based on relationships among organizations rather than the authority of individuals or single agencies.
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62 --- 504 --- 504 Environment. Environmental science --- Environment. Environmental science --- Ingenieurswetenschappen. Technologie in het algemeen --- Environmental engineering -- Technological innovations. --- Electronic books. -- local. --- Environmental protection. --- Environmental engineering --- Environmental protection --- Environmental quality management --- Protection of environment --- Environmental sciences --- Applied ecology --- Environmental policy --- Environmental quality --- Environmental control --- Environmental effects --- Environmental stresses --- Engineering --- Environmental health --- Pollution --- Sustainable engineering --- Technological innovations --- Electronic books. --- Technological innovations.
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Buildings --- Environmental engineering --- Environmental testing --- Materials --- Environmental engineering. --- Environmental testing. --- Environmental Engineering. --- Engineering. --- Environment. --- Materials Testing. --- Environmental control --- Environmental effects --- Environmental stresses --- Engineering --- Environmental health --- Environmental protection --- Pollution --- Sustainable engineering --- Environment testing --- Testing --- Environmental engineering (Buildings) --- Architecture --- Sanitary engineering --- Testing, Hemocompatible Materials --- Biocompatibility Testing --- Biocompatible Materials Testing --- Hemocompatibility Testing --- Testing, Biocompatible Materials --- Hemocompatibility Testings --- Hemocompatible Materials Testing --- Materials Testing, Biocompatible --- Materials Testing, Hemocompatible --- Testing, Biocompatibility --- Testing, Hemocompatibility --- Testing, Materials --- Testings, Biocompatibility --- Flexural Strength --- Biocompatible Materials --- Environmental Impact --- Environmental Impacts --- Impact, Environmental --- Impacts, Environmental --- Environments --- Environmental Health --- Engineerings --- Testing. --- Human factors --- Environmental protection. Environmental technology --- 628.5 <05> --- 502.7 <05> --- 504 --- 504 Environment. Environmental science --- Environment. Environmental science --- 502.7 <05> Protection of animate nature. Wildlife conservation and protection--Tijdschriften --- Protection of animate nature. Wildlife conservation and protection--Tijdschriften --- 628.5 <05> Measures against industrial and other nuisances--Tijdschriften --- Measures against industrial and other nuisances--Tijdschriften --- Earth Sciences --- Environmental Sciences --- Environmental Geology --- Civil Engineering --- Environmental Engineering --- General and Others --- Environmental management
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Environmental impact analysis --- Environmental protection --- Environmental quality management --- Protection of environment --- Environmental sciences --- Applied ecology --- Environmental engineering --- Environmental policy --- Environmental quality --- Congresses --- Decision making&delete& --- Environmental law --- Decision making
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Distributed in the East European countries, China, Northern Korea, Cuba, Vietnam and Mongolia by Academia, Prague, CzechoslovakiaThis book is based on the efficient subsoil model introduced by the authors in 1977 and applied in the last ten years in the design of foundations. From the designer's point of view, the model considerably reduces the extent of the calculations connected with the numerical analysis of soil-structure interaction. The algorithms presented are geared for use on mini- and personal computers and can be used in any numerical method. A special chapter is devoted to
Soil-structure interaction --- Mathematical models --- Soil-structure interaction -- Mathematical models. --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Structure-soil interaction --- Soil dynamics --- Structural dynamics --- Soil-structure interaction - Mathematical models
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