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Originally published in 1990, this volume addresses issues surrounding global ecological changes and sustainability of present patterns of urbanisation and industrialisation. The book discusses these problems and other issues such as how rural environments in many developed and developing countries have been transformed by a technological revolution. Looking at a diverse range of topics from climate change to slurry pollution and the destruction of genetic resources to the risks of biotechnology, this volume addresses these issues which concern the dynamics and social relations of technological change in rural areas.
The possibility of nuclear war, the failure of the Green Revolution, the capabilities of genetic engineering, and other actual and potential effects of technological innovations have created demands for a more humane application of technology. Addressing this issue, Technology and Social Change in Rural Areas is a clear assessment of the current state of affairs. The book begins with a discussion of the changing paradigms of technology adoption and diffusion, the dynamics of public resistance, and the question of social responsibility in an age of synthetic biology. In subsequent sections, the contributors assess the revolutionary effect of technology on agriculture worldwide and conclude that radically new public policies are essential; expose the transformations of rural life and communities that result from the localized effects of technology and its use as a weapon in world-system politics; and critically examine the appropriate technology movement. The essays are presented to honor Professor Eugene A. Wilkening for his many pioneering and lasting contributions to the study of technology and rural social change. The book includes an intellectual biography of Professor Wilkening written by his long-time colleague and friend, William H. Sewell.
United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Technology, Environment, and Aviation
Author : United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Technology, Environment, and Aviation Publisher : Page : 164 pages File Size : 15,52 MB Release : 1994 Category : Business & Economics ISBN :
Originally published in 1988, this book considers some of the major social, economic and environmental questions raised by the role of new technology in development. Throughout the discussions of issues like the sustainability of the development effected by new technology is supported by detailed case studies from countries such as India, Australia, New Zealand, China, Bangladesh and South Africa.
Rural development is a subject that appears to be plagued by a central paradox: development is necessary to alleviate rural poverty, but while new technology has raised agricultural output, it has also increased the suffering of millions of poor landless families in many Third World countries. The rural poor, especially women, have been marginalized; urban migrants have become desperate unemployed squatters, not well-paid industrial workers; and environmental degradation has proved severe. The authors argue that many development programmes go awry because the authorities neglect essential development issues. Development must be defined in terms of the provision of basic human needs which include life expectancy, infant mortality, and literacy indicators which reflect the quality of life of the bulk of the population, not just a narrow elite. What they suggest is that the issues neglected by the conventional approach must be addressed if true development is to occur.
Much is written in the popular literature about the current pace of technological change. But do we have enough scientific knowledge about the sources and management of innovation to properly inform policymaking in technology dependent domains such as energy and the environment? While it is agreed that technological change does not 'fall from heaven like autumn leaves,' the theory, data, and models are deficient. The specific mechanisms that govern the rate and direction of inventive activity, the drivers and scope for incremental improvements that occur during technology diffusion, and the spillover effects that cross-fertilize technological innovations remain poorly understood. In a work that will interest serious readers of history, policy, and economics, the editors and their distinguished contributors offer a unique, single volume overview of the theoretical and empirical work on technological change. Beginning with a survey of existing research, they provide analysis and case studies in contexts such as medicine, agriculture, and power generation, paying particular attention to what technological change means for efficiency, productivity, and reduced environmental impacts. The book includes a historical analysis of technological change, an examination of the overall direction of technological change, and general theories about the sources of change. The contributors empirically test hypotheses of induced innovation and theories of institutional innovation. They propose ways to model induced technological change and evaluate its impact, and they consider issues such as uncertainty in technology returns, technology crossover effects, and clustering. A copublication o Resources for the Future (RFF) and the International Institute for Applied Systems Analysis (IIASA).
This report aims to identify the different scenarios where the process of digital transformation is taking place in agriculture. This identifies those aspects of basic conditions, such as those of infrastructure and networks, affordability, education and institutional support. In addition, enablers are identified, which are the factors that allow adopting and integrating changes in the production and decision-making processes. Finally identify through cases, existing literature and reports how substantive changes are taking place in the adoption of digital technologies in agriculture.
Much is written in the popular literature about the current pace of technological change. But do we have enough scientific knowledge about the sources and management of innovation to properly inform policymaking in technology dependent domains such as energy and the environment? While it is agreed that technological change does not 'fall from heaven like autumn leaves,' the theory, data, and models are deficient. The specific mechanisms that govern the rate and direction of inventive activity, the drivers and scope for incremental improvements that occur during technology diffusion, and the spillover effects that cross-fertilize technological innovations remain poorly understood. In a work that will interest serious readers of history, policy, and economics, the editors and their distinguished contributors offer a unique, single volume overview of the theoretical and empirical work on technological change. Beginning with a survey of existing research, they provide analysis and case studies in contexts such as medicine, agriculture, and power generation, paying particular attention to what technological change means for efficiency, productivity, and reduced environmental impacts. The book includes a historical analysis of technological change, an examination of the overall direction of technological change, and general theories about the sources of change. The contributors empirically test hypotheses of induced innovation and theories of institutional innovation. They propose ways to model induced technological change and evaluate its impact, and they consider issues such as uncertainty in technology returns, technology crossover effects, and clustering. A copublication o Resources for the Future (RFF) and the International Institute for Applied Systems Analysis (IIASA).
This book is focused on the challenges to implement sustainability in diverse contexts such as agribusiness, natural resource systems and new technologies. The experiences made by the researchers of the School of Agricultural, Forestry, Food and Environmental Science (SAFE) of the University of Basilicata offer a wide and multidisciplinary approach to the identification and testing of different solutions tailored to the economic, social and environmental characteristics of the region and the surrounding areas. Basilicata’s productive system is mainly based on activities related to the agricultural sector and exploitation of natural resources but it has seen, in recent years, an industrial development driven by the discovery of oil fields. SAFE research took up the challenge posed by market competition to create value through the sustainable use of renewable and non-renewable resources of the territory. Moreover, due to its unique geographical position in the middle of the Mediterranean basin, Basilicata is an excellent “open sky” laboratory for testing sustainable solutions adaptable to other Mediterranean areas. This collection of multidisciplinary case studies and research experiences from SAFE researchers and their scientific partners is a stimulating contribution to the debate on the development of sustainable techniques, methods and applications for the Mediterranean regions.