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Where the Wind Blows Us unites critical practice with a community-based approach to archaeology. Author Natasha Lyons describes an inclusive archaeology that rests on a flexible but rigorous approach to research design and demonstrates a responsible, ethical practice. She traces the rise and application of community archaeologies, develops a wide-ranging set of methods for community practice, and maps out a “localized critical theory” that is suited to the needs of local and descendant communities as they pursue self-defined heritage goals. Localized critical theory aims to decenter the focus on global processes of capitalism in favor of the local processes of community dynamics. Where the Wind Blows Us emphasizes the role of individuals and the relationships they share with communities of the past and present. Lyons offers an extended case study of her work with the Inuvialuit community of the Canadian Western Arctic. She documents the development of this longstanding research relationship and presents both the theoretical and practical products of the work to date. Integrating knowledge drawn from archaeology, ethnography, oral history, and community interviews, Lyons utilizes a multivocal approach that actively listens to Inuvialuit speak about their rich and textured history. The overall significance of this volume lies in outlining a method of practicing archaeology that embraces local ways of knowing with a critically constructed and evolving methodology that is responsive to community needs. It will serve as a handbook to mine for elements of critical practice, a model of community-based archaeology, and a useful set of concepts and examples for classroom study.
Within the foreseeable future, refrigerators will be using 30% less electricity in some countries. Homes in the United States will be emitting 4% less carbon dioxide. Dozens of other common energy-using products will have become cleaner and more energy efficient. And all because of the growing use of energy labels and standards in industrialised countries. Energy labels and standards are only one way in which governments can diminish energy use, improve performance and slash greenhouse gas emissions. But they have proved remarkably effective, and their use is steadily spreading. This report by the International Energy Agency chronicles a number of success stories and offers suggestions on how they can be replicated. This study, the first in a planned series of Energy Efficiency Policy Profiles, analyses existing programmes, provides guidance for programmes now under consideration and points the way to possible international collaboration. It highlights the key elements in successful programmes.
In order to avoid the potentially catastrophic impacts of global warming, the current 3% CO2 global emission growth rate must be transformed to a 1 to 3% declining rate, as soon as possible. This will require a rapid and radical transformation of the world’s energy production and end use systems. The current generation of energy technologies are not capable of achieving the level of mitigation required. Next generations of renewable, low carbon generation and end use technologies will be needed. This book quantifies the mitigation challenge. It then considers the status of key technologies needed to protect the planet from serious climate change impact. Current and emerging technologies are characterized for their mitigation potential, status of development and potential environmental impacts. Power generation, mobile sources, industrial and building sectors are evaluated in detail. The importance and unique challenges for rapidly developing countries, such as China and India are discussed. Current global research and development efforts for key technologies are discussed. It is concluded that it will be necessary to substantially upgrade and accelerate the current worldwide RDD&D effort on both emerging energy technologies and those enabling technologies needed to improve mitigation effectiveness and economics. It will also be necessary to carefully evaluate the potential environmental characteristics of next generation technologies to avoid unacceptable health and ecological impacts. Finally, given the monumental technological challenge associated with transforming the world’s energy system, geoengineering options are evaluated, since if successfully deployed, they have the potential to allow more time for the necessary energy system transformation. ‘This book on Climate Change not only gives a clear picture of the problem but suggests many of the pitfalls in solving it and recommends strongly, a research program to fill the gaps in our knowledge. It is a most useful reference book for all aspects of the problem.’ William D. Ruckelshaus, Madrona Venture Group/Evergreen Venture