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Showing 1 - 5 of 5 matches in All Departments
The generation of offshore energy is a rapidly growing sector, competing for space in an already busy seascape. This book brings together the ecological, economic, and social implications of the spatial conflict this growth entails. Covering all energy-generation types (wind, wave, tidal, oil, and gas), it explores the direct and indirect impacts the growth of offshore energy generation has on both the marine environment and the existing uses of marine space. Chapters explore main issues associated with offshore energy, such as the displacement of existing activities and the negative impacts it can have on marine species and ecosystems. Chapters also discuss how the growth of offshore energy generation presents new opportunities for collaboration and co-location with other sectors, for example, the co-location of wild-capture fisheries and wind farms. The book integrates these issues and opportunities, and demonstrates the importance of holistic marine spatial planning for optimising the location of offshore energy-generation sites. It highlights the importance of stakeholder engagement in these planning processes and the role of integrated governance, with illustrative case studies from the United States, United Kingdom, northern Europe, and the Mediterranean. It also discusses trade-off analysis and decision theory and provides a range of tools and best practices to inform future planning processes.
What is an effective scientist? One who is successful by quantifiable standards, with many publications, citations, and students supervised? Yes, but there is much more. Truly effective scientists need to have influence beyond academia, usefully applying and marketing their research to non-scientists. This book therefore takes an all-encompassing approach to improving the scientist's career. It begins by focusing on writing and publishing - a scientist's most important weapon in the academic arsenal. Part two covers the numerical and financial aspects of being an effective scientist, and Part three focuses on running a lab effectively. The book concludes by discussing the more entertaining and philosophical aspects of being an effective scientist. Little of this material is taught in university, but developing these skills is vital to maximize the chance of being effective. Written by a scientist for scientists, this practical and entertaining book is a must-read for every early career-scientist, regardless of specialty.
The generation of offshore energy is a rapidly growing sector, competing for space in an already busy seascape. This book brings together the ecological, economic, and social implications of the spatial conflict this growth entails. Covering all energy-generation types (wind, wave, tidal, oil, and gas), it explores the direct and indirect impacts the growth of offshore energy generation has on both the marine environment and the existing uses of marine space. Chapters explore main issues associated with offshore energy, such as the displacement of existing activities and the negative impacts it can have on marine species and ecosystems. Chapters also discuss how the growth of offshore energy generation presents new opportunities for collaboration and co-location with other sectors, for example, the co-location of wild-capture fisheries and wind farms. The book integrates these issues and opportunities, and demonstrates the importance of holistic marine spatial planning for optimising the location of offshore energy-generation sites. It highlights the importance of stakeholder engagement in these planning processes and the role of integrated governance, with illustrative case studies from the United States, United Kingdom, northern Europe, and the Mediterranean. It also discusses trade-off analysis and decision theory and provides a range of tools and best practices to inform future planning processes.
Though separated by thousands of miles, the United States and Australia have much in common. Geographically both countries are expansive-the United States is the fourth largest in land mass and Australia the sixth-and both possess a vast amount of natural biodiversity. At the same time, both nations are on a crash course toward environmental destruction. Highly developed super consumers with enormous energy footprints and high rates of greenhouse-gas emissions, they are two of the biggest drivers of climate change per capita. As renowned ecologists Corey J. A. Bradshaw and Paul R. Ehrlich make clear in Killing the Koala and Poisoning the Prairie, both of these countries must confront the urgent question of how to stem this devastation and turn back from the brink. In this book, Bradshaw and Ehrlich provide a spirited exploration of the ways in which the United States and Australia can learn from their shared problems and combine their most successful solutions in order to find and develop new resources, lower energy consumption and waste, and grapple with the dynamic effects of climate change. Peppering the book with humor, irreverence, and extensive scientific knowledge, the authors examine how residents of both countries have irrevocably altered their natural environments, detailing the most pressing ecological issues of our time, including the continuing resource depletion caused by overpopulation. They then turn their discussion to the politics behind the failures of environmental policies in both nations and offer a blueprint for what must be dramatically changed to prevent worsening the environmental crisis. Although focused on two nations, Killing the Koala and Poisoning the Prairie clearly has global implications-the problems facing the United States and Australia are not theirs alone, and the solutions to come will benefit by being crafted in coalition. This book provides a vital opportunity to learn from both countries' leading environmental thinkers and to heed their call for a way forward together.
What is an effective scientist? One who is successful by quantifiable standards, with many publications, citations, and students supervised? Yes, but there is much more. Truly effective scientists need to have influence beyond academia, usefully applying and marketing their research to non-scientists. This book therefore takes an all-encompassing approach to improving the scientist's career. It begins by focusing on writing and publishing - a scientist's most important weapon in the academic arsenal. Part two covers the numerical and financial aspects of being an effective scientist, and Part three focuses on running a lab effectively. The book concludes by discussing the more entertaining and philosophical aspects of being an effective scientist. Little of this material is taught in university, but developing these skills is vital to maximize the chance of being effective. Written by a scientist for scientists, this practical and entertaining book is a must-read for every early career-scientist, regardless of specialty.
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