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On decadal time scales, climate change may result not only from man-made causes, but also from natural processes. This book brings together theoretical conceptions of the physical mechanisms of climate change with observational evidence of these changes. The following key topics are included: Observed Climatic Variability, Predictability of the Atmosphere and Oceans from Days to Decades, and Mechanisms for Decadal to Centennial Climate Variability. Further, there are specialised contributions on the role of the oceanic circulation in climate change. The authors are renowned for their pedagogical skills, and the book is primarily designed for beginners in the field, who have a background in physical science. In addition, it is an invaluable source of information for scientists seeking an overview on climate dynamics.
'The deepest trenches, highest mountains, biggest earthquakes, most explosive volcanoes are all associated with these places. We’re discovering things all the time.' For ten years, the RV Southern Surveyor represented the vanguard of Australian marine science. On over 100 voyages, this former North Sea fishing trawler with her distinctive blue and white livery carried scientists and technicians across the Southern, Pacific and Indian oceans as well as the waters off northern Australia. She conducted physical, chemical, geological and biological investigations and deployed state-of-the-art instruments to map vast unexplored tracts of the seafloor. Over the course of a year, prior to her final voyage, Michael Veitch interviewed the Southern Surveyor's former captains and crew, support staff and scientists. The result is a warm, engaging and sometimes dramatic account of their adventures — finding sunken WWII shipwrecks and swirling coastal vortexes, 'undiscovering' islands and watching pre-dawn fireworks from undersea volcanoes. But these are also stories of discovery which tell the legacy of scientific innovation and impact that Southern Surveyor left in her wake.
This open access book serves as a reference for the key elements and their significance of Klaus Hasselmann's work on climate science and on ocean wave research, all based on a rigorous and deeply physical thinking. It summarizes the original articles (mostly from the 1970 and 1980s; some of which are hard to find nowadays) and brings them in a present-day context. From 1975 until 2000, he was (founding) Director of the Max Planck Institute of Meteorology, which he made to one of the world-leading academic institutions. He first made the issue of anthropogenic climate change accessible to analysis and prediction and later transformed climate science into a significant factor in forming public policy. The book is written by co-workers and colleagues of Klaus Hasselmann, who—many under his immediate supervision—joined him in this effort. With this background, they present the key achievements and assess the significance of these for the present state of knowledge and scientific practice.
Ocean Dynamics’ is a concise introduction to the fundamentals of fluid mechanics, non-equilibrium thermodynamics and the common approximations for geophysical fluid dynamics, presenting a comprehensive approach to large-scale ocean circulation theory. The book is written on the physical and mathematical level of graduate students in theoretical courses of physical oceanography, meteorology and environmental physics. An extensive bibliography and index, extensive side notes and recommendations for further reading, and a comparison with the specific atmospheric physics where applicable, makes this volume also a useful reading for researchers. Each of the four parts of the book – fundamenta...
Feng Shui is not all about tradition. The integration and harmony between the natural and built environments concerning modern architecture has long been discussed in Feng Shui, or more academically, Kan Yu. Based on Scientific Feng Shui for the Built Environment: Fundamentals and Case Studies published in 2011, this enhanced new edition has further taken into account the enhancements and new inputs in theories and applications. Emphasis is placed on two themes, sustainability and science. New case studies regarding sustainable design as viewed from a Feng Shui perspective, and integrated applications of different architectural models and their associations with Feng Shui concepts are added ...
The ocean plays a central role in determining the climate of the earth. The oceanic circulation largely controls the temporal evolution of cli mate changes resulting from human activities such as the increase of greenhouse gases in the atmosphere, and also affects the magnitude and regional distribution of those changes. On interannual and longer time scales the ocean is, through its interaction with the atmosphere, a source of important natural climate variations which we are only now beginning to recognise but whose cause has yet to be properly determined. Chem ical and biological processes in the ocean are linked to climate change, particularly through interaction with the global carbon c...
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Wherever the cutting edge of science goes, Michael Crichton is there. From dinosaur cloning to global warming, nanotechnology to time travel, animal behavior to human genetics, Crichton always takes us to the cutting edge of science and then pushes the envelope. The Science of Michael Crichton examines the amazing inventions of Crichton's books and lifts up the hood, revealing the science underneath. In intelligent and well-thought essays, scholars and experts decide what Crichton gets right and what he gets wrong. They examine which Crichton imaginings are feasible and which are just plain impossible. Scenarios examined include whether dinosaurs can be cloned, if nanotechnological particles can evolve intelligence, and if we can go back in time.
One of the most crucial but still very poorly understood topics of oceanographic science is the role of ocean processes in contributing to the dynamics of climate and global change. This book presents a series of high level lectures on the major categories of ocean/atmosphere processes. Three of these major issues are the focus of the lectures: (1) air--sea interaction processes; (2) water mass formation, dispersion and mixing; (3) general circulation, with specific emphasis on the thermohaline component. Global examples in the world ocean are provided and discussed in the lectures. In parallel, the Mediterranean Sea is a laboratory basin in providing analogues of the above global processes relevant to climate dynamics. They include the Mediterranean thermohaline circulation with its own `conveyor belt'; intermediate and deep water mass formation and transformations, dispersion and mixing. No other book in the field provides a review of fundamental lectures on these processes, coupled with global examples and their Mediterranean analogues.