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This book describes a recent effort combining interdisciplinary expertise within the Collaborative Research Centre “Energy transfers in atmosphere and ocean” (TRR-181), which was funded by the German Research Foundation (DFG). Energy transfers between the three dynamical regimes – small-scale turbulence, internal gravity waves and geostrophically balanced motion – are fundamental to the energy cycle of both the atmosphere and the ocean. Nonetheless, they remain poorly understood and quantified, and have yet to be adequately represented in today’s climate models. Since interactions between the dynamical regimes ultimately link the smallest scales to the largest ones through a range ...
Atmospheric Oscillations: Sources of Subseasonal-to-Seasonal Variability and Predictability provides a thorough examination of various atmospheric oscillations of scientific and societal importance in the context of natural climate variability and anthropogenic climate change. Included are introductions to each phenomenon, overviews of the state of knowledge, in-depth analyses of relevant dynamical processes, and discussions of the impacts on weather and climate and implications for subseasonal-to-seasonal predictions and predictability.Written by an international team of experts in the fields of atmospheric and planetary sciences, each chapter of the book either focuses on a specific atmospheric oscillation or explores the interaction between multiple oscillations. - Comprehensive account of various atmospheric oscillations across different regions and subseasonal-to-seasonal time scales - Detailed examination of each atmospheric oscillation alone as well as key examples of their interactions - In-depth analysis and discussion of relevant dynamical processes and implications for weather and climate predictions
This book is a survey of the research work done by the author over the last 15 years, in collaboration with various eminent mathematicians and climate scientists on the subject of tropical convection and convectively coupled waves. In the areas of climate modelling and climate change science, tropical dynamics and tropical rainfall are among the biggest uncertainties of future projections. This not only puts at risk billions of human beings who populate the tropical continents but it is also of central importance for climate predictions on the global scale. This book aims to introduce the non-expert readers in mathematics and theoretical physics to this fascinating topic in order to attract ...
This comprehensive Dictionary brings together an extensive range of definitive terms in ecological economics. Assembling contributions from distinguished scholars, it provides an intellectual map to this evolving subject ranging from the practical to the philosophical.
Climate change is an ethical failure. Floods, fires, droughts, and extreme weather caused by climate change are already killing people and ruining lives on a massive scale. These avoidable impacts hurt the most vulnerable among us first, and worst. Why have we failed to prevent climate change? How can we mobilise to do better politically, socially, and economically? Where does the greatest responsibility for action lie? In this book, Catriona McKinnon unravels the vital contributions made by engaged political theory to urgent climate challenges left unmet by a lack of political will. These challenges, and our political inertia, cannot be tackled without addressing questions of responsibility...
It is now widely recognized that the climate system is governed by nonlinear, multi-scale processes, whereby memory effects and stochastic forcing by fast processes, such as weather and convective systems, can induce regime behavior. Motivated by present difficulties in understanding the climate system and to aid the improvement of numerical weather and climate models, this book gathers contributions from mathematics, physics and climate science to highlight the latest developments and current research questions in nonlinear and stochastic climate dynamics. Leading researchers discuss some of the most challenging and exciting areas of research in the mathematical geosciences, such as the theory of tipping points and of extreme events including spatial extremes, climate networks, data assimilation and dynamical systems. This book provides graduate students and researchers with a broad overview of the physical climate system and introduces powerful data analysis and modeling methods for climate scientists and applied mathematicians.
This book provides an in-depth account of the protests that shook France in 1968 and which served as a catalyst to a radical reconsideration of artistic practice that has shaped both art and museum exhibitions up to the present. Rebecca DeRoo examines how issues of historical and personal memory, the separation of public and private domains, and the ordinary objects of everyday life emerged as central concerns for museums and for artists, as both struggled to respond to the protests. She argues that the responses of the museums were only partially faithful to the aims of the activist movements. Museums, in fact, often misunderstood and misrepresented the work of artists that was exhibited as a means of addressing these concerns. Analyzing how museums and critics did and did not address the aims of the protests, DeRoo highlights the issues relevant to the politics of the public display of art that have been central to artistic representation, in France as well as in North America.
This book constitutes the refereed proceedings of the 15th International GI/ITG Conference on "Measurement, Modelling and Evaluation of Computing Systems" and "Dependability and Fault Tolerance", held in Essen, Germany, in March 2010. The 19 revised full papers presented together with 5 tool papers and 2 invited lectures were carefully reviewed and selected from 42 initial submissions. The papers cover all aspects of performance and dependability evaluation of systems including networks, computer architectures, distributed systems, software, fault-tolerant and secure systems.
The biologic effects of radiation on normal tissues and tumors represent a complex area for investigation. These effects are of far-reaching consequence to the diagnostic radiologist and the radiation oncologist having a significant impact not only in concepts relative to radiation protection but also in concepts relative to tumor biology and its response to radiation injury. The volume edited by SCHERER, STREFFER, and TROTT represents an extension of basic radiation biology data into the effects of radiation in producing pathology in organs and tissues. The data presented by the multiple authors involved in this text cover essentially all tissues in the body with specific definition of radi...