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Drawing from presentations at a number of workshops, seminars, and conferences, covers selected topics in optics and tunneling, and their applications in contexts where the interaction of systems with few degrees of freedom with a thermal bath become important, such as statistical mechanics, condensed matter, and polymer, nonlinear, and energy physics. Acidic paper. Annotation copyrighted by Book News, Inc., Portland, OR
Young People and Housing brings together new research exploring the economic, social, and cultural challenges that face young people in search of permanent housing. Featuring international case studies from Asia, Europe, and Australia, Young People and Housing is a collection of groundbreaking work from leading scholars in housing policy. Younger generations across a wide range of societies face increasing difficulties in gaining access to housing. Housing occupies a pivotal position in the transition from parental dependence to adult independence. Delayed independence has significant implications for marriage and family formation, fertility, inter and intra generational tensions, social mobility and social inequalities. The social and cultural dimensions are, of course, enormously varied with strong contrasts between Asian and Western societies in terms of intergenerational norms and practices in relation to housing. Nevertheless, younger households in China (including Hong Kong), Japan, the USA, Australasia and Europe face very similar challenges in the housing sphere. Moreover, concerns about the housing future for younger generations are gaining greater policy and popular prominence in many countries.
Trajectory-based formalisms are an intuitively appealing way of describing quantum processes because they allow the use of "classical" concepts. Beginning at an introductory level suitable for students, this two-volume monograph presents (1) the fundamentals and (2) the applications of the trajectory description of basic quantum processes. This first volume is focussed on the classical and quantum background necessary to understand the fundamentals of Bohmian mechanics, which can be considered the main topic of this work. Extensions of the formalism to the fields of open quantum systems and to optics are also proposed and discussed.
The second edition of Principles of Seismology has been extensively revised and updated to present a modern approach to observation seismology and the theory behind digital seismograms. It includes: a new chapter on Earthquakes, Earth's structure and dynamics; a considerably revised chapter on instrumentation, with new material on processing of modern digital seismograms and a list of website hosting data and seismological software; and 100 end-of-chapter problems. The fundamental physical concepts on which seismic theory is based are explained in full detail with step-by-step development of the mathematical derivations, demonstrating the relationship between motions recorded in digital seismograms and the mechanics of deformable bodies. With chapter introductions and summaries, numerous examples, newly drafted illustrations and new color figures, and an updated bibliography and reference list, this intermediate-level textbook is designed to help students develop the skills to tackle real research problems.
Kinetic theory provides a microscopic description of many observable, macroscopic processes and has a wide range of important applications in physics, astronomy, chemistry, and engineering. This powerful, theoretical framework allows a quantitative treatment of many non-equilibrium phenomena such as transport processes in classical and quantum fluids. This book describes in detail the Boltzmann equation theory, obtained in both traditional and modern ways. Applications and generalizations describing non-equilibrium processes in a variety of systems are also covered, including dilute and moderately dense gases, particles in random media, hard sphere crystals, condensed Bose-Einstein gases, and granular materials. Fluctuation phenomena in non-equilibrium fluids, and related non-analyticities in the hydrodynamic equations are also discussed in some detail. A thorough examination of many topics concerning time dependent phenomena in material systems, this book describes both current knowledge as well as future directions of the field.
A distinguished mathematician traces the history of science, illustrating philosophy's ongoing role, explaining technology's erosion of the rapport between the two fields, and offering suggestions for their reunion. 1962 edition.