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Showing 1 - 13 of 13 matches in All Departments
Multi-scale Quantum Models for Biocatalysis explores various molecular modelling techniques and their applications in providing an understanding of the detailed mechanisms at play during biocatalysis in enzyme and ribozyme systems. These areas are reviewed by an international team of experts in theoretical, computational chemistry, and biophysics. This book presents detailed reviews concerning the development of various techniques, including ab initio molecular dynamics, density functional theory, combined QM/MM methods, solvation models, force field methods, and free-energy estimation techniques, as well as successful applications of multi-scale methods in the biocatalysis systems including several protein enzymes and ribozymes. This book is an excellent source of information for research professionals involved in computational chemistry and physics, material science, nanotechnology, rational drug design and molecular biology and for students exposed to these research areas."
This book features different approaches to non-biochemical pathways for solar fuel production. This one-of-a-kind book addresses photovoltaics, photocatalytic water splitting for clean hydrogen production and CO2 conversion to hydrocarbon fuel through in-depth comprehensive contributions from a select blend of established and experienced authors from across the world. The commercial application of solar based systems, with particular emphasis on non-PV based devices have been discussed. This book intends to serve as a primary resource for a multidisciplinary audience including chemists, engineers and scientists providing a one-stop location for all aspects related to solar fuel production. The material is divided into three sections: Solar assisted water splitting to produce hydrogen; Solar assisted CO2 utilization to produce green fuels and Solar assisted electricity generation. The content strikes a balance between theory, material synthesis and application with the central theme being solar fuels.
Why do some labor movements successfully defend the welfare state even under the pressures of neo-liberal market reform? Why do some unions (and their allied parties and civic associations) succeed in building more universal and comprehensive social policy regimes, while others fail to do so? In this innovative work, Cheol-Sung Lee explores these conundrums through a comparative historical analysis of four countries: Argentina, Brazil, South Korea and Taiwan. He introduces the notion of 'embedded cohesiveness' in order to develop an explanatory model in which labor-civic solidarity and union-political party alliance jointly account for outcomes of welfare state retrenchment as well as welfare state expansion. Lee's exploration of the critical roles of civil society and social movement processes in shaping democratic governance and public policies make this ideal for academic researchers and graduate students in comparative politics, political sociology and network analysis.
For the Koreans, no sport has surpassed football in terms of its popularity and national importance, from the Japanese colonization era onwards. However, its importance has developed over time as a result of unusual and agonizing historical events, including the tragic split between North and South Korea. This volume attempts to assess football's changing political and cultural place in Korea over the course of the twentieth century, from the Japanese colonial period via the Korean War to the end of the Cold War. It analyses the development and diffusion of football in North and South Korea from the following angles: nationalism and regionalism, internationalism and globalism, patronage, and the Korean style of play. It particularly concentrates on the social meanings of the North Korean "miracle" in the 1966 World Cup and of South Korea's success in the 2002 tournament. The author shows that football in Korea has not only reflected changes in Korean society but helped to shape those changes.
The current trend of building more streamlined structures has made stability analysis a subject of extreme importance. It is mostly a safety issue because Stability loss could result in an unimaginable catastrophe. Written by two authors with a combined 80 years of professional and academic experience, the objective of Stability of Structures: Principles and Applications is to provide engineers and architects with a firm grasp of the fundamentals and principles that are essential to performing effective stability analysts. Concise and readable, this guide presents stability analysis within the context of elementary nonlinear flexural analysis, providing a strong foundation for incorporating theory into everyday practice. The first chapter introduces the buckling of columns. It begins with the linear elastic theory and proceeds to include the effects of large deformations and inelastic behavior. In Chapter 2 various approximate methods are illustrated along with the fundamentals of energy methods. The chapter concludes by introducing several special topics, some advanced, that are useful in understanding the physical resistance mechanisms and consistent and rigorous mathematical analysis. Chapters 3 and 4 cover buckling of beam-columns. Chapter 5 presents torsion in structures in some detail, which is one of the least well understood subjects in the entire spectrum of structural mechanics. Strictly speaking, torsion itself does not belong to a topic in structural stability, but needs to be covered to some extent for a better understanding of buckling accompanied with torsional behavior. Chapters 6 and 7 consider stability of framed structures in conjunction with torsional behavior of structures. Chapters 8 to 10 consider buckling of plate elements, cylindrical shells, and general shells. Although the book is primarily devoted to analysis, rudimentary design aspects are discussed. The accompanying website will include additional formulas and
problems based on the author s on software which is currently being
used in corporations. The website will also include equations and
examples based on there personal experiences. In addition, the
website will include a solutions manual for those who wish to use
the book as a text book for a two-semester course. Engineers,
Architects, designers, and researcher will find this print/website
combination a valuable guide both in terms of its applications of
verification of design of structures.
"Multi-scale Quantum Models for Biocatalysis" explores various molecular modelling techniques and their applications in providing an understanding of the detailed mechanisms at play during biocatalysis in enzyme and ribozyme systems. These areas are reviewed by an international team of experts in theoretical, computational chemistry, and biophysics. This book presents detailed reviews concerning the development of various techniques, including ab initio molecular dynamics, density functional theory, combined QM/MM methods, solvation models, force field methods, and free-energy estimation techniques, as well as successful applications of multi-scale methods in the biocatalysis systems including several protein enzymes and ribozymes. This book is an excellent source of information for research professionals involved in computational chemistry and physics, material science, nanotechnology, rational drug design and molecular biology and for students exposed to these research areas.
This book constitutes the refereed proceedings of the 7th International IFIP-TC6 Networking Conference, NETWORKING 2008, held in Singapore, in May 2008. The 82 revised full papers were carefully reviewed and selected from numerous submissions for inclusion in the book. The papers are organized in topical sections on ad hoc and sensor networks: design and optimization, MAC protocol, overlay networking, and routing; next generation internet: authentication, modeling and performance evaluation, multicast, network measurement and testbed, optical networks, peer-to-peer and overlay networking, peer-to-peer services, QoS, routing, security, traffic engineering, and transport protocols; wireless networks: MAC performance, mesh networks, and mixed networks.
Why do some labor movements successfully defend the welfare state even under the pressures of neo-liberal market reform? Why do some unions (and their allied parties and civic associations) succeed in building more universal and comprehensive social policy regimes, while others fail to do so? In this innovative work, Cheol-Sung Lee explores these conundrums through a comparative historical analysis of four countries: Argentina, Brazil, South Korea and Taiwan. He introduces the notion of 'embedded cohesiveness' in order to develop an explanatory model in which labor-civic solidarity and union-political party alliance jointly account for outcomes of welfare state retrenchment as well as welfare state expansion. Lee's exploration of the critical roles of civil society and social movement processes in shaping democratic governance and public policies make this ideal for academic researchers and graduate students in comparative politics, political sociology and network analysis.
This book provides an unparalleled insider's look at the factors leading up to the 1997-98 crisis in South Korea and how the crisis unfolded over the next two years. Written by former finance minister Kyu-Sung Lee, this book traces the evolving situation across the key sectors and the series of policy and institutional measures the government deployed throughout the crisis. This book is a must-read for policymakers, scholars, students, and any reader interested in understanding the facts and circumstances surrounding the 1997-98 crisis, the policies undertaken at the time, and what the experience implies for preventing future crises.
Die lehramtliche Position der Katholischen Kirche gegen ber den nichtchristlichen Religionen im 20. Jahrhundert.
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