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The final installment of the most important modern reference work for Middle English studies
The complexity of the interplay and relationships over various borders in medieval Europe is here fully teased out. The processes by which ideas, objects, texts and political thought and experience moved across boundaries in the Middle Ages form the focus of this book, which also seeks to reassess the nature of the boundaries themselves; it thus appropriately reflects a major theme of Dr Malcolm Vale's work, which the essays collected here honour. They suggest ways of breaking down established historiographical paradigms of Europe as a set of distinct polities, achieving a more nuanced picture in which people and objects were constantly moving, and challenging previous conceptions of units a...
At a time when medieval studies is increasingly concerned with historicizing and theorizing its own origins and history, the development of the study of Middle English has been relatively neglected. The Invention of Middle English collects for the first time the principal sources through which this history can be traced. The documents presented here highlight the uncertain and haphazard way in which ideas about Middle English language and literature were shaped by antiquarians in the eighteenth and nineteenth centuries. It is a valuable sourcebook for medieval studies, for study of the reception of the Middle Ages, and, more generally, for the history of the rise of English. The anthology is...
Boron Hydride Chemistry covers the significant contributions of boron hydride research in the subjects of bonding, structure, and stereochemistry. This book contains 12 chapters that illustrate the merging of certain areas of boron hydride chemistry with other disciplines, such as organic, organometallic, and transition metal chemistry. After providing an overview of the general geometric, stereochemical, and dynamic stereochemical features of boron hydrides, this book goes on exploring the bonding theory and theoretical research on boron hydrides, with an emphasis on boron hydrides that have open polyhedral structures. These topics are followed by discussions on gas phase and solution reactions of borane and substituted boranes. A chapter focuses on the chemistry of cations containing boron atoms bonded to hydrogen. The remaining chapters examine the syntheses, structures, bonding, spectral properties, and chemistry of specific boron hydrides, including borazines, closo-boron hydrides, carboranes, icosahedral carboranes, and close- and nido-heteroboranes. Inorganic chemists and researchers, teachers, and undergraduate inorganic chemistry students will find this book invaluable.
The chapters of this book are based upon lectures presented at the NATO Advanced Study Institute on Membrane Processes in Separation and Purification (March 21 - April 2, 1993, Curia, Portugal), organized as a successor and update to a similar Institute that took place 10 years ago (p.M.Bungay, H.K. Lonsdale, M.N. de Pinho (Eds.): Synthetic Membranes: Science, Engineering and Applications, NATO ASI Series, Reidel, Dordrecht, 1986). The decade between the two NATO Institutes witnesses the transition from individually researched membrane processes to an applied and established membrane separation technology, as is reflected by the contents of the corresponding proceeding volumes. By and large,...
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This book on organic Rankine cycle technology presents nine chapters on research activities covering the wide range of current issues on the organic Rankine cycle. The first section deals with working fluid selection and component design. The second section is related to dynamic modeling, starting from internal combustion engines to industrial power plants. The third section discusses industrial applications of waste heat recovery, including internal combustion engines, LNG, and waste water. A comprehensive analysis of the technology and application of organic Rankine cycle systems is beyond the aim of the book. However, the content of this volume can be useful for scientists and students to broaden their knowledge of technologies and applications of organic Rankine cycle systems.