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The thirteen essays and the final poem contained in this volume reflect the fundamental importance of water across the whole breadth of medieval endeavour and understanding, as both source of life, and object of scholarly fascination, whose manifestations were the source of rich symbolism and imaginings. Ranging geographically from Ireland to the Arab world and from Iceland to Byzantium and chronologically from the fourth century CE to the sixteenth, the essays explore perceptions and theories of water through a wide range of approaches. Contributors are Michael Bintley, Tom Birkett, Laura Borghetti, Rafał Borysławski, Marilina Cesario, Marusca Francini, Kelly Grovier, Deborah Hayden, Simon Karstens, Andreas Lammer, David Livingstone, Luca Loschiavo, Hugh Magennis, Colin Fitzpatrick Murtha, François Quiviger, Elisa Ramazzina, and Karl Whittington.
For centuries it was believed that all matter was composed of four elements: earth, air, water, and fire in promiscuous combination, bound by love and pulled apart by strife. Elemental theory offered a mode of understanding materiality that did not center the cosmos around the human. Outgrown as a science, the elements are now what we build our houses against. Their renunciation has fostered only estrangement from the material world. The essays collected in Elemental Ecocriticism show how elemental materiality precipitates new engagements with the ecological. Here the classical elements reveal the vitality of supposedly inert substances (mud, water, earth, air), chemical processes (fire), and natural phenomena, as well as the promise in the abandoned and the unreal (ether, phlogiston, spontaneous generation). Decentering the human, this volume provides important correctives to the idea of the material world as mere resource. Three response essays meditate on the connections of this collaborative project to the framing of modern-day ecological concerns. A renewed intimacy with the elemental holds the potential of a more dynamic environmental ethics and the possibility of a reinvigorated materialism.
Illustrations: 4 Maps and 47 B/w Illustrations Description: This is one of the few well documented, well-researched and well-presented book on the history of mining and metallurgy in ancient India based on archaeological, literary and ethnological evidences and on first hand knowledge of various mining sites. Apart from the introduction and conclusion, this work of about 300 pages consists chapters on mineral ores in ancient India, gold, silver, copper and bronze, iron and zinc. This book also contains 4 maps and 47 illustrations.
This book presents the first full length study in English of monumental bronzes in the Middle Ages. Taking as its point of departure the common medieval reception of bronze sculpture as living or animated, the study closely analyzes the practice of lost wax casting (cire perdue) in western Europe and explores the cultural responses to large scale bronzes in the Middle Ages. Starting with mining, smelting, and the production of alloys, and ending with automata, water clocks and fountains, the book uncovers networks of meaning around which bronze sculptures were produced and consumed. The book is a path-breaking contribution to the study of metalwork in the Middle Ages and to the re-evaluation of medieval art more broadly, presenting an understudied body of work to reconsider what the materials and techniques embodied in public monuments meant to the medieval spectator.
Mechanochemistry as a branch of solid state chemistry enquires into processes which proceed in solids due to the application of mechanical energy. This provides a thorough, up to date overview of mechanochemistry of solids and minerals. Applications of mechanochemistry in nanoscience with special impact on nanogeoscience are described. Selected advanced identification methods, most frequently applied in nanoscience, are described as well as the advantage of mechanochemical approach in minerals engineering. Examples of industrial applications are given. Mechanochemical technology is being applied in many industrial fields: powder metallurgy (synthesis of nanometals, alloys and nanocompounds), building industry (activation of cements), chemical industry (solid waste treatment, catalyst synthesis, coal ashes utilization), minerals engineering (ore enrichment, enhancement of processes of extractive metallurgy), agriculture industry (solubility increase of fertilizers), and pharmaceutical industry (improvement of solubility and bioavailability of drugs). This reference serves as an introduction to newcomers to mechanochemistry, and encourages more experienced researchers to broaden their knowledge and discover novel applications in the field.