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The growth and development witnessed today in modern science, engineering, and technology owes a heavy debt to the rare, refractory, and reactive metals group, of which niobium is a member. Extractive Metallurgy of Niobium presents a vivid account of the metal through its comprehensive discussions of properties and applications, resources and resource processing, chemical processing and compound preparation, metal extraction, and refining and consolidation. Typical flow sheets adopted in some leading niobium-producing countries for the beneficiation of various niobium sources are presented, and various chemical processes for producing pure forms of niobium intermediates such as chloride, fluoride, and oxide are discussed. The book also explains how to liberate the metal from its intermediates and describes the physico-chemical principles involved. It is an excellent reference for chemical metallurgists, hydrometallurgists, extraction and process metallurgists, and minerals processors. It is also valuable to a wide variety of scientists, engineers, technologists, and students interested in the topic.
* Covers all aspects of physical metallurgy and behavior of metals and alloys. * Presents the principles on which metallurgy is based. * Concepts such as heat affected zone and structure-property relationships are covered. * Principles of casting are clearly outlined in the chapter on solidification. * Advanced treatment on physical metallurgy provides specialized information on metals.
During the second quarter of the nineteenth century, Londoners were enthralled by a strange fluid called electricity. In examining this period, Iwan Morus moves beyond the conventional focus on the celebrated Michael Faraday to discuss other electrical experimenters, who aspired to spectacular public displays of their discoveries. Revealing connections among such diverse fields as scientific lecturing, laboratory research, telegraphic communication, industrial electroplating, patent conventions, and innovative medical therapies, Morus also shows how electrical culture was integrated into a new machine-dominated, consumer society. He sees the history of science as part of the history of production, and emphasizes the labor and material resources needed to make electricity work. Frankenstein's Children explains that Faraday, with his colleagues at the Royal Society and the Royal Institution, looked at science as the province of a highly trained elite, who presented their abstract picture of nature only to select groups. The book contrasts Faraday's views with those of other practitioners, to whom science was a practical, skill-based activity open to all. In venues such as the Galleries of Practical Science, electrical phenomena were presented to a public less distinguished but no less enthusiastic and curious than Faraday's audiences. William Sturgeon, for instance, emphasized building apparatus and exhibiting electrical phenomena, while chemists, instrument-makers, and popular lecturers supported the London Electrical Society. These previously little studied "electricians" contributed much to the birth of "Frankenstein's children"--the not completely benign effects of electricity on a new consumer world. Originally published in 1998. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.