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Porcelain imported from China was the most highly coveted new medium in sixteenth- and early seventeenth-­century Europe. Its pure white color, translucency, and durability, as well as the delicacy of decoration, were impossible to achieve in European earthenware and stoneware. In response, European ceramic factories set out to discover the process of producing porcelain in the Chinese manner, with significant artistic, technical, and commercial ramifications for Britain and the Continent. Indeed, not only artisans, but kings, noble patrons, and entrepreneurs all joined in the quest, hoping to gain both prestige and profit from the enterprises they established. This beautifully illustrated volume showcases ninety works that span the late sixteenth to the mid-nineteenth century and reflect the major currents of European porcelain production. Each work is illustrated with glorious new photography, accompanied by analysis and interpretation by one of the leading experts in European decorative arts. Among the wide range of porcelains selected are rare blue-and-white wares and figures from Italy, superb examples from the Meissen factory in Germany and the Sèvres factory in France, and ceramics produced by leading British eighteenth-century artisans. Taken together, they reveal why the Metropolitan Museum’s holdings in this field are among the finest in the world. p.p1 {margin: 0.0px 0.0px 0.0px 0.0px; font: 14.0px Verdana}
Ceramic Materials: Science and Engineering is an up-to-date treatment of ceramic science, engineering, and applications in a single, integrated text. Building on a foundation of crystal structures, phase equilibria, defects and the mechanical properties of ceramic materials, students are shown how these materials are processed for a broad diversity of applications in today's society. Concepts such as how and why ions move, how ceramics interact with light and magnetic fields, and how they respond to temperature changes are discussed in the context of their applications. References to the art and history of ceramics are included throughout the text. The text concludes with discussions of ceramics in biology and medicine, ceramics as gemstones and the role of ceramics in the interplay between industry and the environment. Extensively illustrated, the text also includes questions for the student and recommendations for additional reading. KEY FEATURES: Combines the treatment of bioceramics, furnaces, glass, optics, pores, gemstones, and point defects in a single text Provides abundant examples and illustrations relating theory to practical applications Suitable for advanced undergraduate and graduate teaching and as a reference for researchers in materials science Written by established and successful teachers and authors with experience in both research and industry