Ceramic engineering

Ceramic materials may have a crystalline or partly crystalline structure, with long-range order on atomic scale. Glass-ceramics may have an amorphous or glassy structure, with limited or short-range atomic order. They are either formed from a molten mass that solidifies on cooling, formed and matured by the action of heat, or chemically synthesized at low temperatures using, for example, hydrothermal or sol-gel synthesis.
The special character of ceramic materials gives rise to many applications in materials engineering, electrical engineering, chemical engineering and mechanical engineering. As ceramics are heat resistant, they can be used for many tasks for which materials like metal and polymers are unsuitable. Ceramic materials are used in a wide range of industries, including mining, aerospace, medicine, refinery, food and chemical industries, packaging science, electronics, industrial and transmission electricity, and guided lightwave transmission. Provided by Wikipedia
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1by Stroupe, Howard E.Other Authors: “...Ceramic Engineering...”
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2by Prentice, William H.Other Authors: “...Ceramic Engineering...”
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3by Viverito, Thomas R.Other Authors: “...Ceramic Engineering...”
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5by Vaughan, T. C.Other Authors: “...Ceramic Engineering...”
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6by Wheeler, William H.Other Authors: “...Ceramic Engineering...”
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7by Harrison, William B.Other Authors: “...Ceramic Engineering...”
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8by Lio, Lim YockOther Authors: “...Ceramic Engineering...”
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9by Venable, Charles R.Other Authors: “...Ceramic Engineering...”
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10by Carroll, Alan F.Other Authors: “...Ceramic Engineering...”
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11by Barnett, Charles W. H.Other Authors: “...Ceramic Engineering...”
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15by Stinton, David PaulOther Authors: “...Ceramic Engineering...”
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16by McMarlin, Robert M.Other Authors: “...Ceramic Engineering...”
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17by Vitolo, Sylvester A.Other Authors: “...Ceramic Engineering...”
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