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Handbook of Smart Textiles electronic resource edited by Xiaoming Tao.

Contributor(s): Tao, Xiaoming [editor.] | SpringerLink (Online service)Material type: TextTextPublication details: Singapore : Springer Singapore : Imprint: Springer, 2015Edition: 1st ed. 2015Description: 565 illus., 374 illus. in color. eReference. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9789814451451Subject(s): Materials Science | Textile industry | Lasers | Photonics | Nanotechnology | Biomedical engineering | Optical materials | Electronic materials | Materials Science | Optical and Electronic Materials | Nanotechnology and Microengineering | Textile Engineering | Laser Technology, Photonics | Biomedical EngineeringDDC classification: 620.11295 | 620.11297 LOC classification: TA1750-1750.22Online resources: Click here to access online In: Springer eBooksSummary: The “Handbook of Smart Textiles” aims to provide a comprehensive overview in the field of smart textile describing the state of the art in the research sector as well as the well-established techniques applied in industries. The handbook is planned to cover from fundamental theories, experimental techniques, characterization methods, as well as real applications with successful commercialized examples. The book is structured in a way in which it is appropriate for graduate students, PhD candidates, and professionals in diverse scientific and engineering communities devoted to relevant fields, including textile engineering, chemistry, bioengineering, material engineering, mechanical engineering, electrical engineering. The book will also provide a solid reference for industrial players who look for innovative technologies as well as environmental, safety concerns for the development of smart textile related products.
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The “Handbook of Smart Textiles” aims to provide a comprehensive overview in the field of smart textile describing the state of the art in the research sector as well as the well-established techniques applied in industries. The handbook is planned to cover from fundamental theories, experimental techniques, characterization methods, as well as real applications with successful commercialized examples. The book is structured in a way in which it is appropriate for graduate students, PhD candidates, and professionals in diverse scientific and engineering communities devoted to relevant fields, including textile engineering, chemistry, bioengineering, material engineering, mechanical engineering, electrical engineering. The book will also provide a solid reference for industrial players who look for innovative technologies as well as environmental, safety concerns for the development of smart textile related products.

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