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Frank K. Ko - Introduction to Nanofiber Materials - 9780521879835 - V9780521879835
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Introduction to Nanofiber Materials

€ 114.25
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Description for Introduction to Nanofiber Materials hardcover. Presents the fundamentals and applications of nanofibrous materials and their structures to graduate students and researchers in materials science. Num Pages: 282 pages, 216 b/w illus. 20 tables. BIC Classification: TBN; TGM. Category: (P) Professional & Vocational. Dimension: 180 x 250 x 18. Weight in Grams: 708.
Presenting the latest coverage of the fundamentals and applications of nanofibrous materials and their structures for graduate students and researchers, this book bridges the communication gap between fiber technologists and materials scientists and engineers. Featuring intensive coverage of electroactive, bioactive and structural nanofibers, it provides a comprehensive collection of processing conditions for electrospinning and includes recent advances in nanoparticle-/nanotube-based nanofibers. The book also covers mechanical properties of fibers and fibrous assemblies, as well as characterization methods.

Product Details

Format
Hardback
Publication date
2014
Publisher
Cambridge University Press United Kingdom
Number of pages
306
Condition
New
Number of Pages
282
Place of Publication
Cambridge, United Kingdom
ISBN
9780521879835
SKU
V9780521879835
Shipping Time
Usually ships in 7 to 11 working days
Ref
99-10

About Frank K. Ko
Frank K. Ko is Canada Research Chair Professor in Advanced Fibrous Materials and Director of the Advanced Materials and Process Engineering Laboratory, University of British Columbia. Yuqin Wan is Research Associate in Advanced Fibrous Materials, Advanced Materials and Process Engineering Laboratory, University of British Columbia, Canada and Associate Professor in the School of Textiles and Clothing, Jiangnan University, China.

Reviews for Introduction to Nanofiber Materials
'An in-depth explanation of the basic properties of polymers helps the reader to refresh knowledge acquired during university courses, and is a very good introduction to further content, especially various methods of fiber formation, with understandable and clear schematics which are essential to fully understand nanofiber formation and their advantages and limits … The principles of every method described in ... Read more

Goodreads reviews for Introduction to Nanofiber Materials


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