Xing Fan - Böcker
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3 produkter
3 produkter
901 kr
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This is an accessible introduction to jingju (Beijing/Peking opera) which presents readers with an analysis of the different components of its aesthetic form in the context of its ongoing cultural history.It traces the history of jingju from its origin during the 1790s to its present-day status as one of the few theatrical forms to enjoy nation-wide popularity in China. In 2010, UNESCO placed it on the Representative List of the Intangible Heritage of Humanity.This book traces jingju’s history through three lenses. Firstly, it introduces the stage practices that shape a jingju production—including the use of music, acting style, visual components and staging, and dramatic narrative—and details for the reader the practitioner’s experience during the developmental creative process, in rehearsals and behind the curtain. Secondly, it illustrates jingju’s development with close analyses of case studies, and sheds light on the process of jingju’s transformation into its contemporary form. Lastly, it defines and interprets jingju’s notion of the beautiful and how this sense of beauty is communicated through stylization.
Del 11718 - Lecture Notes in Computer Science
OpenMP: Conquering the Full Hardware Spectrum
15th International Workshop on OpenMP, IWOMP 2019, Auckland, New Zealand, September 11–13, 2019, Proceedings
Häftad, Engelska, 2019
726 kr
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This book constitutes the proceedings of the 15th International Workshop on Open MP, IWOMP 2019, held in Auckland, New Zealand, in September 2019. The 22 full papers presented in this volume were carefully reviewed and selected for inclusion in this book. The papers are organized in topical sections named: best paper;
Textile-Based Energy Harvesting and Storage Devices for Wearable Electronics
Inbunden, Engelska, 2021
1 610 kr
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Textile-Based Energy Harvesting and Storage Devices for Wearable Electronics Discover state-of-the-art developments in textile-based wearable and stretchable electronics from leaders in the field In Textile-Based Energy Harvesting and Storage Devices for Wearable Electronics, renowned researchers Professor Xing Fan and his co-authors deliver an insightful and rigorous exploration of textile-based energy harvesting and storage systems. The book covers the principles of smart fibers and fabrics, as well as their fabrication methods. It introduces, in detail, several fiber- and fabric-based energy harvesting and storage devices, including photovoltaics, piezoelectrics, triboelectrics, supercapacitors, batteries, and sensing and self-powered electric fabrics. The authors also discuss expanded functions of smart fabrics, like stretchability, hydrophobicity, air permeability and color-changeability. The book includes sections on emerging electronic fibers and textiles, including stress-sensing, strain-sensing, and chemical-sensing textiles, as well as emerging self-powered electronic textiles. Textile-Based Energy Harvesting and Storage Devices for Wearable Electronics concludes with an in-depth treatment of upcoming challenges, opportunities, and commercialization requirements for electronic textiles, providing valuable insight into a highly lucrative new commercial sector. The book also offers: A thorough introduction to the evolution from classical functional fibers to intelligent fibers and textilesAn exploration of typical film deposition technologies, like dry-process film deposition and wet-process technologies for roll-to-roll device fabricationPractical discussions of the fabrication process of intelligent fibers and textiles, including the synthesis of classical functional fibers and nano/micro assembly on fiber materialsIn-depth examinations of energy harvesting and energy storage fibers, including photovoltaic, piezoelectric, and supercapacitor fibersPerfect for materials scientists, engineering scientists, and sensor developers, Textile-Based Energy Harvesting and Storage Devices for Wearable Electronics is also an indispensable resource for electrical engineers and professionals in the sensor industry seeking a one-stop reference for fiber- and fabric-based energy harvesting and storage systems for wearable and stretchable power sources.