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Materials are the foundation of technology. As such, most universities provide engineering undergraduates with the fundamental concepts of materials science, including crystal structures, imperfections, phase diagrams, materials processing, and materials properties. Few, however, offer the practical, applications-oriented background that their stud
Volume is indexed by Thomson Reuters CPCI-S (WoS). This two-volume set, comprising 172 peer-reviewed papers, covers the latest advances in applied mechanics and materials, structural and new functional materials, environmental materials, geotechnical and building materials, electronic materials and applications, new materials and composite materials and other related fields. Combined with its wide coverage of applications, this collection will be welcomed by anyone working in these fields.
Collection of selected, peer reviewed papers from the 2014 3rd International Conference on Applied Materials and Electronics Engineering (AMEE 2014), April 26-27, 2014, Hong Kong, China. The 161 papers are grouped as follows: Chapter 1: Nanoscience and Nanotechnology, Chapter 2: Materials Science and Processing, Chapter 3: Building and Construction: Materials, Planning and Design, Chapter 4: Environmental Research, Chapter 5: Power and Electronic Engineering, Chapter 6: Control Systems and Engineering, Chapter 7: Monitoring and Data Processing, Chapter 8: Communications and Networking, Chapter 9: Information System and Computer, Chapter 10: Management and Education.
Selected, peer reviewed papers from the 2013 2nd International Conference on Applied Materials and Electronics Engineering (AMEE 2013), April 19-20, 2013, Hong Kong
This two-volume set, comprising 172 peer-reviewed papers, covers the latest advances in applied mechanics and materials, structural and new functional materials, environmental materials, geotechnical and building materials, electronic materials and applications, new materials and composite materials and other related fields. Combined with its wide coverage of applications, this collection will be welcomed by anyone working in these fields. Review from Book News Inc.: From the 2012 International Conference on Applied Materials and Electronics Engineering (AMEE 2012), held in January 2012 in Hong Kong, the 172 papers presented here focus on developments in applied mechanics and materials, structural and new functional materials, environment and materials, geotechnical and building materials, electronic materials and applications, new and composite materials, and other related fields, with an emphasis on basic methodologies, scientific development, and engineering applications. Contributors are engineering researchers and practitioners from academia, industry, and government mainly in China.
Materials are the foundation of technology. As such, most universities provide engineering undergraduates with the fundamental concepts of materials science, including crystal structures, imperfections, phase diagrams, materials processing, and materials properties. Few, however, offer the practical, applications-oriented background that their students need to succeed in industry. Applied Materials Science: Applications of Engineering Materials in Structural, Electronics, Thermal, and Other Industries fills that gap. From a cross-disciplinary perspective that reflects both the multifunctionality of many materials and the wide scope industrial needs, the author examines the practical applications of metal, ceramic, polymer, cement, carbon, and composite materials across a broad range of industries. The topics addressed include electronic packaging, smart materials, thermal management, nondestructive evaluation, and materials development. The text is clear, coherent, and tutorial in style, includes numerous up-to-date references, and provides background material in a series of appendices. Unique in its breadth of coverage of both materials and their applications, Applied Materials Science is both scientifically rich and technologically relevant. If you work or teach those that aspire to work in an engineering capacity, you will find no text or reference that better prepares its readers for real-world applications of engineering materials.
Collection of selected, peer reviewed papers from the 2014 2nd International Conference on Insulating Materials, Material Application and Electrical Engineering (MAEE2014), July 26-27, 2014, Nanjing, China. The 60 papers are grouped as follows: Chapter 1: Chemical Materials Research, Chapter 2: Materials Science, Processing and Application, Chapter 3: Power Systems and Electronics, Chapter 4: Detection, Control and Computational Methods, Algorithms
Discover a comprehensive overview and advances in mechanics to design the cutting edge electronics Soft electronics systems, which include flexible and stretchable electronics, are an area of technology with the potential to revolutionize fields from healthcare to defense. Engineering for flexibility and stretchability without compromising electronic functions poses serious challenges, and extensive mechanics and engineering knowledge is required to meet these challenges. Mechanics of Flexible and Stretchable Electronics introduces a range of soft functional materials and soft structures and their potential applications in the construction of soft electronics systems. Its detailed attention to the mechanics of these materials and structures makes it an indispensable tool for scientists and engineers at the cutting edge of electronics technology. Mechanics of Flexible and Stretchable Electronics readers will also find: A detailed summary of recent advances in the field Detailed treatment of structures including kirigami, serpentine, wrinkles, and many more A multidisciplinary approach suited to a varied readership Mechanics of Flexible and Stretchable Electronics is ideal for electronics and mechanical engineers, solid state physicists, and materials scientists, as well as the libraries that support them.