Advances in Applied Science, Engineering and Technology


Book Description

Selected, peer reviewed papers from the 2013 International Conference on Applied Science, Engineering and Technology (ICASET 2013), May 19-21, 2013, Qingdao, China







Advances in Applied Sciences, Engineering and Technology II


Book Description

Selected, peer reviewed papers from the 2014 International Conference on Applied Sciences, Engineering and Technology (ICASET 2014), July 28-29, 2014, Qingdao, China




Eat, Cook, Grow


Book Description

Tools, interfaces, methods, and practices that can help bring about a healthy, socially inclusive, and sustainable food future. Our contemporary concerns about food range from food security to agricultural sustainability to getting dinner on the table for family and friends. This book investigates food issues as they intersect with participatory Internet culture—blogs, wikis, online photo- and video-sharing platforms, and social networks—in efforts to bring about a healthy, socially inclusive, and sustainable food future. Focusing on our urban environments provisioned with digital and network capacities, and drawing on such “bottom-up” sociotechnical trends as DIY and open source, the chapters describe engagements with food and technology that engender (re-)creative interactions. In the first section, “Eat,” contributors discuss technology-aided approaches to sustainable dining, including digital communication between farmers and urban consumers and a “telematic” dinner party at which guests are present electronically. The chapters in “Cook” describe, among other things, “smart” chopping boards that encourage mindful eating and a website that supports urban wild fruit foraging. Finally, “Grow” connects human-computer interaction with achieving a secure, safe, and ethical food supply, offering chapters on the use of interactive technologies in urban agriculture, efforts to trace the provenance of food with a “Fair Tracing” tool, and other projects. Contributors Joon Sang Baek, Pollie Barden, Eric P. S. Baumer, Eli Blevis, Nick Bryan-Kinns, Robert Comber, Jean Duruz, Katharina Frosch, Anne Galloway, Geri Gay, Jordan Geiger, Gijs Geleijnse, Nina Gros, Penny Hagen, Megan Halpern, Greg Hearn, Tad Hirsch, Jettie Hoonhout, Denise Kera, Vera Khovanskaya, Ann Light, Bernt Meerbeek, William Odom, Kenton O'Hara, Charles Spence, Mirjam Struppek, Esther Toet, Marc Tuters, Katharine S. Willis, David L. Wright, Grant Young




Progress in Applied Sciences, Engineering and Technology


Book Description

Selected, peer reviewed papers from the 2014 International Conference on Materials Science and Computational Engineering (ICMSCE 2014), May 20-21, 2014, Qingdao, China




Advances in Applied Science and Industrial Technology


Book Description

Selected, peer reviewed papers from the 2013 International Forum on Materials Science and Industrial Technology (IFMSIT 2013), August 30 – September 1, 2013, Qingdao, China




BioMEMS


Book Description

Written to cover often overlooked areas in the field of bioMEMS, this volume bridges topics related to biomolecules and complex biological entities with those directly related to the design, fabrication, and characterization of the devices. Unlike other references, this text aids with the fundamental physicochemical understanding of biological processes relevant to the performance of various biosensing devices. Accessible to seniors and graduate students enrolled in engineering programs, the book includes problems in each chapter as well as case studies to provide real-life examples.




Principles of Aeroelasticity


Book Description

Introductory Guide on the Design of Aerospace Structures Developed from a course taught at Concordia University for more than 20 years, Principles of Aeroelasticity utilizes the author’s extensive teaching experience to immerse undergraduate and first-year graduate students into this very specialized subject. Ideal for coursework or self-study, this detailed examination introduces the concepts of aeroelasticity, describes how aircraft lift structures behave when subjected to aerodynamic loads, and finds its application in aerospace, civil, and mechanical engineering. The book begins with a discussion on static behavior, and moves on to static instability and divergence, dynamic behavior leading up to flutter, and fluid structure interaction problems. It covers classical approaches based on low-order aerodynamic models and provides a rationale for adopting certain aeroelastic models. The author describes the formulation of discrete models as well as continuous structural models. He also provides approximate methods for solving divergence, flutter, response and stability of structures, and addresses non-aeroelastic problems in other areas that are similar to aeroelastic problems. Topics covered include: The fundamentals of vibration theory Vibration of single degree of freedom and two degrees of freedom systems Elasticity in the form of an idealized spring element Repetitive motion Flutter phenomenon Classical methods, Rayleigh-Ritz techniques, Galerkin’s technique, influential coefficient methods, and finite element methods Unsteady aerodynamics, and more