This book perfects the theoretical system of fracture mechanics of nonhomogeneous materials through the establishment of the piecewise exponential model and expands the fracture research scope to nonhomogeneous materials containing complex interfaces through proposing the domain-independent interaction integral concept. The piecewise exponential model has overcome the problem of fracture mechanics of nonhomogeneous materials and clarified the doubt of traditional exponential models in recent 30 years. The domain-independent interaction integral method is not affected by material nonhomogeneity and discontinuity, which greatly facilitates its numerical implementation in the investigation of fracture behaviors of nonhomogeneous materials with complex interfaces.
CRACK THE CODE AND GET FLUENT FASTER. I had to learn [a new language] in a handful of days for a TV interview. I asked Benny for help and his advice was invaluable. - Tim Ferriss Ten years ago, Lewis spoke only English. But constant travel, along with a buoyant attitude, has unmasked the polyglot within. - National Geographic What if you could skip the years of study and jump right to speaking Mandarin? Sound Crazy? No, it's language hacking. It's about learning what's indispensable, skipping what's not - and using what you've learned to have real conversations in Chinese - from day one! Unlike most traditional language courses that try to teach you the rules of a language,Language HackingMandarin shows you how to learn and speak Mandarin Chinese immediately through proven memory techniques, unconventional shortcuts and conversation strategies perfect by one of the world's greatest language learners, Benny Lewis, aka the Irish Polyglot. The Method Language Hacking takes a modern approach to language learning by focusing on the essential conversations that learners need to start speaking from day one. There's no need to study every word and grammar rule before you start using the language. Instead,Language Hacking applies the 80/20 principle to language learning, giving you the most versatile phrases and most effective shortcuts to help you get fluent faster. Through speaking, you get the practice you need to progress and the confidence to use the language. Each of the 10 units culminates with a speaking mission that you can choose to share on the italki#LanguageHacking learner community (www.italki.com/community) where you can submit your missions, give and get feedback and extend your learning beyond the pages of the book. The audio for this course is available for free on library.teachyourself.com or from the Teach Yourself Library app. You don't need to go abroad to learn a language any more.
Brain and Nature-Inspired Learning, Computation and Recognition presents a systematic analysis of neural networks, natural computing, machine learning and compression, algorithms and applications inspired by the brain and biological mechanisms found in nature. Sections cover new developments and main applications, algorithms and simulations. Developments in brain and nature-inspired learning have promoted interest in image processing, clustering problems, change detection, control theory and other disciplines. The book discusses the main problems and applications pertaining to bio-inspired computation and recognition, introducing algorithm implementation, model simulation, and practical application of parameter setting. Readers will find solutions to problems in computation and recognition, particularly neural networks, natural computing, machine learning and compressed sensing. This volume offers a comprehensive and well-structured introduction to brain and nature-inspired learning, computation, and recognition. - Presents an invaluable systematic introduction to brain and nature-inspired learning, computation and recognition - Describes the biological mechanisms, mathematical analyses and scientific principles behind brain and nature-inspired learning, calculation and recognition - Systematically analyzes neural networks, natural computing, machine learning and compression, algorithms and applications inspired by the brain and biological mechanisms found in nature - Discusses the theory and application of algorithms and neural networks, natural computing, machine learning and compression perception
This book perfects the theoretical system of fracture mechanics of nonhomogeneous materials through the establishment of the piecewise exponential model and expands the fracture research scope to nonhomogeneous materials containing complex interfaces through proposing the domain-independent interaction integral concept. The piecewise exponential model has overcome the problem of fracture mechanics of nonhomogeneous materials and clarified the doubt of traditional exponential models in recent 30 years. The domain-independent interaction integral method is not affected by material nonhomogeneity and discontinuity, which greatly facilitates its numerical implementation in the investigation of fracture behaviors of nonhomogeneous materials with complex interfaces.
This will help us customize your experience to showcase the most relevant content to your age group
Please select from below
Login
Not registered?
Sign up
Already registered?
Success – Your message will goes here
We'd love to hear from you!
Thank you for visiting our website. Would you like to provide feedback on how we could improve your experience?
This site does not use any third party cookies with one exception — it uses cookies from Google to deliver its services and to analyze traffic.Learn More.