Recent advances in science and technology such as online monitoring techniques, coupling of various processing methods, surface characterization and measurement techniques have greatly promoted the development of ultraprecise machining technology. This precision now falls into the micrometer and nanometer range - hence the name micro & nanomachining technology (MNT). Machining is a complex phenomenon associated with a variety of different mechanical, physical, and chemical processes. Common principles defining control mechanisms such as O Jamie de geometry, Newton mechanics, Macroscopic Thermodynamics and Electromagnetics are not applicable to phenomena occurring at the nanometer scale whereas quantum effects, wave characteristics and the microscopic fluctuation become the dominant factors. A remarkable enhancement in computational capability through advanced computer hardware and high performance computation techniques (parallel computation) has enabled researchers to employ large scale parallel numerical simulations to investigate micro & nanomachining technologies and gain insights into related processes. Micro and Nanomachining Technology - Size, Model and Complex Mechanism introduces readers to the basics of micro & nanomachining (MNT) technology and covers some of the above techniques including molecular dynamics and finite element simulations, as well as complexity property and multiscale MNT methods. This book meets the growing need of Masters students or Ph.D. students studying nanotechnology, mechanical engineering or materials engineering, allowing them to understand the design and process issues associated with precision machine tools and the fabrication of precision components.
Antibiofouling Membranes for Water and Wastewater Treatment: Principles and Applications covers most recent advances, challenges, and industrial applications of antibiofouling membranes to help in reducing cost and increasing sustainability of long term-filtration performance of membranes in water and wastewater treatment. This book will provide a compact source of relevant and timely information on antibiofouling membranes and will be of great interest to scientists, engineers, industry R&D personnel, and graduate students engaged in the development, engineering scale-up, and applications of antibiofouling membranes, as well as other readers who are interested in microfiltration, membrane bioreactor, ultrafiltration, nanofiltration, reverse osmosis, and related topics. - Covers scientific and engineering principles of antibiofouling membranes for water and wastewater treatment - Unravels the structure-preparation-property-application relationship of antibiofouling membranes - Provides advanced design strategies of antibiofouling membrane materials - Summarizes and critically discusses antibiofouling membrane materials based on biocidal nanomaterials and quaternary ammonium compounds - Focuses on the state-of-the-art applications of antibiofouling membranes for water and wastewater treatment
This SpringerBrief provides state-of-the-art technical reviews on self-organizing and optimization in 5G systems. It covers the latest research results from physical-layer channel modeling to software defined network (SDN) architecture. This book focuses on the cutting-edge wireless technologies such as heterogeneous networks (HetNets), self-organizing network (SON), smart low power node (LPN), 3D-MIMO, and more. It will help researchers from both the academic and industrial worlds to better understand the technical momentum of 5G key technologies.
This book provides a multifaceted, multilayered examination of the processes and challenges language teachers face in constructing their professional identities in multilingual contexts such as Hong Kong. It focuses on how professional and personal identities are enacted as individuals cross geographic, educational, and socio-cultural boundaries to become English language teachers in Hong Kong. It explores the construction of language teachers’ professional identities from multiple perspectives in multiple settings, including pre-service and in-service teachers from Hong Kong, Mainland China, and Western countries. Understanding the difficulties and challenges these language teachers face in their identity and professional development is of relevance to teachers and teacher educators, as well as those interested in becoming language teachers in multilingual contexts.
Drawing on quantitative and qualitative data from teachers and students in Hong Kong’s secondary schools, this book examines critical questions in relation to language learning motivation and instructional contexts. Readers are provided with a critical overview of developments in theory and research on language learning motivation and the potential to further extend these developments. Grounded in the Douglas Fir Group conceptualization of language learning, the book explores the complex interplay of diverse factors that shape learners’ motivation. It offers a unique window into the situated nature of language learning motivation in the macro, meso, and micro contexts of a Chinese heritage society. In so doing, it brings the Chinese voice into the theorization of this important language learning construct. Potential future research avenues are suggested, and implications for policy and practice are discussed. This book will be a useful resource for academics and postgraduates interested in the fields of English as a second language (ESL), English language teaching, language teaching and learning.
Recent advances in science and technology such as online monitoring techniques, coupling of various processing methods, surface characterization and measurement techniques have greatly promoted the development of ultraprecise machining technology. This precision now falls into the micrometer and nanometer range - hence the name micro & nanomachining technology (MNT). Machining is a complex phenomenon associated with a variety of different mechanical, physical, and chemical processes. Common principles defining control mechanisms such as O Jamie de geometry, Newton mechanics, Macroscopic Thermodynamics and Electromagnetics are not applicable to phenomena occurring at the nanometer scale whereas quantum effects, wave characteristics and the microscopic fluctuation become the dominant factors. A remarkable enhancement in computational capability through advanced computer hardware and high performance computation techniques (parallel computation) has enabled researchers to employ large scale parallel numerical simulations to investigate micro & nanomachining technologies and gain insights into related processes. Micro and Nanomachining Technology - Size, Model and Complex Mechanism introduces readers to the basics of micro & nanomachining (MNT) technology and covers some of the above techniques including molecular dynamics and finite element simulations, as well as complexity property and multiscale MNT methods. This book meets the growing need of Masters students or Ph.D. students studying nanotechnology, mechanical engineering or materials engineering, allowing them to understand the design and process issues associated with precision machine tools and the fabrication of precision components.
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