Low Dimensional Materials: Bridging the Fundamental Principles to Practice Applications provides an overview of research on low-dimensional materials, devices, and their applications. There are seven chapters in the book, starting from the basic quantum theory in chapter one, to the control and characterization of the unique structures (chapters two and four), to the relation of the physical and chemical properties with structures (chapter five), and to the practical and promising applications in energy, information, and health (chapter six), before conclusions and future outlook in chapter seven. - Discusses the whole field of low-dimensional materials, from quantum mechanics and low dimensional effects to structure-property relations, various methods of fabrication and assembly techniques, and a characterization of atomic and interface structures - Covers a wide range of topics, making it a 'map' for readers to understand the fundamentals of low-dimensional materials - Written with a 'bottom-up approach, with a solid foundation of quantum mechanics, thermodynamics, and energy transport in low-dimensional systems
This book offers careful glimpse from the lenses of selected case studies of major counties in East Asia, namely China and Japan to obtain insights as well as lessons regarding their perspective sustainable cities development. Urban sustainability is the pillar domain for achieving overall sustainability. East Asia has the world most populous countries and cities; therefore, it is of great importance to understand, analyze, and assess the sustainable urban development trends and paradigms in an East Asia setting so as to better guide the future development of sustainable cities in the region. The outcomes of this book are policy-relevant consultations to key stakeholders from various walks of sustainability studies.
This book consists of sixty-seven selected papers presented at the 2015 International Conference on Software Engineering and Information Technology (SEIT2015), which was held in Guilin, Guangxi, China during June 26-28, 2015. The SEIT2015 has been an important event and has attracted many scientists, engineers and researchers from academia, government laboratories and industry internationally. The papers in this book were selected after rigorous review.SEIT2015 focuses on six main areas, namely, Information Technology, Computer Intelligence and Computer Applications, Algorithm and Simulation, Signal and Image Processing, Electrical Engineering and Software Engineering. SEIT2015 aims to provide a platform for the global researchers and practitioners from both academia as well as industry to meet and share cutting-edge development in the field.This conference has been a valuable opportunity for researchers to share their knowledge and results in theory, methodology and applications of Software Engineering and Information Technology.
In this book, Xiaolong Wu offers a comprehensive and in-depth study of the Zhongshan state during China's Warring States Period (476–221 BCE). Analyzing artefacts, inscriptions, and grandiose funerary structures within a broad archaeological context, he illuminates the connections between power and identity, and the role of material culture in asserting and communicating both. The author brings an interdisciplinary approach to this study. He combines and cross-examines all available categories of evidence, including archaeological, textual, art historical, and epigraphical, enabling innovative interpretations and conclusions that challenge conventional views regarding Zhongshan and ethnicity in ancient China. Wu reveals the complex relationship between material culture, cultural identity, and statecraft intended by the royal patrons. He demonstrates that the Zhongshan king Cuo constructed a hybrid cultural identity, consolidated his power, and aimed to maintain political order at court after his death through the buildings, sculpture, and inscriptions that he commissioned.
Low Dimensional Materials: Bridging the Fundamental Principles to Practice Applications provides an overview of research on low-dimensional materials, devices, and their applications. There are seven chapters in the book, starting from the basic quantum theory in chapter one, to the control and characterization of the unique structures (chapters two and four), to the relation of the physical and chemical properties with structures (chapter five), and to the practical and promising applications in energy, information, and health (chapter six), before conclusions and future outlook in chapter seven. - Discusses the whole field of low-dimensional materials, from quantum mechanics and low dimensional effects to structure-property relations, various methods of fabrication and assembly techniques, and a characterization of atomic and interface structures - Covers a wide range of topics, making it a 'map' for readers to understand the fundamentals of low-dimensional materials - Written with a 'bottom-up approach, with a solid foundation of quantum mechanics, thermodynamics, and energy transport in low-dimensional systems
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