Jiang Wu – författare
443 kr
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1 839 kr
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593 kr
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410 kr
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428 kr
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381 kr
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1 167 kr
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297 kr
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746 kr
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The rise of Spatial Humanities has spurred a digital revolution in the field of Chinese studies, especially in the study of religion. Based on years of data compilation and analysis of religious sites, this book explores the formation of Regional Religious Systems (RRS) in Greater China in unprecedented scope and depth. It addresses quantitatively the enduring historical and contemporary issues of China’s deep-rooted regionalism and spatially variegated cultural and religious landscape.
A range of topics are explored: theoretical discussions of the concept of RRS; case studies of regional and local religious institutions; the formation of local cults and pilgrimage network; and the spread of religious networks to overseas Chinese communities and the Bon religion in Tibet. The book also considers long-standing challenges of researching with spatial data for humanities and social science research, such as data collection, integration, spatial analysis, and map creation.
This book will be of interest to students and scholars in Religious Studies, Cultural Studies, Chinese Studies, Digital Humanities, Human Geography and Sociology.
774 kr
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The rise of Spatial Humanities has spurred a digital revolution in the field of Chinese studies, especially in the study of religion. Based on years of data compilation and analysis of religious sites, this book explores the formation of Regional Religious Systems (RRS) in Greater China in unprecedented scope and depth. It addresses quantitatively the enduring historical and contemporary issues of China’s deep-rooted regionalism and spatially variegated cultural and religious landscape.
A range of topics are explored: theoretical discussions of the concept of RRS; case studies of regional and local religious institutions; the formation of local cults and pilgrimage network; and the spread of religious networks to overseas Chinese communities and the Bon religion in Tibet. The book also considers long-standing challenges of researching with spatial data for humanities and social science research, such as data collection, integration, spatial analysis, and map creation.
This book will be of interest to students and scholars in Religious Studies, Cultural Studies, Chinese Studies, Digital Humanities, Human Geography and Sociology.
2 195 kr
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Quantum Dot Molecules
1 622 kr
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2 049 kr
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A quantum dot molecule (QDM) is composed of two or more closely spaced quantum dots or “artificial atoms.” In recent years, QDMs have received much attention as an emerging new artificial quantum system. The interesting and unique coupling and energy transfer processes between the “artificial atoms” could substantially extend the range of possible applications of quantum nanostructures. This book reviews recent advances in the exciting and rapidly growing field of QDMs via contributions from some of the most prominent researchers in this scientific community. The book explores many interesting topics such as the epitaxial growth of QDMs, spectroscopic characterization, and QDM transistors, and bridges between the fundamental physics of novel materials and device applications for future information technology. Both theoretical and experimental approaches are considered. Quantum Dot Molecules can be recommended for electrical engineering and materials science department courses on the science and design of advanced and future electronic and optoelectronic devices.
Quantum Dot Solar Cells
1 084 kr
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1 416 kr
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Silicon-based Nanomaterials
1 622 kr
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2 049 kr
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A variety of nanomaterials have excellent optoelectronic and electronic properties for novel device applications. At the same time, and with advances in silicon integrated circuit (IC) techniques, compatible Si-based nanomaterials hold promise of applying the advantages of nanomaterials to the conventional IC industry. This book focuses not only on silicon nanomaterials, but also summarizes up-to-date developments in the integration of non-silicon nanomaterials on silicon. The book showcases the work of leading researchers from around the world who address such key questions as: Which silicon nanomaterials can give the desired optical, electrical, and structural properties, and how are they prepared? What nanomaterials can be integrated on to a silicon substrate and how is this accomplished? What Si-based nanomaterials may bring a breakthrough in this field? These questions address the practical issues associated with the development of nanomaterial-based devices in applications areas such as solar cells, luminous devices for optical communication (detectors, lasers), and high mobility transistors. Investigation of silicon-based nanostructures is of great importance to make full use of nanomaterials for device applications. Readers will receive a comprehensive view of Si-based nanomaterials, which will hopefully stimulate interest in developing novel nanostructures or techniques to satisfy the requirements of high performance device applications. The goal is to make nanomaterials the main constituents of the high performance devices of the future.
Quantum Dot Molecules
1 622 kr
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Quantum Dot Solar Cells
1 084 kr
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Silicon-based Nanomaterials
1 622 kr
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1 327 kr
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Smart Health
International Conference, ICSH 2018, Wuhan, China, July 1–3, 2018, Proceedings
545 kr
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712 kr
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The 14 full papers and 21 short papers presented were carefully reviewed and selected from 49 submissions. They focus on studies on the principles, approaches, models, frameworks, new applications, and effects of using novel information technology to address healthcare problems and improve social welfare. The selected papers are organized into the following topics: smart hospital; online health community; mobile health; medical big data and healthcare machine learning; chronic disease management; and health informatics.
Quantum Dot Photodetectors
1 943 kr
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2 524 kr
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This book presents a comprehensive overview of state-of-the-art quantum dot photodetectors, including device fabrication technologies, optical engineering/manipulation strategies, and emerging photodetectors with building blocks of novel quantum dots (e.g. perovskite) as well as their hybrid structured (e.g. 0D/2D) materials. Semiconductor quantum dots have attracted much attention due to their unique quantum confinement effect, which allows for the facile tuning of optical properties that are promising for next-generation optoelectronic applications. Among these remarkable properties are large absorption coefficient, high photosensitivity, and tunable optical spectrum from ultraviolet/visible to infrared region, all of which are very attractive and favorable for photodetection applications. The book covers both fundamental and frontier research in order to stimulate readers'' interests in developing novel ideas for semiconductor photodetectors at the center of future developments inmaterials science, nanofabrication technology and device commercialization. The book provides a knowledge sharing platform and can be used as a reference for researchers working in the fields of photonics, materials science, and nanodevices.
Quantum Dot Photodetectors
1 943 kr
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Nanoscale Sensors
1 082 kr
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1 416 kr
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This book is a comprehensive introduction to nanoscale materials for sensor applications, with a focus on connecting the fundamental laws of physics and the chemistry of materials with device design. Nanoscale sensors can be used for a wide variety of applications, including the detection of gases, optical signals, and mechanical strain, and can meet the need to detect and quantify the presence of gaseous pollutants or other dangerous substances in the environment. Gas sensors have found various applications in our daily lives and in industry. Semiconductive oxides, including SnO2, ZnO, Fe2O3, and In2O3, are promising candidates for gas sensor applications. Carbon nanomaterials are becoming increasingly available as “off-the-shelf” components, and this makes nanotechnology more exciting and approachable than ever before. Nano-wire based field- effect transistor biosensors have also received much attention in recent years as a way to achieve ultra-sensitive and label-free sensing of molecules of biological interest. A diverse array of semiconductor-based nanostructures has been synthesized for use as a photoelectrochemical sensor or biosensor in the detection of low concentrations of analytes. A novel acoustic sensor for structural health monitoring (SHM) that utilizes lead zirconate titanate (PZT) nano- active fiber composites (NAFCs) is described as well.
Nanoscale Sensors
1 082 kr
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1 607 kr
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