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This book provides novel insights into how Chinese provinces have developed into major sources of China's outbound investments. Focusing on the Yangtze River Delta region, the book compares two provinces with highest outbound investment in China, Jiangsu and Zhejiang and traces how locality-unique conditions contribute to the economic internationalization of Chinese provinces. Through its in-depth exploration of these case studies, the book reveals how the deficiency of enterprises' investment capacity heavily depends on the unique political, economic, formal and informal institutions of each province. The findings presented in this book also offer conclusions relevant to the study of the internationalization process of emerging economies engaging in outward investment, such as India and Brazil. Featuring insights from interviews with scholars, managers and government officials this will be an invaluable resource for scholars, students and professionals interested in International Economics, International Political Economy, Chinese Studies and Asian Studies.
This monograph offers a comprehensive overview of diverse quantization phenomena in layered materials, covering current mainstream experimental and theoretical research studies, and presenting essential properties of layered materials along with a wealth of figures. This book illustrates commonly used synthesis methods of these 2D materials and compares the calculated results and experimental measurements, including novel features not yet reported. The book also discusses experimental measurements of magnetic quantization, theoretical modeling for studying systems and covers diversified magneto-electronic properties, magneto-optical selection rules, unusual quantum Hall conductivities, and single- and many-particle magneto-Coulomb excitations. Rich and unique behaviors are clearly revealed in few-layer graphene systems with distinct stacking configuration, stacking-modulated structures, silicon-doped lattices, bilayer silicene/germanene systems with the bottom-top and bottom-bottom buckling structures, monolayer and bilayer phosphorene systems, and quantum topological insulators. The generalized tight-binding model, the static and dynamic Kubo formulas, and the random-phase approximation are developed/modified to thoroughly explore the fundamental properties and propose the concise physical pictures. Different high-resolution experimental measurements are discussed in detail, and they are consistent with the theoretical predictions. Aimed at readers working in materials science, physics, and engineering this book should be useful for potential applications in energy storage, electronic devices, and optoelectronic devices.
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