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Zi Zhi Tong Jian (Chinese: 资治通鉴;English: "Comprehensive Mirror in Aid of Governance") is a pioneering reference work in Chinese historiography, published in 1084 in the form of a chronicle. In 1065 AD, Emperor Yingzong of Songordered the great historian Sima Guang (1019–1086 AD) to lead with other scholars such as his chief assistants Liu Shu, Liu Ban and Fan Zuyu, the compilation of a universal history of China. The task took 19 years to be completed,and, in 1084 AD, it was presented to his successor Emperor Shenzong of Song. The Zi Zhi Tong Jian records Chinese history from 403 BC to 959 AD, covering 16 dynasties and spanning across almost 1,400 years,and contains 294 volumes (...
The Twenty-Four Histories (Chinese: 二十四史) are the Chinese official historical books covering a period from 3000 BC to the Ming dynasty in the 17th century. The Han dynasty official Sima Qian established many of the conventions of the genre. Starting with the Tang dynasty, each dynasty established an official office to write the history of its predecessor using official court records. As fixed and edited in the Qing dynasty, the whole set contains 3213 volumes and about 40 million words. It is considered one of the most important sources on Chinese history and culture. The title "Twenty-Four Histories" dates from 1775 which was the 40th year in the reign of the Qianlong Emperor. This ...
Environmental stress factors negatively affect plant growth by inducing proteins dysfunction. As coping strategies, plant have developed a comprehensive protein quality controlling system (PQCS) to keep proteins homeostasis. In this research topic of “Protein Quality Controlling Systems in Plant Responses to Environmental Stresses”, some latest researches and opinions in this field, including heat shock proteins (HSPs), unfolded protein response (UPR), ubiquitin-proteasome system (UPS) and autophagy, were reported, aiming to provide novel insights for increasing crop production under environmental challenges.
Transformation optics has been widely used for controlling various fields/waves, such as electromagnetic fields, acoustic waves, thermal fields, and water waves. Many novel devices with unique functions (e.g., invisibility cloak, perfect imaging, etc.) can be designed with the help of Transformation optics. In recent years, many new research branches in transformation optics are developing, such as simultaneous controlling multiple physical fields, deep learning for designing invisibility cloaks, optical surface transformation, and so on. This Research Topic will focus on any frontier areas and research branches related to transformation optics.
Electromagnetic metamaterials are a family of shaped periodic materials which achieve extraordinary scattering properties that are difficult or impossible to achieve with naturally occurring materials. This book focuses on one such feature of electromagnetic metamaterials—the theory, properties, and applications of the absorption of electromagnetic radiation. We have written this book for undergraduate and graduate students, researchers, and practitioners, covering the background and tools necessary to engage in the research and practice of metamaterial electromagnetic wave absorbers in various fundamental and applied settings. Given the growing impact of climate change, the call for innov...
This book ''Recent Advances in Graphene Research'' provides a state-of-the-art report of the knowledge accumulated in graphene research. It contains 12 chapters divided into three sections. Section 1 ''Fundamentals of Graphene'' deals with quantum hall effect in graphene, electronic properties of carbon nanostructures and spectral statistics of graphene nanoflakes. In Section 2 ''Graphene Synthesis,'' the optimized synthesis procedures of graphene and its derivatives are presented. The application of graphene and its nanostructured-based materials for energy storage, conservation and other extensive applications are described in Section 3 ''Application of Graphene and its Nanostructures''. We believe that this book offers broader prospective to the readers in the recent advances in graphene research, starting from fundamental science to application.