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This book approaches condensed matter physics from the perspective of quantum information science, focusing on systems with strong interaction and unconventional order for which the usual condensed matter methods like the Landau paradigm or the free fermion framework break down. Concepts and tools in quantum information science such as entanglement, quantum circuits, and the tensor network representation prove to be highly useful in studying such systems. The goal of this book is to introduce these techniques and show how they lead to a new systematic way of characterizing and classifying quantum phases in condensed matter systems. The first part of the book introduces some basic concepts in...
It is a point of debate to what extent and according to which principles the syntactic behavior of verbs can be derived from their semantic representations and how it can be affected by lexical or syntactic operations. This collection of articles brings together insights from the research on verbs whose semantic structure has been made more complex by the incorporation of a particle, a prefix, a verbal or a nominal element. A list of the constructions and languages that are discussed includes particle and prefix verbs in English and German, resultative constructions in English, Danish and Spanish, psych verbs in English and German, and compound verbs in Greek, Chinese, and Persian.
To understand how this extraordinary meeting came about requires a consideration of the economy of violence during the Ming Dynasty (1368-1644). Here, for the first time in any language, is a detailed look at the role of illicit violence during the Ming.".
This book approaches condensed matter physics from the perspective of quantum information science, focusing on systems with strong interaction and unconventional order for which the usual condensed matter methods like the Landau paradigm or the free fermion framework break down. Concepts and tools in quantum information science such as entanglement, quantum circuits, and the tensor network representation prove to be highly useful in studying such systems. The goal of this book is to introduce these techniques and show how they lead to a new systematic way of characterizing and classifying quantum phases in condensed matter systems. The first part of the book introduces some basic concepts in...
This book explores intersections of science and religion, spirituality and technology, engineering and science fiction, mind and matter, and outlines a new cosmic, transhumanist religion. Hacking religion, enlightening science, awakening technology.
The last lecture course that Nobel Prize winner Richard P. Feynman gave to students at Caltech from 1983 to 1986 was not on physics but on computer science. The first edition of the Feynman Lectures on Computation, published in 1996, provided an overview of standard and not-so-standard topics in computer science given in Feynman’s inimitable style. Although now over 20 years old, most of the material is still relevant and interesting, and Feynman’s unique philosophy of learning and discovery shines through. For this new edition, Tony Hey has updated the lectures with an invited chapter from Professor John Preskill on “Quantum Computing 40 Years Later”. This contribution captures the ...
Volume I is divided into two parts. Part A of volume 1 in the Ben cao gang mu series offers a translation of chapters 1 and 2 and portions of chapter 3. Chapters 1 and 2 are devoted to introducing the history of materia medica. Chapter 3 is devoted to pharmaceutical drugs for diseases. Chapter 3 is continued, along with chapter 4, in part B of volume I. The Ben cao gang mu is a sixteenth-century Chinese encyclopedia of medical matter and natural history by Li Shizhen (1518–1593). The culmination of a sixteen-hundred-year history of Chinese medical and pharmaceutical literature, it is considered the most important and comprehensive book ever written in the history of Chinese medicine and remains an invaluable resource for researchers and practitioners. This nine-volume series reveals an almost two-millennia-long panorama of wide-ranging observations and sophisticated interpretations, ingenious manipulations, and practical applications of natural substances for the benefit of human health. Paul U. Unschuld's annotated translation of the Ben cao gang mu, presented here with the original Chinese text, opens a rare window into viewing the people and culture of China's past.
This most comprehensive and unrivaled compendium in the field provides an up-to-date account of the chemistry of solids, nanoparticles and hybrid materials. Following a valuable introductory chapter reviewing important synthesis techniques, the handbook presents a series of contributions by about 150 international leading experts -- the "Who's Who" of solid state science. Clearly structured, in six volumes it collates the knowledge available on solid state chemistry, starting from the synthesis, and modern methods of structure determination. Understanding and measuring the physical properties of bulk solids and the theoretical basis of modern computational treatments of solids are given ample space, as are such modern trends as nanoparticles, surface properties and heterogeneous catalysis. Emphasis is placed throughout not only on the design and structure of solids but also on practical applications of these novel materials in real chemical situations.
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 (...
Chemical structure and bonding. The scope of the series spans the entire Periodic Table and addresses structure and bonding issues associated with all of the elements. It also focuses attention on new and developing areas of modern structural and theoretical chemistry such as nanostructures, molecular electronics, designed molecular solids, surfaces, metal clusters and supramolecular structures. Physical and spectroscopic techniques used to determine, examine and model structures fall within the purview of Structure and Bonding to the extent that the focus is on the scientific results obtained and not on specialist information concerning the techniques themselves. Issues associated with the ...