This book provides a tutorial on quantum communication networks. The authors discuss current paradigm shifts in communication networks that are needed to add computing and storage to the simple transport ideas of prevailing networks. They show how these ‘softwarized’ solutions break new grounds to reduce latency and increase resilience. The authors discuss how even though these solutions have inherent problems due to introduced computing latency and energy consumption, the problems can be solved by hybrid classical-quantum communication networks. The book brings together quantum networking, quantum information theory, quantum computing, and quantum simulation.
Performance of Bio-based Building Materials provides guidance on the use of bio-based building materials (BBBM) with respect to their performance. The book focuses on BBBM currently present on the European market. The state-of-the-art is presented regarding material properties, recommended uses, performance expectancies, testing methodology, and related standards. Chapters cover both 'old and traditional' BBBM since quite a few of them are experiencing a comeback on the market. Promising developments that could become commercial in the near future are presented as well. The book will be a valuable reference resource for those working in the bio-based materials research community, architects and agencies dealing with sustainable construction, and graduate students in civil engineering. - Takes a unique approach to bio-based materials and presents a broad overview of the topics on relevant areas necessary for application and promotion in construction - Contains a general description, notable properties related to performance, and applications - Presents standards that are structured according to performance types
The field of solid state ionics is multidisciplinary in nature. Chemists, physicists, electrochimists, and engineers all are involved in the research and development of materials, techniques, and theoretical approaches. This science is one of the great triumphs of the second part of the 20th century. For nearly a century, development of materials for solid-state ionic technology has been restricted. During the last two decades there have been remarkable advances: more materials were discovered, modem technologies were used for characterization and optimization of ionic conduction in solids, trial and error approaches were deserted for defined predictions. During the same period fundamental theories for ion conduction in solids appeared. The large explosion of solid-state ionic material science may be considered to be due to two other influences. The first aspect is related to economy and connected with energy production, storage, and utilization. There are basic problems in industrialized countries from the economical, environmental, political, and technological points of view. The possibility of storing a large amount of utilizable energy in a comparatively small volume would make a number of non-conventional intermittent energy sources of practical convenience and cost. The second aspect is related to huge increase in international relationships between researchers and exchanges of results make considerable progress between scientists; one find many institutes joined in common search programs such as the material science networks organized by EEC in the European countries.
Christian Köhler covers the connection between μC and simulation, the interface abstraction as well as the analysis and optimization of coupling systems with the Chip-Hardware-in-the-Loop Simulation (CHILS) approach. He develops the hardware to simulation coupling system with a focus on less hardware effort, the capabilities to couple with different simulation environments, and the efficiency of coupling. Furthermore, the author presents existing concepts to simulate complex systems and compares them with the new approach.
Goal! covers the history of the beautiful game from its origins in English public schools in the early 19th century to its current role as a crucial element of a globalized entertainment industry. The authors explain how football transformed from a sport at elite boarding schools in England to become a pastime popular with the working classes, enabling factories such as the Thames Iron Works and the Woolwich Arsenal to give birth to the teams that would become the Premier League mainstays known as West Ham United and Arsenal. They also explore how the age of amateur soccer ended and, with the advent of professionalism, how football became a sport dominated by big clubs with big money and with an international audience.
This issue is centered on emergency situations and complications brought about by high fevers. Guest edited by Emilie Calvello and Christian Theodosis, this issue focuses on topics such as: Approach to Dangerous Fever in the Emergency Department, Fever in the Returning Traveler, Drug Induced Hyperthermic Syndromes Part I: Hyperthermia in Overdose, Drug Induced Hyperthermic Syndromes Part II: Hyperthermia caused by drug interactions, withdrawal syndromes, and idiopathic mechanisms, Fever and Signs of Shock, Fever and Neurologic Abnormalities, Fever and Endocrine Derangements, and Fever in the Post Procedure Patient.
Lobbying is an integral part of the political reality of the European Union and a highly competitive and dynamic field of interest groups. This book takes a systematic look at lobbyists in order to broaden our understanding of the staff entrusted with the responsibility of influencing European politics. Who are the European lobbyists? What are their professional backgrounds, career patterns, practices, and beliefs? The study uses a sociological framework to explore the professionalisation and professionalism of the field across national proveniences, policy fields and interest groups, and develops a systematic analysis that considers three different dimensions: occupational patterns, shared knowledge and common convictions. Based on original research that combines in- depth interviews with survey data, European Lobbying demonstrates that European lobbying is a firmly established and highly professionalised métier. In an organisational field characterised by growth, pluralisation and increasing competition, the professional staff contributes to the homogenisation of European lobbying and the marginalisation of other, non- professionalised forms of interest representation. It will therefore appeal to scholars and students of sociology and politics with interest in European studies, European Union politics and the sociology of the professions. The Open Access version of this book, available at http://www.taylorfrancis.com, has been made available under a Creative Commons [Attribution-Non Commercial-No Derivatives (CC-BY-NC-ND)] 4.0 license
This book presents photoelectron spectroscopy as a valuable method for studying the electronic structures of various solid materials in the bulk state, on surfaces, and at buried interfaces. This second edition introduces the advanced technique of high-resolution and high-efficiency spin- and momentum-resolved photoelectron spectroscopy using a novel momentum microscope, enabling high-precision measurements down to a length scale of some tens of nanometers. The book also deals with fundamental concepts and approaches to applying this and other complementary techniques, such as inverse photoemission, photoelectron diffraction, scanning tunneling spectroscopy, as well as photon spectroscopy based on (soft) x-ray absorption and resonance inelastic (soft) x-ray scattering. This book is the ideal tool to expand readers’ understanding of this marvelously versatile experimental method, as well as the electronic structures of metals and insulators.
This book provides a tutorial on quantum communication networks. The authors discuss current paradigm shifts in communication networks that are needed to add computing and storage to the simple transport ideas of prevailing networks. They show how these ‘softwarized’ solutions break new grounds to reduce latency and increase resilience. The authors discuss how even though these solutions have inherent problems due to introduced computing latency and energy consumption, the problems can be solved by hybrid classical-quantum communication networks. The book brings together quantum networking, quantum information theory, quantum computing, and quantum simulation.
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