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This collection of selected papers presented at the 12th International Conference on Scientific Computing in Electrical Engineering, SCEE 2018, held in Taormina, Sicily, Italy, in September 2018, showcases the state of the art in SCEE. The aim of the SCEE 2018 conference was to bring together scientists from academia and industry, mathematicians, electrical engineers, computer scientists, and physicists, and to promote intensive discussions on industrially relevant mathematical problems, with an emphasis on the modeling and numerical simulation of electronic circuits and of electromagnetic fields. This extensive reference work is divided into five parts: Computational Electromagnetics, Device Modeling and Simulation, Circuit Simulation, Mathematical and Computational Methods, Model Order Reduction. Each part starts with a general introduction, followed by the respective contributions. The book will appeal to mathematicians and electrical engineers. Further, it introduces algorithm and program developers to recent advances in the other fields, while industry experts will be introduced to new programming tools and mathematical methods.
Mathematical models. --- Computer mathematics. --- Magnetism. --- Magnetic materials. --- Electronic circuits. --- Electronics. --- Microelectronics. --- Mathematical Modeling and Industrial Mathematics. --- Computational Science and Engineering. --- Magnetism, Magnetic Materials. --- Electronic Circuits and Devices. --- Electronics and Microelectronics, Instrumentation. --- Circuits and Systems. --- Computer mathematics --- Electronic data processing --- Mathematics --- Models, Mathematical --- Simulation methods --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Electrical engineering --- Physical sciences --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Materials --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Computer science --- Mathematics.
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This book offers, from both a theoretical and a computational perspective, an analysis of macroscopic mathematical models for description of charge transport in electronic devices, in particular in the presence of confining effects, such as in the double gate MOSFET. The models are derived from the semiclassical Boltzmann equation by means of the moment method and are closed by resorting to the maximum entropy principle. In the case of confinement, electrons are treated as waves in the confining direction by solving a one-dimensional Schrödinger equation obtaining subbands, while the longitudinal transport of subband electrons is described semiclassically. Limiting energy-transport and drift-diffusion models are also obtained by using suitable scaling procedures. An entire chapter in the book is dedicated to a promising new material like graphene. The models appear to be sound and sufficiently accurate for systematic use in computer-aided design simulators for complex electron devices. The book is addressed to applied mathematicians, physicists, and electronic engineers. It is written for graduate or PhD readers but the opening chapter contains a modicum of semiconductor physics, making it self-consistent and useful also for undergraduate students.
Mathematical physics. --- Applied mathematics. --- Engineering mathematics. --- Nanotechnology. --- Mathematical Physics. --- Theoretical, Mathematical and Computational Physics. --- Mathematical and Computational Engineering. --- Metal oxide semiconductor field-effect transistors. --- Charge transfer. --- Transfer, Charge --- Collisions (Nuclear physics) --- Electron donor-acceptor complexes --- Electrons --- Ion exchange --- Mass transfer --- MOSFET --- Field-effect transistors --- Metal oxide semiconductors --- Molecular technology --- Nanoscale technology --- High technology --- Engineering --- Engineering analysis --- Mathematical analysis --- Physical mathematics --- Physics --- Mathematics
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Mathematics --- Electromagnetism. Ferromagnetism --- Electronics --- Electrical engineering --- Computer. Automation --- computers --- mathematische modellen --- wiskunde --- elektronica --- magnetisme --- micro-elektronica --- elektrische circuits
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This book offers, from both a theoretical and a computational perspective, an analysis of macroscopic mathematical models for description of charge transport in electronic devices, in particular in the presence of confining effects, such as in the double gate MOSFET. The models are derived from the semiclassical Boltzmann equation by means of the moment method and are closed by resorting to the maximum entropy principle. In the case of confinement, electrons are treated as waves in the confining direction by solving a one-dimensional Schrödinger equation obtaining subbands, while the longitudinal transport of subband electrons is described semiclassically. Limiting energy-transport and drift-diffusion models are also obtained by using suitable scaling procedures. An entire chapter in the book is dedicated to a promising new material like graphene. The models appear to be sound and sufficiently accurate for systematic use in computer-aided design simulators for complex electron devices. The book is addressed to applied mathematicians, physicists, and electronic engineers. It is written for graduate or PhD readers but the opening chapter contains a modicum of semiconductor physics, making it self-consistent and useful also for undergraduate students.
Mathematics --- Mathematical physics --- Electrical engineering --- Applied physical engineering --- toegepaste wiskunde --- nanotechniek --- economie --- wiskunde --- fysica
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This collection of selected papers presented at the 12th International Conference on Scientific Computing in Electrical Engineering, SCEE 2018, held in Taormina, Sicily, Italy, in September 2018, showcases the state of the art in SCEE. The aim of the SCEE 2018 conference was to bring together scientists from academia and industry, mathematicians, electrical engineers, computer scientists, and physicists, and to promote intensive discussions on industrially relevant mathematical problems, with an emphasis on the modeling and numerical simulation of electronic circuits and of electromagnetic fields. This extensive reference work is divided into five parts: Computational Electromagnetics, Device Modeling and Simulation, Circuit Simulation, Mathematical and Computational Methods, Model Order Reduction. Each part starts with a general introduction, followed by the respective contributions. The book will appeal to mathematicians and electrical engineers. Further, it introduces algorithm and program developers to recent advances in the other fields, while industry experts will be introduced to new programming tools and mathematical methods.
Mathematics --- Electromagnetism. Ferromagnetism --- Electronics --- Electrical engineering --- Computer. Automation --- computers --- mathematische modellen --- wiskunde --- elektronica --- magnetisme --- micro-elektronica --- elektrische circuits
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This book presents a collection of papers emphasizing applications of mathematical models and methods to real-world problems of relevance for industry, life science, environment, finance, and so on. The biannual Conference of ECMI (the European Consortium of Mathematics in Industry) held in 2014 focused on various aspects of industrial and applied mathematics. The five main topics addressed at the conference were mathematical models in life science, material science and semiconductors, mathematical methods in the environment, design automation and industrial applications, and computational finance. Several other topics have been treated, such as, among others, optimization and inverse problems, education, numerical methods for stiff pdes, model reduction, imaging processing, multi physics simulation, mathematical models in textile industry. The conference, which brought together applied mathematicians and experts from industry, provided a unique opportunity to exchange ideas, problems and methodologies, bridging the gap between mathematics and industry and contributing to the advancement of science and technology. The conference has included a presentation of EU-Maths-In (European Network of Mathematics for Industry and Innovation), a recent joint initiative of ECMI and EMS. The proceedings from this conference represent a snapshot of the current activity in industrial mathematics in Europe, and are highly relevant to anybody interested in the latest applications of mathematics to industrial problems.
Engineering mathematics --- Mathematics. --- Computer science --- Neural networks (Computer science). --- Computer mathematics. --- Mathematical models. --- Macroeconomics. --- Computational Science and Engineering. --- Mathematical Modeling and Industrial Mathematics. --- Mathematics of Computing. --- Mathematical Models of Cognitive Processes and Neural Networks. --- Mathematical and Computational Engineering. --- Macroeconomics/Monetary Economics//Financial Economics. --- Economics --- Models, Mathematical --- Simulation methods --- Computer mathematics --- Discrete mathematics --- Electronic data processing --- Artificial neural networks --- Nets, Neural (Computer science) --- Networks, Neural (Computer science) --- Neural nets (Computer science) --- Artificial intelligence --- Natural computation --- Soft computing --- Math --- Science --- Mathematics --- Computer science. --- Engineering mathematics. --- Engineering --- Engineering analysis --- Mathematical analysis --- Informatics --- Computer science—Mathematics. --- Neural networks (Computer science) . --- Applied mathematics. --- Mathematical and Computational Engineering Applications. --- Macroeconomics and Monetary Economics. --- Data processing.
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Mathematics --- Mathematical physics --- Electrical engineering --- Applied physical engineering --- toegepaste wiskunde --- nanotechniek --- economie --- wiskunde --- fysica
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