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Scientific Computing in Electrical Engineering SCEE 2010

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Cover of 'Scientific Computing in Electrical Engineering SCEE 2010'

Table of Contents

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    Book Overview
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    Chapter 1 Sparse Matrix Methods for Circuit Simulation Problems
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    Chapter 2 Some Remarks on A Priori Error Estimation for ESVDMOR
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    Chapter 3 Block Preconditioning Strategies for High Order Finite Element Discretization of the Time-Harmonic Maxwell Equations
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    Chapter 4 From Sizing over Design Centering and Pareto Optimization to Tolerance Pareto Optimization of Electronic Circuits
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    Chapter 5 Importance Sampling for Determining SRAM Yield and Optimization with Statistical Constraint
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    Chapter 6 Effective Numerical Computation of Parameter Dependent Problems
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    Chapter 7 Analytical Properties of Circuits with Memristors
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    Chapter 8 Scattering Problems in Periodic Media with Local Perturbations
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    Chapter 9 From Quasi-static to High Frequencies : An Overview of Numerical Simulation at EADS
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    Chapter 10 Transient Full Maxwell Computation of Slow Processes
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    Chapter 11 A Frequency-Robust Solver for the Time-Harmonic Eddy Current Problem
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    Chapter 12 Depolarization of Electromagnetic Waves from Bare Soil Surfaces
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    Chapter 13 Two Finite-Element Thin-Sheet Approaches in the Electro-Quasistatic Formulation
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    Chapter 14 Mode Selecting Eigensolvers for 3D Computational Models
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    Chapter 15 Magnetic Model Refinement via a Coupling of Finite Element Subproblems
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    Chapter 16 Substrate Modeling Based on Hierarchical Sparse Circuits
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    Chapter 17 A Boundary Conformal DG Approach for Electro-Quasistatics Problems
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    Chapter 18 Optimization of the Current Density Distribution in Electrochemical Reactors
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    Chapter 19 Streamer Line Modeling
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    Chapter 20 A Discontinuous Galerkin Formalism to Solve the Maxwell-Vlasov Equations. Application to High Power Microwave Sources
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    Chapter 21 Tonti Diagrams and Algebraic Methods for the Solution of Coupled Problems
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    Chapter 22 Soliton Collision in Biomembranes and Nerves- A Stability Study
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    Chapter 23 Nonlinear Characterization and Simulation of Zinc-Oxide Surge Arresters
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    Chapter 24 Behavioural Electro-Thermal Modelling of SiC Merged PiN Schottky Diodes
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    Chapter 25 A Convergent Iteration Scheme for Semiconductor/Circuit Coupled Problems
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    Chapter 26 Multirate Time Integration of Field/Circuit Coupled Problems by Schur Complements
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    Chapter 27 Advances in Parallel Transistor-Level Circuit Simulation
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    Chapter 28 Sensitivity-Based Steady-State Mismatch Analysis for RF Circuits
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    Chapter 29 Modelling and Simulation of Forced Oscillators with Random Periods
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    Chapter 30 Initialization of HB Oscillator Analysis from Transient Data
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    Chapter 31 Robust Periodic Steady State Analysis of Autonomous Oscillators Based on Generalized Eigenvalues
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    Chapter 32 Mutual Injection Locking of Oscillators under Parasitic Couplings
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    Chapter 33 Time Domain Simulation of Power Systems with Different Time Scales
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    Chapter 34 Scientific Computing in Electrical Engineering SCEE 2010
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    Chapter 35 Modeling and Simulation of Organic Solar Cells
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    Chapter 36 Numerical Simulation of a Hydrodynamic Subband Model for Semiconductors Based on the Maximum Entropy Principle
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    Chapter 37 Inverse Doping Profile of MOSFETs via Geometric Programming
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    Chapter 38 Numerical Simulation of Semiconductor Devices by the MEP Energy-Transport Model with Crystal Heating
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    Chapter 39 Challenges in Model Order Reduction for Industrial Problems
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    Chapter 40 On Approximate Reduction of Multi-Port Resistor Networks
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    Chapter 41 Improving Model-Order Reduction Methods by Singularity Exclusion
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    Chapter 42 Partitioning-Based Reduction of Circuits with Mutual Inductances
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    Chapter 43 Model Order Reduction of Parameterized Nonlinear Systems by Interpolating Input-Output Behavior
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    Chapter 44 On the Selection of Interpolation Points for Rational Krylov Methods
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    Chapter 45 Discrete Empirical Interpolation in POD Model Order Reduction of Drift-Diffusion Equations in Electrical Networks
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    Chapter 46 Model Order Reduction for Complex High-Tech Systems
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    Chapter 47 Parametric Model Order Reduction by Neighbouring Subspaces
Overall attention for this book and its chapters
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Mentioned by

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1 tweeter

Citations

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6 Dimensions

Readers on

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64 Mendeley
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Title
Scientific Computing in Electrical Engineering SCEE 2010
Published by
arXiv, April 2016
DOI 10.1007/978-3-642-22453-9
ISBNs
978-3-64-222452-2, 978-3-64-222453-9
Authors

Kai Bittner, Emira Dautbegovic

Editors

Michielsen, Bastiaan, Poirier, Jean-René

Twitter Demographics

The data shown below were collected from the profile of 1 tweeter who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 64 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 2%
Unknown 63 98%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 5%
Professor > Associate Professor 1 2%
Student > Ph. D. Student 1 2%
Student > Doctoral Student 1 2%
Unknown 58 91%
Readers by discipline Count As %
Engineering 2 3%
Earth and Planetary Sciences 2 3%
Neuroscience 1 2%
Environmental Science 1 2%
Unknown 58 91%

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 27 April 2016.
All research outputs
#12,847,518
of 14,545,878 outputs
Outputs from arXiv
#429,172
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Outputs of similar age
#218,965
of 261,444 outputs
Outputs of similar age from arXiv
#13,741
of 15,876 outputs
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So far Altmetric has tracked 555,772 research outputs from this source. They receive a mean Attention Score of 3.9. This one is in the 1st percentile – i.e., 1% of its peers scored the same or lower than it.
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We're also able to compare this research output to 15,876 others from the same source and published within six weeks on either side of this one. This one is in the 1st percentile – i.e., 1% of its contemporaries scored the same or lower than it.