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  • Search: isPartOf:"Mathematics and Computers in Simulation (MATCOM)"
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Simulation 66 Stability 43 Neural networks 34 Finite element method 29 Solitons 26 Monte Carlo 23 Inverse problem 22 Optimization 22 Computer algebra 21 Monte Carlo method 21 Solitary waves 20 Chaos 19 Modelling 19 Monte Carlo simulation 19 Synchronization 18 Computer simulation 15 Domain decomposition 15 Finite volume method 15 Bifurcation 14 Convergence 14 Lattice Boltzmann method 14 Monte Carlo methods 14 Partial differential equations 14 Soliton 14 Finite elements 13 Fuzzy logic 13 GARCH 13 Numerical integration 13 Numerical simulation 13 Adaptive control 12 Bootstrap 12 Cointegration 12 Modeling 12 Optimal control 12 Sensitivity analysis 12 Genetic algorithm 11 Genetic algorithms 11 Neural network 11 Nonlinear systems 11 Parameter estimation 11
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Undetermined 4,054
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McAleer, Michael 54 Kevrekidis, P.G. 17 Oxley, Les 17 Vichnevetsky, R. 16 Mesnard, Guy 15 Tzafestas, S.G. 15 Evans, D.J. 14 Jakeman, A.J. 14 Korn, Granino A. 14 Roanes-Lozano, Eugenio 14 Chang, Chia-Lin 12 Pasadas, M. 12 Taha, Thiab R. 12 Ames, W.F. 11 Brezinski, C. 11 Laita, Luis M. 10 McKenzie, C.R. 10 Ohkita, Masaaki 10 Van Remoortere, P. 10 Al-Haddad, Kamal 8 Chan, Felix 8 Christov, C.I. 8 Hadjidimos, A. 8 Lim, Christine 8 Malomed, B.A. 8 Nedjalkov, M. 8 Sbibih, D. 8 Walter, Eric 8 Adomian, G. 7 Chan, W.S. 7 Egidi, N. 7 Frantzeskakis, D.J. 7 Hernando, Antonio 7 Kosina, H. 7 Ludu, A. 7 Maponi, P. 7 Steinberg, Stanly 7 Aiyoshi, Eitaro 6 Borne, Pierre 6 Carver, M.B. 6
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Mathematics and Computers in Simulation (MATCOM) 4,054
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DMSL — A descriptive macro simulation language
Heppner, Dierk - In: Mathematics and Computers in Simulation (MATCOM) 17 (1975) 4, pp. 270-276
DMSL is a new digital simulation language to describe continuous systems. Its purpose is fast interactive simulation on single- and multi-processor-systems. Good readability of the problem description and a strict division between algorithmic and descriptive parts of the language are the main...
Persistent link: https://www.econbiz.de/10011050916
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Hybrid computer inversion of the prandtl — meyer function
Day, J.D. - In: Mathematics and Computers in Simulation (MATCOM) 18 (1976) 4, pp. 201-203
In gas dynamics it is frequently necessary to solve for Mach number for a given Prandtl-Meyer angle from the well known Prandtl-Meyer function. Analytical methods are possible only for special cases o f the ratio o f specific heats. In this note a hybrid computer method for solving this problem...
Persistent link: https://www.econbiz.de/10011050919
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Separate and/or simultaneous generations of non-linear functions inherent in non-ohmic resistivities
Kobayashi∗, Yasuhiro; Ohkita, Masaaki; Inoue, Michio; … - In: Mathematics and Computers in Simulation (MATCOM) 18 (1976) 1, pp. 51-61
In this paper, it is described that a multiple-function generator can be realized without employing any separate function-generating units and selector-logics. According to this proposal, a uniformly continuous non-linearity o f a non-ohmic resistance is first expressed by a linear combination...
Persistent link: https://www.econbiz.de/10011050920
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Etude du champ magnetique dans des toles ferromagnetiques au moyen d'un calculateur analogique
Ana Necula, Maria; Spinei, Fänicä - In: Mathematics and Computers in Simulation (MATCOM) 14 (1972) 3, pp. 149-151
Le phénomène de pénétration du champ magnétique dans des tôles conductrices ferromagnétiques est décrit par une équation aux dérivées partielles, dont la simulation sur calculateur analogique permet l'étude aisée dans des cas linéaires ou non.
Persistent link: https://www.econbiz.de/10011050925
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Comparison of some fourth order difference schemes for hyperbolic problems
Gary, John - In: Mathematics and Computers in Simulation (MATCOM) 17 (1975) 3, pp. 192-194
Our purpose is the comparison of a few difference schemes for application to hyperbolic equations such as those found in computational fluid dynamics. In order to provide a valid comparison we will use the optimal time-step Δt and mesh spacing Δx to achieve a preassigned accuracy. This means...
Persistent link: https://www.econbiz.de/10011050945
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Utilisation du calcul analogique repetitif a la resolution de l'equation de Schrodinger dans le cas d'un puits de potentiel quelconque
Forestier, Christian; Mesnard, Guy - In: Mathematics and Computers in Simulation (MATCOM) 14 (1972) 4, pp. 183-190
La résolution de l'équation de Schrödinger à une dimension sur calculateur analogique présente des difficultéa, du fait de la nécessité de rechercher les valeurs propres de l'énergie. Dans le cas général, ni les conditions initiales, ni les conditions finales ne peuvent être...
Persistent link: https://www.econbiz.de/10011050947
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The hybrid computer for automatic control
Noda, Katsuhiko; Tsuji, Saburo; Sugie, Noboru - In: Mathematics and Computers in Simulation (MATCOM) 5 (1963) 2, pp. 75-79
The control computer named ETL-RTC aimed at studying computer control is described. Several questions regarding «computer control are discussed, and the hybrid type computing system is recommended as the most suitable one from nowadays engineering standpoint. The features and details of RTC are...
Persistent link: https://www.econbiz.de/10011050950
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La representation analogique des champs harmoniques tridimensionnels indefinis et son application au champ electrique cardiaque
Malavard, L.; Renard, G.; Rohner, J.J. - In: Mathematics and Computers in Simulation (MATCOM) 14 (1972) 2, pp. 65-69
La représentation analogique des champs harmoniques indefinis set facilement réalisée à deux dimensions par l'emploi du principe d'inversion. Pour les champs tridimensionnels, les auteurs proposent une technique basés sur l'emploi de bassins successifs de dimensions réduites. Cette...
Persistent link: https://www.econbiz.de/10011050955
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A special function generator:The frequency programming system for the 25 GeV C.E.R.N. proton synchrotron
Germain, P.; Schmelzer, C.; Schnell, W.; Susini, A. - In: Mathematics and Computers in Simulation (MATCOM) 1 (1959) 6, pp. 290-297
In a synchrotron the relation between the intensity of the magnetic guide field B and thefrequency f of the accelerating radio frequency field is of the form f (B) = f∞B (B2+Bo2)−1/2 for particle motion at constant mean orbit radius. A function generator is decribed in which a voltage V′...
Persistent link: https://www.econbiz.de/10011050958
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Methode generale de calcul de systems lineaires en oscillation forcee a partir de considerations energetiques
Alais, Pierre - In: Mathematics and Computers in Simulation (MATCOM) 9 (1967) 4, pp. 182-187
La simulation analogique d'un système linéaire discret en oscillation forcée peut être effectuée, selon les principes exposés dans cet article, sans écrire les équations qui régissent le système mais directement à partir des caractéristiques énergétiques de chaque élément du...
Persistent link: https://www.econbiz.de/10011050973
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