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  • Search: subject:"Reaction networks"
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Year of publication
Subject
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Reaction networks 2 Array-RQMC 1 Autocatalytic reaction networks 1 Biochemical reaction networks 1 Chemical industry 1 Chemical reaction networks 1 Chemieindustrie 1 Economic dynamics 1 Evolutionary systems 1 Gillespie 1 Markov chain 1 Markov-Kette 1 Monte Carlo simulation 1 Monte-Carlo-Simulation 1 Multiplicities 1 Non-linear dynamics 1 Passivity based control 1 Simulation 1 Stochastic process 1 Stochastischer Prozess 1 Theorie 1 Theory 1 Thermodynamics 1 chemical organization theory 1 constructive dynamical systems 1 continuous-time Markov chains 1 extinction threshold 1 limit sets 1 long-term behavior 1 metadynamics 1 parabolic growth 1 quasi-Monte Carlo 1 stochastic biological systems 1 tau-leaping 1 variance reduction 1
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Online availability
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Undetermined 3 Free 1
Type of publication
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Article 3 Book / Working Paper 2
Type of publication (narrower categories)
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Arbeitspapier 1 Graue Literatur 1 Non-commercial literature 1 Working Paper 1
Language
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Undetermined 4 English 1
Author
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Alonso, Antonio A. 1 Ben Abdellah, Amal 1 DITTRICH, PETER 1 Hangos, Katalin M. 1 Kaneko, K. 1 L'Ecuyer, Pierre 1 Otero-Muras, Irene 1 PETER, STEPHAN 1 Ponzi, A. 1 Puchhammer, Florian 1 Stadler, Bårbel M. R. 1 Stadler, Peter F. 1 Szederkényi, Gábor 1 Wills, Peter R. 1 Yasutomi, A. 1
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Institution
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Santa Fe Institute 1
Published in...
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Advances in Complex Systems (ACS) 1 Les cahiers du GERAD 1 Mathematics and Computers in Simulation (MATCOM) 1 Physica A: Statistical Mechanics and its Applications 1 Working Papers / Santa Fe Institute 1
Source
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RePEc 4 ECONIS (ZBW) 1
Showing 1 - 5 of 5
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Variance reduction with array-RQMC for Tau-Leaping simulation of stochastic biological and chemical reaction networks
Puchhammer, Florian; Ben Abdellah, Amal; L'Ecuyer, Pierre - 2021
Persistent link: https://www.econbiz.de/10012599478
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ON THE RELATION BETWEEN ORGANIZATIONS AND LIMIT SETS IN CHEMICAL REACTION SYSTEMS
PETER, STEPHAN; DITTRICH, PETER - In: Advances in Complex Systems (ACS) 14 (2011) 01, pp. 77-96
Chemical organization theory has been suggested as a new approach to analyze complex reaction networks. Concerning the …
Persistent link: https://www.econbiz.de/10008829635
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Dynamic analysis and control of biochemical reaction networks
Otero-Muras, Irene; Szederkényi, Gábor; Hangos, Katalin M. - In: Mathematics and Computers in Simulation (MATCOM) 79 (2008) 4, pp. 999-1009
In the present work, we combine the concepts and tools from Irreversible Thermodynamics and Control Theory in a contribution to unravel the origin of complex nonlinear behaviour in biochemical networks. Regarding cells as thermodynamic systems, we can consider dynamic evolution of intracellular...
Persistent link: https://www.econbiz.de/10011050367
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A non-linear model of economic production processes
Ponzi, A.; Yasutomi, A.; Kaneko, K. - In: Physica A: Statistical Mechanics and its Applications 324 (2003) 1, pp. 372-379
We present a new two phase model of economic production processes which is a non-linear dynamical version of von Neumann's neoclassical model of production, including a market price-setting phase as well as a production phase. The rate of an economic production process is observed, for the first...
Persistent link: https://www.econbiz.de/10010591753
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Evolution in Systems of Ligation-Based Replicators
Stadler, Bårbel M. R.; Stadler, Peter F.; Wills, Peter R. - Santa Fe Institute - 2001
The population dynamics of macromolecules that reproduce by means of template-directed ligation of two fragments are shown to be represented by a replicator equation with a special non-linear response function. This result is obtained through detailed consideration of the mechanism of ligation...
Persistent link: https://www.econbiz.de/10005790721
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