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Adaptive polynomial chaos 1 Computing 1 Convergence 1 Influenza 1 Nonstandard schemes 1 Numerical solution 1 Random differential equations 1 SIRC epidemic model 1
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Undetermined 2
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Article 2
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Arenas, Abraham J. 1 Chen-Charpentier, B.-M. 1 Cortés, J.-C. 1 González, Gilberto C. 1 Jódar, Lucas 1 Licea, J.-A. 1 Romero, J.-V. 1 Roselló, M.-D. 1 Santonja, Francisco-J. 1 Villanueva, Rafael J. 1 Villanueva, Rafael-J. 1
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Mathematics and Computers in Simulation (MATCOM) 2
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RePEc 2
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Constructing adaptive generalized polynomial chaos method to measure the uncertainty in continuous models: A computational approach
Chen-Charpentier, B.-M.; Cortés, J.-C.; Licea, J.-A.; … - In: Mathematics and Computers in Simulation (MATCOM) 109 (2015) C, pp. 113-129
Due to errors in measurements and inherent variability in the quantities of interest, models based on random differential equations give more realistic results than their deterministic counterpart. The generalized polynomial chaos (gPC) is a powerful technique used to approximate the solution of...
Persistent link: https://www.econbiz.de/10011117206
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Nonstandard numerical methods for a mathematical model for influenza disease
Jódar, Lucas; Villanueva, Rafael J.; Arenas, Abraham J.; … - In: Mathematics and Computers in Simulation (MATCOM) 79 (2008) 3, pp. 622-633
In this paper we construct and develop two competitive implicit finite difference scheme for a deterministic mathematical model associated with the evolution of influenza A disease in human population. Qualitative dynamics of the model is determined by the basic reproduction number, R0....
Persistent link: https://www.econbiz.de/10011050753
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