1. Mario Coutino, Geert Leus, 2019 IEEE Data Science Workshop (DSW), 2019, 115  crossref
  2. Luiz Henrique Dore, Borko Stosic, “Population persistence in Cayley trees”, Annali di Matematica, 198:1 (2019), 263  crossref
  3. Haotian Li, Naoki Saito, Yue M. Lu, Manos Papadakis, Dimitri Van De Ville, Wavelets and Sparsity XVIII, 2019, 56  crossref
  4. Gregory S. Yablonsky, P. Daniel Branco, Guy B. Marin, Denis Constales, “Conservatively Perturbed Equilibrium (CPE) in chemical kinetics”, Chemical Engineering Science, 196 (2019), 384  crossref
  5. Z. A. Khamidullina, A. S. Ismagilova, S. I. Spivak, “Programmnaya realizatsiya algoritma opredeleniya kineticheskogo uravneniya khimicheskoi reaktsii”, Zhurnal SVMO, 20:1 (2018), 96–102  mathnet  crossref  elib
  6. Fatma Mohamed, Casian Pantea, Adrian Tudorascu, “Chemical reaction-diffusion networks: convergence of the method of lines”, J Math Chem, 56:1 (2018), 30  crossref
  7. Antoni Ferragut, Claudia Valls, Carsten Wiuf, “On the Liouville integrability of Edelstein's reaction system in R3”, Chaos, Solitons & Fractals, 108 (2018), 129  crossref
  8. Daniel Andras Drexler, Ilona Nagy, Valery Romanovski, Janos Toth, Levente Kovacs, 2018 IEEE 18th International Symposium on Computational Intelligence and Informatics (CINTI), 2018, 000329  crossref
  9. Analysis and Control of Polynomial Dynamic Models with Biological Applications, 2018, 139  crossref
  10. Analysis and Control of Polynomial Dynamic Models with Biological Applications, 2018, 155  crossref
  11. György Lipták, Katalin M. Hangos, Mihály Pituk, Gábor Szederkényi, “Semistability of complex balanced kinetic systems with arbitrary time delays”, Systems & Control Letters, 114 (2018), 38  crossref
  12. Adam Mahdi, Antoni Ferragut, Claudia Valls, Carsten Wiuf, “Conservation Laws in Biochemical Reaction Networks”, SIAM J. Appl. Dyn. Syst., 16:4 (2017), 2213  crossref
  13. Denis Constales, Gregory S. Yablonsky, Dagmar R. D'hooge, Joris W. Thybaut, Guy B. Marin, Advanced Data Analysis & Modelling in Chemical Engineering, 2017, 35  crossref
  14. Antonio A. Alonso, Gábor Szederkényi, “Uniqueness of feasible equilibria for mass action law (MAL) kinetic systems”, Journal of Process Control, 48 (2016), 41  crossref
  15. Roland Tóbiás, László L. Stacho, Gyula Tasi, “First-order chemical reaction networks I: theoretical considerations”, J Math Chem, 54:9 (2016), 1863  crossref
  16. T. A. Tamba, E. Ekawati, AIP Conference Proceedings, 1723, 2016, 030020  crossref
  17. Attila Gábor, Katalin M. Hangos, Gábor Szederkényi, “Linear conjugacy in biochemical reaction networks with rational reaction rates”, J Math Chem, 54:8 (2016), 1658  crossref
  18. Elisenda Feliu, “Injectivity, multiple zeros and multistationarity in reaction networks”, Proc. R. Soc. A., 471:2173 (2015), 20140530  crossref
  19. Gordon D. Plotkin, Lecture Notes in Computer Science, 8000, In Search of Elegance in the Theory and Practice of Computation, 2013, 445  crossref
  20. Gilles Gnacadja, “Reachability, persistence, and constructive chemical reaction networks (part I): reachability approach to the persistence of chemical reaction networks”, J Math Chem, 2011  crossref  mathscinet
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