On the Liouville integrability of Edelstein's reaction system in \(\mathbb R^3\)
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Publication:1754495
DOI10.1016/j.chaos.2018.01.029zbMath1390.34091OpenAlexW2789786727WikidataQ64004728 ScholiaQ64004728MaRDI QIDQ1754495
Claudia Valls, Carsten Wiuf, Antoni Ferragut
Publication date: 31 May 2018
Published in: Chaos, Solitons and Fractals (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.chaos.2018.01.029
Classical flows, reactions, etc. in chemistry (92E20) Symmetries, invariants of ordinary differential equations (34C14)
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- Oscillations in biochemical reaction networks arising from pairs of subnetworks
- Sustained oscillations in the MAP kinase cascade
- Global injectivity and multiple equilibria in uni- and bi-molecular reaction networks
- Seeking Darboux polynomials
- On the Darboux integrability of a cubic CRN model in \(\mathbb R^5\)
- Chemical mechanism structure and the coincidence of the stoichiometric and kinetie subspaces
- On the complete integrability of the Raychaudhuri differential system in \(\mathbb {R}^4\) and of a CRNT model in \(\mathbb {R}^5\)
- On the Darboux integrability of polynomial differential systems
- Preclusion of switch behavior in networks with mass-action kinetics
- Planar quasi-homogeneous polynomial differential systems and their integrability
- Quadratic first integrals of kinetic differential equations
- A Petri net approach to the study of persistence in chemical reaction networks
- Qualitative theory of planar differential systems
- Liouvillian and Analytic First Integrals for the Brusselator System
- The Dynamics of Weakly Reversible Population Processes near Facets
- Analytic integrability of quadratic–linear polynomial differential systems
- Liouvillian First Integrals of Differential Equations
- Conservation Laws in Biochemical Reaction Networks
- Multiple Equilibria in Complex Chemical Reaction Networks: I. The Injectivity Property
- PMatrix Properties, Injectivity, and Stability in Chemical Reaction Systems
- Chaotic Dynamics
- Reduction of Singularities of the Differential Equation Ady = Bdx
- DIFFERENTIAL EQUATIONS ON GRAPHS