5 citations · 11 across the 6 of their papers we have counts for
8 papers · 1 filter
Independent, Incidence Independent and Weakly Reversible Decompositions of Chemical Reaction Networks
Bryan S. Hernandez, Deza A. Amistas, Ralph John L. De la Cruz +3
Chemical reaction networks (CRNs) are directed graphs with reactant or product complexes as vertices, and reactions as arcs. A CRN is weakly reversible if each of its connected com…
Positive Equilibria of Hill-Type Kinetic Systems
Bryan S. Hernandez, Eduardo R. Mendoza
This work introduces a novel approach to study properties of positive equilibria of a chemical reaction network endowed with Hill-type kinetics , called a Hill-typ…
A Computational Approach to Multistationarity in Poly-PL Kinetic Systems
Daryl M. Magpantay, Bryan S. Hernandez, Aurelio A. de los Reyes +2
One important question that interests those who work in chemical reaction network theory (CRNT) is this: Does the system obtained from a reaction network admit a positive equilibri…
Absolute concentration robustness in power law kinetic systems
Noel T. Fortun, Eduardo R. Mendoza
Absolute concentration robustness (ACR) is a condition wherein a species in a chemical kinetic system possesses the same value for any positive steady state the network may admit r…
Chemical reaction network decompositions and realizations of S-systems
Honeylou F. Farinas, Eduardo R. Mendoza, Angelyn R. Lao
This paper presents novel decomposition classes of chemical reaction networks (CRNs) derived from S-system kinetics. Based on the network decomposition theory initiated by Feinberg…
Fundamental Decompositions and Multistationarity of Power-Law Kinetic Systems
Bryan S. Hernandez, Eduardo R. Mendoza, Aurelio A. de los Reyes
The fundamental decomposition of a chemical reaction network (also called its "-decomposition") is the set of subnetworks generated by the partition of its set of reac…