activity
20192024
most citedA computational approach to concentration robustness in power law kinetic systems of Shinar-Feinberg type

3 citations · 3 across the 2 of their papers we have counts for

collaborators

5 papers

eess.SY2024

A reaction network approach to modeling carbon dioxide removal systems

Noel Fortun, Piolo Gaspar, Editha Jose +3

This paper focuses on what we call Reaction Network Cardon Dioxide Removal (RNDCR) framework to analyze several proposed negative emissions technologies (NETs) so as to determine w…

math.DS2024

Parameter-minimal analysis of carbon dioxide removal through direct air capture

Noel T. Fortun, Angelyn R. Lao, Eduardo R. Mendoza +1

The potential for multistationarity, or the existence of steady-state multiplicity, in the Earth System raises concerns that the planet could reach a climatic `tipping point,' rapi…

physics.chem-ph20203 cited

A computational approach to concentration robustness in power law kinetic systems of Shinar-Feinberg type

Lauro L. Fontanil, Eduardo R. Mendoza, Noel T. Fortun

There have been recent theoretic results that provide sufficient conditions for the existence of a species displaying absolute concentration robustness (ACR) in a power law kinetic…

math.DS2020

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…

math.DS2019

Robustness in power law kinetic systems with reactant-determined interactions

Noel T. Fortun, Angelyn R. Lao, Luis F. Razon +1

Robustness against the presence of environmental disruptions can be observed in many systems of chemical reaction network. However, identifying the underlying components of a syste…