A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions
This paper addresses the problem of determining the capacity of a deficiency-one network, endowed with rate laws more general than mass action kinetics, to admit multiple positive steady states—that is, whether there exist rate constants such that the corresponding differential equations admit two d...
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oai:animorepository.dlsu.edu.ph:faculty_research-34792021-09-01T08:33:08Z A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions Fortun, Noel T. Mendoza, Eduardo R. Razon, Luis F. Lao, Angelyn R. This paper addresses the problem of determining the capacity of a deficiency-one network, endowed with rate laws more general than mass action kinetics, to admit multiple positive steady states—that is, whether there exist rate constants such that the corresponding differential equations admit two distinct stoichiometrically compatible steady states where all concentrations are positive. We extend the Deficiency-One Algorithm of M. Feinberg to deal with PL-RDK systems, which are kinetic systems with power-law rate functions whose kinetic orders are identical for reactions with the same reactant complex. The algorithm is applied to a power-law approximation of the Earth’s pre-industrial carbon cycle model, which gave the original motivation for our study. © 2018, Springer International Publishing AG, part of Springer Nature. 2018-11-01T07:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/2480 https://animorepository.dlsu.edu.ph/context/faculty_research/article/3479/type/native/viewcontent Faculty Research Work Animo Repository Carbon cycle (Biogeochemistry) Chemical kinetics Equilibrium Chemistry Mathematics |
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Carbon cycle (Biogeochemistry) Chemical kinetics Equilibrium Chemistry Mathematics Fortun, Noel T. Mendoza, Eduardo R. Razon, Luis F. Lao, Angelyn R. A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
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This paper addresses the problem of determining the capacity of a deficiency-one network, endowed with rate laws more general than mass action kinetics, to admit multiple positive steady states—that is, whether there exist rate constants such that the corresponding differential equations admit two distinct stoichiometrically compatible steady states where all concentrations are positive. We extend the Deficiency-One Algorithm of M. Feinberg to deal with PL-RDK systems, which are kinetic systems with power-law rate functions whose kinetic orders are identical for reactions with the same reactant complex. The algorithm is applied to a power-law approximation of the Earth’s pre-industrial carbon cycle model, which gave the original motivation for our study. © 2018, Springer International Publishing AG, part of Springer Nature. |
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text |
author |
Fortun, Noel T. Mendoza, Eduardo R. Razon, Luis F. Lao, Angelyn R. |
author_facet |
Fortun, Noel T. Mendoza, Eduardo R. Razon, Luis F. Lao, Angelyn R. |
author_sort |
Fortun, Noel T. |
title |
A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
title_short |
A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
title_full |
A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
title_fullStr |
A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
title_full_unstemmed |
A deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
title_sort |
deficiency-one algorithm for power-law kinetic systems with reactant-determined interactions |
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Animo Repository |
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2018 |
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https://animorepository.dlsu.edu.ph/faculty_research/2480 https://animorepository.dlsu.edu.ph/context/faculty_research/article/3479/type/native/viewcontent |
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