How Far is Complex Balancing from Detailed Balancing?
We clarify the relation between the algebraic conditions that must be satisfied by the reaction constants in general (mass-action) kinetics systems for the existence of detailed or complex balancing equilibria. These systems have a wide range of applications in chemistry and biology. Their main prop...
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Acceso en línea: | http://hdl.handle.net/20.500.12110/paper_00928240_v73_n4_p811_Dickenstein |
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todo:paper_00928240_v73_n4_p811_Dickenstein2023-10-03T14:55:19Z How Far is Complex Balancing from Detailed Balancing? Dickenstein, A. Millán, M.P. Complex balancing Detailed balancing General kinetics Mass action algorithm article biological model chemical model kinetics metabolism physiology Algorithms Kinetics Metabolic Networks and Pathways Models, Biological Models, Chemical We clarify the relation between the algebraic conditions that must be satisfied by the reaction constants in general (mass-action) kinetics systems for the existence of detailed or complex balancing equilibria. These systems have a wide range of applications in chemistry and biology. Their main properties have been set by Horn, Jackson and Feinberg. We expect to extend our point of view to the study of qualitative features of the dynamical behavior of chemical interactions in molecular systems biology. © 2010 Society for Mathematical Biology. Fil:Dickenstein, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Millán, M.P. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00928240_v73_n4_p811_Dickenstein |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
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Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
Complex balancing Detailed balancing General kinetics Mass action algorithm article biological model chemical model kinetics metabolism physiology Algorithms Kinetics Metabolic Networks and Pathways Models, Biological Models, Chemical |
spellingShingle |
Complex balancing Detailed balancing General kinetics Mass action algorithm article biological model chemical model kinetics metabolism physiology Algorithms Kinetics Metabolic Networks and Pathways Models, Biological Models, Chemical Dickenstein, A. Millán, M.P. How Far is Complex Balancing from Detailed Balancing? |
topic_facet |
Complex balancing Detailed balancing General kinetics Mass action algorithm article biological model chemical model kinetics metabolism physiology Algorithms Kinetics Metabolic Networks and Pathways Models, Biological Models, Chemical |
description |
We clarify the relation between the algebraic conditions that must be satisfied by the reaction constants in general (mass-action) kinetics systems for the existence of detailed or complex balancing equilibria. These systems have a wide range of applications in chemistry and biology. Their main properties have been set by Horn, Jackson and Feinberg. We expect to extend our point of view to the study of qualitative features of the dynamical behavior of chemical interactions in molecular systems biology. © 2010 Society for Mathematical Biology. |
format |
JOUR |
author |
Dickenstein, A. Millán, M.P. |
author_facet |
Dickenstein, A. Millán, M.P. |
author_sort |
Dickenstein, A. |
title |
How Far is Complex Balancing from Detailed Balancing? |
title_short |
How Far is Complex Balancing from Detailed Balancing? |
title_full |
How Far is Complex Balancing from Detailed Balancing? |
title_fullStr |
How Far is Complex Balancing from Detailed Balancing? |
title_full_unstemmed |
How Far is Complex Balancing from Detailed Balancing? |
title_sort |
how far is complex balancing from detailed balancing? |
url |
http://hdl.handle.net/20.500.12110/paper_00928240_v73_n4_p811_Dickenstein |
work_keys_str_mv |
AT dickensteina howfariscomplexbalancingfromdetailedbalancing AT millanmp howfariscomplexbalancingfromdetailedbalancing |
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1807324352846233600 |