In stoichiometric network analysis (SNA) the instability condition is calculated by the current rates. Recently, we have shown that in the final result the current rates can be substituted by reaction rates, which is a more appropriate value for the examination of instability from experimental point of view. Here, we elaborate the problem of whether the current rates are necessary parameters in the calculation, with the aim of obtaining the region of instability. All calculations are performed on a model for Belousov-Zhabotinsky (BZ) reaction, which has not been examined by SNA
© 2019, Springer Nature Switzerland AG. We outline an approach to analysis of dynamics of biosystems...
Stoichiometric Network Analysis (SNA) is a powerful method that can be used to examine instabilities...
Stoichiometric network analysis is applied on the autocatalator, the model of the oscillatory chemic...
In stoichiometric network analysis (SNA) the instability condition is calculated by the current rate...
In stoichiometric network analysis (SNA) the instability condition is calculated by the current rate...
Stoichiometric network analysis (SNA), a known method for analyzing complex reaction systems includi...
Stability analysis of reaction systems is described by the application of the Stoichiometric Network...
Modeling of a complex nonlinear process whatever it describes is a serious task from mathematical po...
Reaction systems in chemistry, physical chemistry, and biochemistry, which can be described by true ...
The stoichiometric network analysis (SNA) introduced by B. L. Clarke is applied to a simplified mode...
The stoichiometric network analysis (SNA) introduced by B. L. Clarke is applied to a simplified mode...
Reaction systems in chemistry, physical chemistry, and biochemistry, which can be described by true ...
Stoichiometric Network Analysis (SNA) is a powerful method that can be used to examine instabilities...
Stoichiometric network analysis (SNA) represents a powerful mathematical tool for stability analysis...
Stoichiometric network analysis (SNA) represents a powerful mathematical tool for stability analysis...
© 2019, Springer Nature Switzerland AG. We outline an approach to analysis of dynamics of biosystems...
Stoichiometric Network Analysis (SNA) is a powerful method that can be used to examine instabilities...
Stoichiometric network analysis is applied on the autocatalator, the model of the oscillatory chemic...
In stoichiometric network analysis (SNA) the instability condition is calculated by the current rate...
In stoichiometric network analysis (SNA) the instability condition is calculated by the current rate...
Stoichiometric network analysis (SNA), a known method for analyzing complex reaction systems includi...
Stability analysis of reaction systems is described by the application of the Stoichiometric Network...
Modeling of a complex nonlinear process whatever it describes is a serious task from mathematical po...
Reaction systems in chemistry, physical chemistry, and biochemistry, which can be described by true ...
The stoichiometric network analysis (SNA) introduced by B. L. Clarke is applied to a simplified mode...
The stoichiometric network analysis (SNA) introduced by B. L. Clarke is applied to a simplified mode...
Reaction systems in chemistry, physical chemistry, and biochemistry, which can be described by true ...
Stoichiometric Network Analysis (SNA) is a powerful method that can be used to examine instabilities...
Stoichiometric network analysis (SNA) represents a powerful mathematical tool for stability analysis...
Stoichiometric network analysis (SNA) represents a powerful mathematical tool for stability analysis...
© 2019, Springer Nature Switzerland AG. We outline an approach to analysis of dynamics of biosystems...
Stoichiometric Network Analysis (SNA) is a powerful method that can be used to examine instabilities...
Stoichiometric network analysis is applied on the autocatalator, the model of the oscillatory chemic...