A simple mathematical model involving two first-order Ordinary Differential Equations (ODEs) with fourth-degree polynomial nonlinearities is introduced. The initial-value problem for this system of two ODEs is solved in terms of elementary functions: for an open set of initial data, this solution is isochronous, i.e., completely periodic with a fixed period (independent of the initial data); in the complementary set of initial data, it blows up at a finite time. This system is likely to be of applicative interest: for instance it models the time evolution of two chemical substances in a spatially homogeneous situation, provided this evolution is characterized by six appropriate chemical reactions whose rates are simply expressed in terms of three a priori arbitrary parameters, or alternatively by five appropriate reactions whose rates are simply expressed in terms of two a priori arbitrary parameters.

Novel rate equations describing isochronous chemical reactions / Calogero, F., F., L., M., S.. - In: JOURNAL OF MATHEMATICAL CHEMISTRY. - ISSN 0259-9791. - 49:4(2011), pp. 870-879. [10.1007/s10910-010-9784-1]

Novel rate equations describing isochronous chemical reactions

CALOGERO, Francesco;
2011

Abstract

A simple mathematical model involving two first-order Ordinary Differential Equations (ODEs) with fourth-degree polynomial nonlinearities is introduced. The initial-value problem for this system of two ODEs is solved in terms of elementary functions: for an open set of initial data, this solution is isochronous, i.e., completely periodic with a fixed period (independent of the initial data); in the complementary set of initial data, it blows up at a finite time. This system is likely to be of applicative interest: for instance it models the time evolution of two chemical substances in a spatially homogeneous situation, provided this evolution is characterized by six appropriate chemical reactions whose rates are simply expressed in terms of three a priori arbitrary parameters, or alternatively by five appropriate reactions whose rates are simply expressed in terms of two a priori arbitrary parameters.
2011
isochronous systems; oscillatory chemical reactions; rate equations
01 Pubblicazione su rivista::01a Articolo in rivista
Novel rate equations describing isochronous chemical reactions / Calogero, F., F., L., M., S.. - In: JOURNAL OF MATHEMATICAL CHEMISTRY. - ISSN 0259-9791. - 49:4(2011), pp. 870-879. [10.1007/s10910-010-9784-1]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/378277
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