<efrbr:recordSet xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:efrbr="http://vfrbr.info/efrbr/1.1" xmlns:efrbr-work="http://vfrbr.info/efrbr/1.1/work" xmlns:efrbr-expression="http://vfrbr.info/efrbr/1.1/expression" xmlns:efrbr-manifestation="http://vfrbr.info/efrbr/1.1/manifestation" xmlns:efrbr-person="http://vfrbr.info/efrbr/1.1/person" xmlns:efrbr-corporateBody="http://vfrbr.info/efrbr/1.1/corporateBody" xmlns:efrbr-concept="http://vfrbr.info/efrbr/1.1/concept" xmlns:efrbr-structure="http://vfrbr.info/efrbr/1.1/structure" xmlns:efrbr-responsible="http://vfrbr.info/efrbr/1.1/responsible" xmlns:efrbr-subject="http://vfrbr.info/efrbr/1.1/subject" xmlns:efrbr-other="http://vfrbr.info/efrbr/1.1/other" xsi:schemaLocation="http://vfrbr.info/efrbr/1.1 http://vfrbr.info/schemas/1.1/efrbr.xsd"><efrbr:entities><efrbr-work:work identifier="http://purl.tuc.gr/dl/dias/B5CD5C21-50D7-441F-B72C-720D0909886C"><efrbr-work:titleOfTheWork>Kinetic model of mass exchange with dynamic Arrhenius transition rates</efrbr-work:titleOfTheWork></efrbr-work:work><efrbr-expression:expression identifier="http://purl.tuc.gr/dl/dias/B5CD5C21-50D7-441F-B72C-720D0909886C"><efrbr-expression:titleOfTheExpression>Kinetic model of mass exchange with dynamic Arrhenius transition rates</efrbr-expression:titleOfTheExpression><efrbr-expression:formOfExpression vocabulary="DIAS:TYPES">
            Peer-Reviewed Journal Publication
            Δημοσίευση σε Περιοδικό με Κριτές
         </efrbr-expression:formOfExpression><efrbr-expression:dateOfExpression type="issued">2018-10-19</efrbr-expression:dateOfExpression><efrbr-expression:dateOfExpression type="published">2016</efrbr-expression:dateOfExpression><efrbr-expression:languageOfExpression vocabulary="iso639-1">en</efrbr-expression:languageOfExpression><efrbr-expression:summarizationOfContent>We study a nonlinear kinetic model of mass exchange between interacting grains. The transition rates follow the Arrhenius equation with an activation energy that depends dynamically on the grain mass. We show that the activation parameter can be absorbed in the initial conditions for the grain masses, and that the total mass is conserved. We obtain numerical solutions of the coupled, nonlinear, ordinary differential equations of mass exchange for the two-grain system, and we compare them with approximate theoretical solutions in specific neighborhoods of the phase space. Using phase plane methods, we determine that the system exhibits regimes of diffusive and growth-decay (reverse diffusion) kinetics. The equilibrium states are determined by the mass equipartition and separation nullcline curves. If the transfer rates are perturbed by white noise, numerical simulations show that the system maintains the diffusive and growth-decay regimes; however, the noise can reverse the sign of equilibrium mass difference. Finally, we present theoretical analysis and numerical simulations of a system with many interacting grains. Diffusive and growth-decay regimes are established as well, but the approach to equilibrium is considerably slower. Potential applications of the mass exchange model involve coarse-graining during sintering and wealth exchange in econophysics.</efrbr-expression:summarizationOfContent><efrbr-expression:useRestrictionsOnTheExpression type="creative-commons">http://creativecommons.org/licenses/by/4.0/</efrbr-expression:useRestrictionsOnTheExpression><efrbr-expression:note type="journal name">Physica A: Statistical Mechanics and its Applications</efrbr-expression:note><efrbr-expression:note type="journal volume">444</efrbr-expression:note><efrbr-expression:note type="page range">95-109</efrbr-expression:note></efrbr-expression:expression><efrbr-person:person identifier="http://users.isc.tuc.gr/~dchristopoulos"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Christopoulos Dionysios
            Χριστοπουλος Διονυσιος
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="http://users.isc.tuc.gr/~amuradova"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Muradova Aliki
            Muradova Aliki
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-corporateBody:corporateBody identifier="http://www.elsevier.com/"><efrbr-corporateBody:nameOfTheCorporateBody vocabulary="S/R:PUBLISHERS">
            Elsevier
         </efrbr-corporateBody:nameOfTheCorporateBody></efrbr-corporateBody:corporateBody><efrbr-concept:concept identifier="BDAF920D-A45D-45F4-85EE-B444FF7639F4"><efrbr-concept:termForTheConcept>
            Diffusion
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="77DB59F0-45AD-4D06-A1A1-3B3854706072"><efrbr-concept:termForTheConcept>
            Grain growth
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="383A509F-7E36-4085-87A9-E3C7511425DC"><efrbr-concept:termForTheConcept>
            Growth-decay
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="E52FC18B-7163-4B20-8198-0AA67B050D01"><efrbr-concept:termForTheConcept>
            Kinetic model
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="999D7808-7B1C-4F83-8FDA-4D51491F36E9"><efrbr-concept:termForTheConcept>
            Non-equilibrium process
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="3EC2A9E5-DE71-469A-B2CF-F9C4DEE99B3E"><efrbr-concept:termForTheConcept>
            Reverse diffusion
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