On the hydrodynamic stability equation for a wake
M. M. Zdravkovich (1970)
Matematički Vesnik
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M. M. Zdravkovich (1970)
Matematički Vesnik
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Sam B. Nadler, Jr. (1973)
Colloquium Mathematicae
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Stanisław Kasprzyk (1972)
Annales Polonici Mathematici
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Leites, D. (2004)
Journal of Mathematical Sciences (New York)
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Hoever, Georg, Siedentop, Heinz (1999)
Mathematical Physics Electronic Journal [electronic only]
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Ashordia, M., Kekelia, N. (2000)
Memoirs on Differential Equations and Mathematical Physics
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Li, Weiye, Szidarovszky, Ferenc (1999)
Southwest Journal of Pure and Applied Mathematics [electronic only]
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Andreas Veeser (2010)
ESAIM: Mathematical Modelling and Numerical Analysis
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The stability of flat interfaces with respect to a spatial semidiscretization of a solidification model is analyzed. The considered model is the quasi-static approximation of the Stefan problem with dynamical Gibbs–Thomson law. The stability analysis bases on an argument developed by Mullins and Sekerka for the undiscretized case. The obtained stability properties differ from those with respect to the quasi-static model for certain parameter values and relatively coarse meshes....
John Leth, Rafael Wisniewski (2014)
International Journal of Applied Mathematics and Computer Science
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This paper deals with stability analysis of hybrid systems. Various stability concepts related to hybrid systems are introduced. The paper advocates a local analysis. It involves the equivalence relation generated by reset maps of a hybrid system. To establish a tangible method for stability analysis, we introduce the notion of a chart, which locally reduces the complexity of the hybrid system. In a chart, a hybrid system is particularly simple and can be analyzed with the use of methods...
Kekelia, N. (2000)
Memoirs on Differential Equations and Mathematical Physics
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Zenon Moszner (2016)
Annales Mathematicae Silesianae
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In the paper two types of stability and of b-stability of functional equations are distinguished.