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  1. Laplacian growth without surface tension in filtration combustion: Analytical pole solution.Oleg Kupervasser - 2016 - Complexity 21 (5):31-42.
    Filtration combustion is described by Laplacian growth without surface tension. These equations have elegant analytical solutions that replace the complex integro-differential motion equations by simple differential equations of pole motion in a complex plane. The main problem with such a solution is the existence of finite time singularities. To prevent such singularities, nonzero surface tension is usually used. However, nonzero surface tension does not exist in filtration combustion, and this destroys the analytical solutions. However, a more elegant approach exists for (...)
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  • Allostatic load as a complex clinical construct: A case-based computational modeling approach.J. Galen Buckwalter, Brian Castellani, Bruce Mcewen, Arun S. Karlamangla, Albert A. Rizzo, Bruce John, Kyle O'donnell & Teresa Seeman - 2016 - Complexity 21 (S1):291-306.
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  • Cases, clusters, densities: Modeling the nonlinear dynamics of complex health trajectories.Brian Castellani, Rajeev Rajaram, Jane Gunn & Frances Griffiths - 2016 - Complexity 21 (S1):160-180.
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  • Evolution equation for thermodynamic systems with correlated states.Sophia R. Figarova & Vagif R. Figarov - 2016 - Complexity 21 (2):162-165.
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