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[1] Michael Westdickenberg. Euler-Lagrange equation for a minimization problem over monotone transport maps. Quart. Appl. Math. 75 (2017) 267-285.
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[2] Jean Dolbeault, Clément Mouhot and Christian Schmeiser. Hypocoercivity for linear kinetic equations conserving mass. Trans. Amer. Math. Soc. 367 (2015) 3807-3828.
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[3] M. Escobedo and J. J. L. Velázquez. Local well posedness for a linear coagulation equation. Trans. Amer. Math. Soc. 365 (2013) 1743-1808.
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[4] Ming-Ying Zhong and Hai-Liang Li. Long time behavior of the Fokker-Planck-Boltzmann equation with soft potential. Quart. Appl. Math. 70 (2012) 721-742. MR 3052087.
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[5] Philip T. Gressman and Robert M. Strain. Global classical solutions of the Boltzmann equation without angular cut-off. J. Amer. Math. Soc. 24 (2011) 771-847. MR 2784329.
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[6] Francis Filbet and Clément Mouhot. Analysis of spectral methods for the homogeneous Boltzmann equation. Trans. Amer. Math. Soc. 363 (2011) 1947-1980. MR 2746671.
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[7] Manuel Portilheiro and Athanasios E. Tzavaras. Hydrodynamic limits for kinetic equations and the diffusive approximation of radiative transport for acoustic waves. Trans. Amer. Math. Soc. 359 (2007) 529-565. MR 2255185.
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[8] Giovanni Manfredi. How to model quantum plasmas. Fields Institute Communications 46 (2005) 263-287.
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[9] Thierry Passot, Catherine Sulem and Pierre-Louis Sulem (Editors). Topics in Kinetic Theory. Fields Institute Communications 46 (2005) MR MR2183956.
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[10] W. Tang. Introduction to gyrokinetic theory with applications in magnetic confinement research in plasma physics. Fields Institute Communications 46 (2005) 193-211.
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[11] I. Goldhirsch. Inelastic kinetic theory: The granular gas. Fields Institute Communications 46 (2005) 289-312.
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[12] Yves Elskens. Irreversible behaviours in Vlasov equation and many-body Hamiltonian dynamics: Landau damping, chaos and granularity. Fields Institute Communications 46 (2005) 89-108.
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[13] François Golse and C. Levermore. Hydrodynamic limits of kinetic models. Fields Institute Communications 46 (2005) 1-75.
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[14] Robert Glassey. Collisionless plasmas and the Vlasov Maxwell system. Fields Institute Communications 46 (2005) 77-88.
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[15] Alain Brizard. Variational formulations of exact and reduced Vlasov-Maxwell equations. Fields Institute Communications 46 (2005) 151-170.
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[16] A. Smolyakov, M. Yagi and J. Callen. Nonlocal closures in long mean free path regimes. Fields Institute Communications 46 (2005) 243-261.
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[17] P. Sulem. Introduction to the guiding center theory. Fields Institute Communications 46 (2005) 109-149.
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[18] H. Qin. A short introduction to general gyrokinetic theory. Fields Institute Communications 46 (2005) 171-192.
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[19] T. Passot. From kinetic to fluid descriptions of plasmas. Fields Institute Communications 46 (2005) 213-242.
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[20] D. Aregba-Driollet, R. Natalini and S. Tang. Explicit diffusive kinetic schemes for nonlinear degenerate parabolic systems. Math. Comp. 73 (2004) 63-94. MR 2034111.
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[21] Nicolas Fournier and Sylvie Méléard. A stochastic particle numerical method for 3D Boltzmann equations without cutoff. Math. Comp. 71 (2002) 583-604. MR 1885616.
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[22] L. Preziosi and L. Rondoni. Conservative energy discretization of Boltzmann collision operator. Quart. Appl. Math. 57 (1999) 699-721. MR MR1724301.
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[23] Robert Peszek. Instability and stability of numerical approximations to discrete velocity models of the Boltzmann equation. Quart. Appl. Math. 54 (1996) 777-791. MR MR1417239.
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[24] Christian Lécot. A quasi-Monte Carlo method for the Boltzmann equation . Math. Comp. 56 (1991) 621-644. MR 1068812.
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Results: 1 to 24 of 24 found      Go to page: 1

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