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Results: 1 to 25 of 25 found      Go to page: 1

[1] H. Inci, T. Kappeler and P. Topalov. On the regularity of the composition of diffeomorphisms. Memoirs of the AMS 226
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[2] Seung-Yeal Ha and Moon-Jin Kang. Fast and slow relaxations to bi-cluster configurations for the ensemble of Kuramoto oscillators. Quart. Appl. Math. 71 (2013) 707-728.
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[3] Myoungjean Bae, Gui-Qiang Chen and Mikhail Feldman. Prandtl-Meyer reflection for supersonic flow past a solid ramp. Quart. Appl. Math. 71 (2013) 583-600.
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[4] Young-Sam Kwon and Konstantina Trivisa. On the incompressible limit problems for multicomponent reactive flows. Quart. Appl. Math. 71 (2013) 37-67.
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[5] Yun-guang Lu. Resonance for the isothermal system of isentropic gas dynamics. Proc. Amer. Math. Soc. 139 (2011) 2821-2826. MR 2801623.
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[6] Seung-Yeal Ha, Corrado Lattanzio, Bruno Rubino and Marshall Slemrod. Flocking and synchronization of particle models. Quart. Appl. Math. 69 (2011) 91-103.
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[7] Gui-Qiang Chen, Marshall Slemrod and Dehua Wang. A fluid dynamic formulation of the isometric embedding problem in differential geometry. Quart. Appl. Math. 68 (2010) 73-80. MR 2598881.
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[8] Denis Serre. Von Neumann's comments about existence and uniqueness for the initial-boundary value problem in gas dynamics. Bull. Amer. Math. Soc. 47 (2010) 139-144. MR 2566448.
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[9] Cédric Villani. Hypocoercivity. Memoirs of the AMS 202 (2009) MR 2562709.
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[10] Xiaojing Xu and Hongjun Yuan. Existence of the unique strong solution for a class of non-Newtonian fluids with vacuum. Quart. Appl. Math. 66 (2008) 249-279. MR 2416773.
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[11] Shuxing Chen. Mach configuration in pseudo-stationary compressible flow. J. Amer. Math. Soc. 21 (2008) 63-100. MR 2350051.
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[12] Volker Elling. A possible counterexample to well posedness of entropy solutions and to Godunov scheme convergence. Math. Comp. 75 (2006) 1721-1733. MR 2240632.
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[13] Wen-An Yong. A note on the zero Mach number limit of compressible Euler equations. Proc. Amer. Math. Soc. 133 (2005) 3079-3085. MR 2159788.
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[14] Fumioki Asakura. Wave-front tracking for the equations of isentropic gas dynamics. Quart. Appl. Math. 63 (2005) 20-33. MR 2126567.
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[15] Shuxing Chen. Stability of transonic shock fronts in two-dimensional Euler systems. Trans. Amer. Math. Soc. 357 (2005) 287-308. MR 2098096.
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[16] Stefano Bianchini and Rinaldo M. Colombo. On the stability of the standard Riemann semigroup. Proc. Amer. Math. Soc. 130 (2002) 1961-1973. MR 1896028.
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[17] Wancheng Sheng and Tong Zhang. The Riemann problem for the transportation equations in gas dynamics. Memoirs of the AMS 137 (1999) MR 1466909.
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[18] So-Hsiang Chou and Qian Li. Mixed finite element methods for compressible miscible displacement in porous media . Math. Comp. 57 (1991) 507-527. MR 1094942.
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[19] Zhou Ping Xin. Asymptotic stability of planar rarefaction waves for viscous conservation laws in several dimensions . Trans. Amer. Math. Soc. 319 (1990) 805-820. MR 970270.
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[20] M. A. Rammaha. Formation of singularities in compressible fluids in two-space dimensions . Proc. Amer. Math. Soc. 107 (1989) 705-714. MR 984811.
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[21] Tai-ping Liu. Nonlinear stability of shock waves for viscous conservation laws. Bull. Amer. Math. Soc. 12 (1985) 233-236. MR 776475.
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[22] Jonathan B. Goodman and Randall J. LeVeque. On the accuracy of stable schemes for $2$D scalar conservation laws . Math. Comp. 45 (1985) 15-21. MR 790641.
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[23] Michael Sever. Existence in the large for Riemann problems for systems of conservation laws . Trans. Amer. Math. Soc. 292 (1985) 375-381. MR 805969.
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[24] Blake Temple. No $L\sb 1$-contractive metrics for systems of conservation laws . Trans. Amer. Math. Soc. 288 (1985) 471-480. MR 776388.
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[25] E. J. Moulton. On figures of equilibrium of a rotating compressible fluid mass; certain negative results . Trans. Amer. Math. Soc. 17 (1916) 100-108. MR 1501031.
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Results: 1 to 25 of 25 found      Go to page: 1