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[1] M. Feldman and A. Tudorascu. Lagrangian solutions for the semi-geostrophic shallow water system in physical space with general initial data. St. Petersburg Math. J. 27 (2016) 547-568.
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[2] Helge Holden, Kenneth H. Karlsen and Trygve Karper. Operator splitting for two-dimensional incompressible fluid equations. Math. Comp. 82 (2013) 719-748.
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[3] Isom H. Herron and Pablo U. Suárez. Exchange of stabilities in Couette flow between cylinders with Navier-slip conditions. Quart. Appl. Math. 70 (2012) 743-758. MR 3052088.
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[4] Carine Lucas. Cosine effect on shallow water equations and mathematical properties. Quart. Appl. Math. 67 (2009) 283-310. MR 2514636.
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[5] M. Turkyilmazoglu. Influence of suction/blowing on the finite amplitude disturbances having non-stationary modes of a compressible boundary layer flow. Quart. Appl. Math. 66 (2008) 447-471. MR 2445523.
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[6] Yue Liu and Masahito Ohta. Stability of solitary waves for the Ostrovsky equation. Proc. Amer. Math. Soc. 136 (2008) 511-517. MR 2358491.
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[7] M. Turkyilmazoglu. Non-linear and non-stationary modes of the lower branch of the incompressible boundary layer flow due to a rotating disk. Quart. Appl. Math. 65 (2007) 43-68. MR 2313148.
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[8] Frank Morgan. A round ball uniquely minimizes gravitational potential energy. Proc. Amer. Math. Soc. 133 (2005) 2733-2735. MR 2146221.
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[9] The stratified quasi-geostrophic equations as a singular limit of the rotating Boussinesq equations. Courant Lecture Notes 9 (2003) 147-169.
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[10] Linear and nonlinear instability of stratified flows with strong stratification. Courant Lecture Notes 9 (2003) 31-47.
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[11] Introduction. Courant Lecture Notes 9 (2003) 1-8.
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[12] Some remarkable features of stratified flow. Courant Lecture Notes 9 (2003) 9-30.
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[13] Andrew Majda. Introduction to PDEs and Waves for the Atmosphere and Ocean. Courant Lecture Notes 9 (2003) MR MR1965452.
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[14] Linear and weakly nonlinear theory of dispersive waves with geophysical examples. Courant Lecture Notes 9 (2003) 79-123.
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[15] Waves and PDEs for the equatorial atmosphere and ocean. Courant Lecture Notes 9 (2003) 199-232.
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[16] Rotating shallow water theory. Courant Lecture Notes 9 (2003) 49-78.
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[17] Simplified equations for the dynamics of strongly stratified flow. Courant Lecture Notes 9 (2003) 125-145.
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[18] Introduction to averaging over fast waves for geophysical flows. Courant Lecture Notes 9 (2003) 171-198.
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[19] Darren Crowdy. Theory of exact solutions for the evolution of a fluid annulus in a rotating Hele-Shaw cell. Quart. Appl. Math. 60 (2002) 11-36. MR MR1878257.
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[20] H. A. Stone and J. W. M. Bush. Time-dependent drop deformation in a rotating high viscosity fluid. Quart. Appl. Math. 54 (1996) 551-556. MR MR1402409.
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[21] M. Garbey, A. Taik and V. Volpert. Linear stability analysis of reaction fronts in liquids. Quart. Appl. Math. 54 (1996) 225-247. MR MR1388014.
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[22] Y. Qin and P. N. Kaloni. Nonlinear stability problem of a rotating porous layer. Quart. Appl. Math. 53 (1995) 129-142. MR MR1315452.
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[23] Chia-Shun Yih. Solitary waves in Poiseuille flow of a rotating fluid. Quart. Appl. Math. 52 (1994) 739-752. MR MR1306047.
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[24] M. A. Boudourides. Stabilization of adiabatic rigid body rotation by dissipation. Quart. Appl. Math. 46 (1988) 49-54. MR 934680.
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[25] Charles G. Speziale. Second-order closure models for rotating turbulent flows. Quart. Appl. Math. 45 (1987) 721-733. MR 917022.
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[26] Jong Uhn Kim. On the model equations which describe nonlinear wave motions in a rotating fluid . Trans. Amer. Math. Soc. 287 (1985) 403-417. MR 766227.
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[27] E. A. Hamza and D. A. MacDonald. Corrigenda: ``A similar flow between two rotating disks'' [Quart. Appl. Math. {\bf 41} (1983/84), no. 4, 495--511;\ MR0724059 (84m:76088)]. Quart. Appl. Math. 42 (1984) 255. MR 745103.
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[28] E. A. Hamza and D. A. MacDonald. A similar flow between two rotating disks. Quart. Appl. Math. 41 (1984) 495-511. MR 724059.
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[29] Bernard Friedman. Analyticity of equilibrium figures of rotation . Trans. Amer. Math. Soc. 43 (1938) 183-198. MR 1501938.
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[30] 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 30 of 32 found      Go to page: 1 2