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[1] Giovanni P. Galdi and Carlo R. Grisanti. On the plane steady-state flow of a shear-thinning liquid past an obstacle in the singular case. Contemporary Mathematics 666 (2016) 211-223.
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[2] Fernando Miranda and José Francisco Rodrigues. On a variational inequality for incompressible non-Newtonian thick flows. Contemporary Mathematics 666 (2016) 305-316.
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[3] E. Molitor and M. Růžička. On inhomogeneous $\mathbf{p}$-Navier--Stokes systems. Contemporary Mathematics 666 (2016) 317-340.
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[4] L. Fusi, A. Farina and F. Rosso. Ill posedness of Bingham-type models for the downhill flow of a thin film on an inclined plane. Quart. Appl. Math. 73 (2015) 615-627.
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[5] Hamid Bellout and Frederick Bloom. On the higher-order boundary conditions for incompressible nonlinear bipolar fluid flow. Quart. Appl. Math. 71 (2013) 773-785. MR 3136995.
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[6] Adrian Hirn. Finite element approximation of singular power-law systems. Math. Comp. 82 (2013) 1247-1268.
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[7] Matthias Geissert, Karoline Götze and Matthias Hieber. $L^{p}$-theory for strong solutions to fluid-rigid body interaction in Newtonian and generalized Newtonian fluids. Trans. Amer. Math. Soc. 365 (2013) 1393-1439.
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[8] V. I. Fabrikant. Exact evaluation of the integral involved in Doi-Edwards constitutive equations. Quart. Appl. Math. 70 (2012) 787-792. MR 3052091.
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[9] A. Farina, A. Fasano, L. Fusi and K. R. Rajagopal. The one-dimensional flow of a fluid with limited strain-rate. Quart. Appl. Math. 69 (2011) 549-568. MR 2850745.
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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] Mihai Mihailescu and Vicentiu Radulescu. On a nonhomogeneous quasilinear eigenvalue problem in Sobolev spaces with variable exponent. Proc. Amer. Math. Soc. 135 (2007) 2929-2937. MR 2317971.
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[12] Andréas Bergwall. A geometric evolution problem. Quart. Appl. Math. 60 (2002) 37-73. MR MR1878258.
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[13] G. Bayada, M. Chambat and S. R. Gamouana. About thin film micropolar asymptotic equations. Quart. Appl. Math. 59 (2001) 413-439. MR MR1848526.
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[14] Hyeong-Ohk Bae. Existence and regularity of solutions of non-Newtonian flow. Quart. Appl. Math. 58 (2000) 379-400. MR MR1753406.
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[15] Š. Matušů-Nečasová. Existence of classical solutions of the equations of motion for compressible fluids of second grade. Quart. Appl. Math. 58 (2000) 369-378. MR MR1753405.
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[16] Frederick Bloom and Wenge Hao. Inertial manifolds of incompressible, nonlinear bipolar viscous fluids. Quart. Appl. Math. 54 (1996) 501-539. MR MR1402407.
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[17] J. P. Pascal and H. Pascal. Similarity solutions to rotating Couette flow of non-Newtonian fluids in the presence of a magnetic field. Quart. Appl. Math. 54 (1996) 345-358. MR MR1388021.
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[18] Frederick Bloom and Wenge Hao. Steady flows of nonlinear bipolar viscous fluids between rotating cylinders. Quart. Appl. Math. 53 (1995) 143-171. MR MR1315453.
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[19] Hamid Bellout, Frederick Bloom and Jindřich Nečas. Phenomenological behavior of multipolar viscous fluids. Quart. Appl. Math. 50 (1992) 559-583. MR MR1178435.
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[20] C. Amrouche. Sur une classe de fluides non newtoniens: les solutions aqueuses de polym\`eres. Quart. Appl. Math. 50 (1992) 779-791. MR MR1193666.
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[21] J. Nečas and M. Šilhavý. Multipolar viscous fluids. Quart. Appl. Math. 49 (1991) 247-265. MR MR1106391.
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[22] C. V. Easwaran and S. R. Majumdar. A uniqueness theorem for incompressible micropolar flows. Quart. Appl. Math. 48 (1990) 201-207. MR MR1052130.
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[23] N. Phan-Thien. A three-dimensional stretching flow of an Oldroyd fluid. Quart. Appl. Math. 45 (1987) 23-37. MR 885165.
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[24] A. E. Tzavaras. Shearing of materials exhibiting thermal softening or temperature dependent viscosity. Quart. Appl. Math. 44 (1986) 1-12. MR 840438.
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[25] H. Ramkissoon. Boundary value problems in microcontinuum fluid mechanics. Quart. Appl. Math. 42 (1984) 129-141. MR 745094.
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[26] H. Ramkissoon. A paradox in microcontinuum fluid mechanics. Quart. Appl. Math. 38 (1980) 357-362. MR 592202.
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Results: 1 to 26 of 26 found      Go to page: 1