32 citations to https://www.mathnet.ru/rus/smj138
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Andrasik R. Vodak R., “Rigorous Derivation of a 1D Model From the 3D Non-Steady Navier-Stokes Equations For Compressible Nonlinearly Viscous Fluids”, Electron. J. Differ. Equ., 2018, 114
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Fang L. Guo Zh. Wang Yu., “Local Strong Solutions to a Compressible Non-Newtonian Fluid With Density-Dependent Viscosity”, Math. Meth. Appl. Sci., 39:10 (2016), 2583–2601
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Li FANG, Zilai LI, “On the existence of local classical solution for a class of one-dimensional compressible non-newtonian fluids”, Acta Mathematica Scientia, 35:1 (2015), 157
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Hlavacova N., “On the Domain Dependence of Solutions to the Compressible Navier–Stokes Equations of an Isothermal Fluid”, Acta Appl. Math., 124:1 (2013), 187–206
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Fang L., Guo Zh., “Analytical Solutions to a Class of Non-Newtonian Fluids with Free Boundaries”, J. Math. Phys., 53:10 (2012), 103701
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Feireisl E., “Low Mach number asymptotics for reacting compressible fluid flows”, Discrete Contin. Dyn. Syst., 27:4 (2010), 1587–1609
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Rozanova O., “Nonexistence results for a compressible non-Newtonian fluid with magnetic effects in the whole space”, J Math Anal Appl, 371:1 (2010), 190–194
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Жиков В.В., Пастухова С.Е., “О разрешимости системы Навье–Стокса для сжимаемой неньютоновой жидкости”, Докл. РАН, 427:3 (2009), 303–307
; Zhikov V.V., Pastukhova S.E., “On the solvability of the Navier–Stokes equations for a compressible b non-Newtonian fluid”, Dokl. Math., 80:1 (2009), 511–515
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Vodak R., “Local solvability of equations of magnetohydrodynamics on the whole space”, Nonlinear Analysis–Real World Applications, 10:3 (2009), 1424–1442
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А. Е. Мамонтов, “Глобальная разрешимость многомерных уравнений сжимаемой неньютоновской жидкости, транспортное уравнение и пространства Орлича”, Сиб. электрон. матем. изв., 6 (2009), 120–165