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A thermodynamically compatible rate type fluid to describe the response of asphalt.

, , , , and . Mathematics and Computers in Simulation, 82 (10): 1853-1873 (2012)

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On flows of an incompressible fluid with a discontinuous power-law-like rheology., , and . Computers & Mathematics with Applications, 53 (3-4): 531-546 (2007)On Analysis of Steady Flows of Fluids with Shear-Dependent Viscosity Based on the Lipschitz Truncation Method., , and . SIAM J. Math. Analysis, 34 (5): 1064-1083 (2003)Mathematical Analysis of Unsteady Flows of Fluids with Pressure, Shear-Rate, and Temperature Dependent Material Moduli that Slip at Solid Boundaries., , and . SIAM J. Math. Analysis, 41 (2): 665-707 (2009)On Unsteady Flows of Implicitly Constituted Incompressible Fluids., , , and . SIAM J. Math. Analysis, 44 (4): 2756-2801 (2012)A thermodynamically compatible rate type fluid to describe the response of asphalt., , , , and . Mathematics and Computers in Simulation, 82 (10): 1853-1873 (2012)Numerical simulations and global existence of solutions of two-dimensional flows of fluids with pressure- and shear-dependent viscosities., , , and . Mathematics and Computers in Simulation, 61 (3-6): 297-315 (2003)Mechanics: The well-spring of mathematics (volume 2)., and . Computers & Mathematics with Applications, 53 (3-4): 345 (2007)Flows of Incompressible Fluids subject to Navier's slip on the boundary., , , and . Computers & Mathematics with Applications, 56 (8): 2128-2143 (2008)Mechanics: The well-spring of mathematics (volume 1)., and . Computers & Mathematics with Applications, 53 (2): 155 (2007)Global existence of solutions for flows of fluids with pressure and shear dependent viscosities., , and . Appl. Math. Lett., 15 (8): 961-967 (2002)