By M. Aizenman (Chief Editor)

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A variational approach for the vector potential formulation of the Stokes and Navier-Stokes problems in three-dimensional domains. J. Math. Anal. Appl. 107(2), 537–560 (1985) 3. : Remarks on the Euler equation. J. Funct. Analysis 15, 341–363 (1974) 4. : Unique solvability of the initial boundary value problems for compressible viscous fluid. Math. Pures Appl. 83, 243–275 (2004) 5. : On classical solutions of the compressible Navier-Stokes equations with nonnegative initial densities. Manuscript Math.

303(1), 169–181 (1987) 16. : Strong convergence to global solutions for multidimensional flows of compressible, viscous fluids with polytropic equations of state and discontinuous initial data. Arch. Rat. Mech. Anal. 132, 1–14 (1995) 17. : The failure of continuous dependence on initial data for the Navier-Stokes equations of compressible flow. SIAM J. Appl. Math. 51, 887–898 (1991) 18. : Some results on blowup of solutions to the compressible Navier-Stokes equations. PhD Thesis, Chinese University of Hong Kong, 2009 19.

Noncommutative geometry and compactifications of the moduli space of curves. QA], 2007 17. : Symplectic A∞ -algebras and string topology operations. QA], 2007 18. : CoHochschild homology of chain coalgebras. J. Pure Appl. Alg. 213(4), 536–556 (2009) 19. : Cyclic homology and equivariant homology. Invent. Math. 87, 403–423 (1987) 20. : Poincaré duality and commutative differential graded algebras. Ann. Sci. l’École Nor. Sup. 41, 495–509 (2008) 21. : Cyclic homology. Second edition. Grundlehren der Mathematischen Wissenschaften, 301.

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