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Introduction to Linear Algebra with Mathematica

 

  1. H. Amann, Linear and Quasilinear Parabolic Problems, Volume I: Abstract Linear Theory, Birkhäuser, 1995.
  2. R. Denk, M. Hieber, and J. Prüss, “\(R\)-boundedness, Fourier multipliers and problems of elliptic and parabolic type,” Memoirs of the American Mathematical Society 166 (2003), no. 788.
  3. Krainer, T., (2005) Elliptic boundary problems on manifolds with polycylindrical ends, arXiv:math/0508516 [math.AP]
  4. Krupchyk, K. & Tuomela, J., (2006) The Shapiro–Lopatinskij Condition for Elliptic Boundary Value Problems, London Mathematical Society.
  5. O. A. Ladyzhenskaya, V. A. Solonnikov, and N. N. Ural'tseva, Linear and Quasilinear Equations of Parabolic Type, Translations of Mathematical Monographs, Vol. 23, AMS, 1968.
  6. G. M. Lieberman, Second Order Parabolic Differential Equations, World Scientific, 1996.
  7. Lopatinskii, Ya.B., (1953) On a method of reducing boundary problems for a system of differential equations of elliptic type to regular integral equations Journal: Ukraine. Mat. Zh., 5 (1953), 123–151.
  8. Shapiro, Z.Ya,, (1953) On general boundary problems for equations of elliptic type, Journal: Izvestiya Akad. Nauk SSSR. Ser. Mat., 17 (1953), 539–562.
  9. V. A. Solonnikov, “On boundary value problems for linear parabolic systems of differential equations of general form,” Proceedings of the Steklov Institute of Mathematics, Vol. 83 (1965).

 

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