[1] C. Bernardi: Formulation variationnelle mixte des equations de Navier-Stokes en dimension 3. Thýese de 3ème cycle (deuxième partie), Paris VI (1979), 146-176.
[2] B. M. Budak S. V. Fomin:
Multiple integrals, field theory and series. Mir Publishers, 1975.
MR 0349913
[3] E. B. Byhovskiy:
Solution of a mixed problem for the system of Maxwell equations in case of ideally conductive boundary. Vestnik Leningrad. Univ. Mat. Meh. Astronom. 12 (1957), 50-66.
MR 0098567
[4] M. Crouzeix: Résolution numérique des équations de Stokes stationnaires. Approximation et méthodes iteratives de resolution d'inequations variationnelles et de problèms non lineaires. IRIA, 1974, 139-211.
[5] M. Crouzeix A. Y. Le Roux: Ecoulement d'une fluide irrotationnel. Journées Eléments Finis, Univ. de Rennes, 1976, 1 - 8.
[6] G. Duvaut J. L. Lions:
Inequalities in mechanics and physics. Springer-Verlag, Berlin, 1976.
MR 0521262
[9] V. Girault P. A. Raviart:
Finite element approximation of the Navier-Stokes equation. Springer-Verlag, Berlin, Heidelberg, New York, 1979.
MR 0548867
[11] M. Křížek P. Neittaanmäki:
Finite element approximation for a div-rot system with mixed boundary conditions in non-smooth plane domains. Apl. Mat. 29 (1984), 272 - 285.
MR 0754079
[12] E. Moise: Geometrical topology in dimension 2 and 3. Springer-Verlag, Berlin, Heidelberg, New York, 1977.
[13] J. Nečas:
Les méthodes directes en théorie des équations elliptiques. Academia, Prague, 1967.
MR 0227584
[14] J. Nečas I. Hlaváček:
Mathematical theory of elastic and elasto-plastic bodies: an introduction. Elsevier, Amsterdam, Oxford, New York, 1981.
MR 0600655
[15] P. Neittaanmäki M. Křížek:
Conforming FE-method for obtaining the gradient of a solution to the Poisson equation. Efficient Solvers for Elliptic Systems. (Ed. W. Hackbush), Numerical Methods in Fluid Mechanics, Vieweg, 1984, 73-86.
MR 0804088
[16] P. Neittaanmäki J. Saranen:
Finite element approximation of electromagnetic fields in the three dimensional case. Numer. Funct. Anal. Optim. 2 (1981), 487-506.
DOI 10.1080/01630568008816072 |
MR 0605756
[17] Neittaanmaki J. Saranen:
A modified least squares FE-method for ideal fluid flow problems. J. Comput. Appl. Math. 8 (1982), 165-169.
DOI 10.1016/0771-050X(82)90038-9
[19] R. Picard:
On the boundary value problems of electro- and magnetostatics. SFB 72, preprint 442 (1981), Bonn.
MR 0667134
[20] R. Picard:
An elementary proof for a compact imbedding result in the generalized electromagnetic theory. SFB 72, preprint 624 (1984), Bonn.
MR 0753428