Compact Hausdorff spaces with two open sets
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Mioduszewski, J. (1977)
General topology and its relations to modern analysis and algebra IV
Hoshina, T. (1977)
General topology and its relations to modern analysis and algebra IV
Bunke, Ulrich (1993)
Proceedings of the Winter School "Geometry and Physics"
The author introduces boundary conditions for Dirac operators giving selfadjoint extensions such that the Hamiltonians define elliptic operators. Using finite propagation speed methods and assuming bounded geometry he estimates the trace of the difference of two heat operators associated to a pair of Dirac operators coinciding on cocompact sets.
Malikov, Khoris M. (1982)
Equadiff 5
Tomás Recio (2008)
Gaceta de la Real Sociedad Matemática Española
Aarts, Jan M. (1972)
General Topology and its Relations to Modern Analysis and Algebra
Császár, Á. (1962)
General Topology and its Relations to Modern Analysis and Algebra
Aquaro, G. (1962)
General Topology and its Relations to Modern Analysis and Algebra
Papadima, Stefan (1987)
Proceedings of the Winter School "Geometry and Physics"
Eastwood, Michael (1997)
Proceedings of the 16th Winter School "Geometry and Physics"
This is an exposition of a general machinery developed by M. G. Eastwood, T. N. Bailey, C. R. Graham which analyses some real integral transforms using complex methods. The machinery deals with double fibrations complex manifold; totally real, real-analytic submanifold;...
Jay Kappraff (2006)
Visual Mathematics
Donald E. Knuth (1976)
Pokroky matematiky, fyziky a astronomie
Jiří Hořejš (1987)
Pokroky matematiky, fyziky a astronomie
Vejchodský, Tomáš (2012)
Applications of Mathematics 2012
This contribution shows how to compute upper bounds of the optimal constant in Friedrichs’ and similar inequalities. The approach is based on the method of [9]. However, this method requires trial and test functions with continuous second derivatives. We show how to avoid this requirement and how to compute the bounds on Friedrichs’ constant using standard finite element methods. This approach is quite general and allows variable coefficients and mixed boundary conditions. We use the computed...
Hedrlín, Z., Pultr, A., Trnková, V. (1967)
General Topology and its Relations to Modern Analysis and Algebra
Tumarkin, L. (1962)
General Topology and its Relations to Modern Analysis and Algebra
Borsuk, K. (1962)
General Topology and its Relations to Modern Analysis and Algebra
Novák, J. (1977)
General topology and its relations to modern analysis and algebra IV
Arhangel'skii, Aleksander V. (1962)
General Topology and its Relations to Modern Analysis and Algebra
Axelsson, O. (1990)
Equadiff 7