One parameter Lorentzian motions in Lorentz 3-space
Mehmet Ali Gungor, Murat Tosun (2008)
Kragujevac Journal of Mathematics
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Mehmet Ali Gungor, Murat Tosun (2008)
Kragujevac Journal of Mathematics
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Nishiyama, Seiya, Da Providência, João, Providência, Constança, Cordeiro, Flávio, Komatsu, Takao (2009)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Duviryak, Askold (2006)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Pavlov, Maxim V., Popowicz, Ziemowit (2009)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Wainberg, Dorin (2008)
Acta Universitatis Apulensis. Mathematics - Informatics
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Duviryak, Askold (2008)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Basheleishvili, M., Zazashvili, Sh. (1999)
Georgian Mathematical Journal
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François Golse (2003)
Journées équations aux dérivées partielles
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This short course explains how the usual mean-field evolution PDEs in Statistical Physics - such as the Vlasov-Poisson, Schrödinger-Poisson or time-dependent Hartree-Fock equations - are rigorously derived from first principles, i.e. from the fundamental microscopic models that govern the evolution of large, interacting particle systems.
Agrotis, Maria A. (2006)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Johannes Sjöstrand, Maciej Zworski (2007)
Annales de l’institut Fourier
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We describe a simple linear algebra idea which has been used in different branches of mathematics such as bifurcation theory, partial differential equations and numerical analysis. Under the name of the Schur complement method it is one of the standard tools of applied linear algebra. In PDE and spectral analysis it is sometimes called the Grushin problem method, and here we concentrate on its uses in the study of infinite dimensional problems, coming from partial differential operators...
Takasaki, Kanehisa (2009)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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