The Stefan problem with kinetic condition at the free boundary
Avner Friedman, Bei Hu (1992)
Annali della Scuola Normale Superiore di Pisa - Classe di Scienze
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Avner Friedman, Bei Hu (1992)
Annali della Scuola Normale Superiore di Pisa - Classe di Scienze
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D. Przeworska-Rolewicz (1969)
Studia Mathematica
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K. Ramanathan (1984)
Acta Arithmetica
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A. Bazylewicz (1976)
Acta Arithmetica
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Johannes Sjöstrand (1994)
Annales de l'institut Fourier
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For correlations of the form (0.2) we consider a critical case and prove power decay upper bounds in terms of the fundamental solution of a certain elliptic operator. This is achieved by improving the use of a maximum principle. We also formulate a general maximum principle and give two applications.
Mahta Khosravi, John A. Toth (2005)
Annales de l'institut Fourier
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Let be the error term in Weyl’s law for a 3-dimensional Riemannian Heisenberg manifold. We prove that , where is a specific nonzero constant and is an arbitrary small positive number. This is consistent with the conjecture of Petridis and Toth stating that .The idea of the proof is to use the Poisson summation formula to write the error term in a form which can be estimated by the method of the stationary phase. The similar result will be also proven in the -dimensional case. ...
Liang-Cheng Zhang (1997)
Acta Arithmetica
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