Integral solutions of the equation in the quadratic realms of rationality
Harris Hancock (1921)
Journal de Mathématiques Pures et Appliquées
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Harris Hancock (1921)
Journal de Mathématiques Pures et Appliquées
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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. ...
Green, John W. (1952)
Portugaliae mathematica
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D. Przeworska-Rolewicz (1969)
Studia Mathematica
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Valery I. Fabrikant (1986)
Aplikace matematiky
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A new and elegant procedure is proposed for the solution of mixed potential problems in a half-space with a circular line of division of boundary conditions. The approach is based on a new type of integral operators with special properties. Two general external problems are solved; i) An arbitrary potential is specified at the boundary outside a circle, and its normal derivative is zero inside; ii) An arbitrary normal derivative is given outside the circle, and be potential is zero inside....
B. Diviš, B. Novák (1974)
Acta Arithmetica
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