Rational triangles with equal area.
Rusin, David J. (1998)
The New York Journal of Mathematics [electronic only]
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Rusin, David J. (1998)
The New York Journal of Mathematics [electronic only]
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Petroula Dospra (2023)
Archivum Mathematicum
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In this paper we consider rational Bézier curves with control points having rational coordinates and rational weights, and we give necessary and sufficient conditions for such a curve to have infinitely many points with integer coefficients. Furthermore, we give algorithms for the construction of these curves and the computation of theirs points with integer coefficients.
Matt DeLong (2002)
Acta Arithmetica
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Bremner, Andrew (2006)
Annales Mathematicae et Informaticae
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Tengely, Szabolcs (2007)
Annales Mathematicae et Informaticae
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Sheldon Kamienny (1986)
Bulletin de la Société Mathématique de France
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Tatiana Lavrinenko (2002)
Revue d'histoire des mathématiques
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This article concerns the problem of solving diophantine equations in rational numbers. It traces the way in which the 19th century broke from the centuries-old tradition of the purely algebraic treatment of this problem. Special attention is paid to Sylvester’s work “On Certain Ternary Cubic-Form Equations” (1879–1880), in which the algebraico-geometrical approach was applied to the study of an indeterminate equation of third degree.
Rubin, Karl, Silverberg, Alice (2001)
Experimental Mathematics
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Ayhan Günaydın, Philipp Hieronymi (2011)
Fundamenta Mathematicae
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We consider the expansion of the real field by the group of rational points of an elliptic curve over the rational numbers. We prove a completeness result, followed by a quantifier elimination result. Moreover we show that open sets definable in that structure are semialgebraic.
Dimitrios Poulakis (2003)
Acta Arithmetica
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Petulante, Nelson, Kaja, Ifeoma (2000)
International Journal of Mathematics and Mathematical Sciences
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Kulesz, Leopoldo, Stahlke, Colin (2001)
Experimental Mathematics
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Gerhard Frey (1986)
Compositio Mathematica
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