The n-point-invariants of the projective line and cross-ratios of n-tuples
Walter Benz (1972)
Annales Polonici Mathematici
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Walter Benz (1972)
Annales Polonici Mathematici
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D. Simson (1974)
Colloquium Mathematicae
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Driss Bennis (2010)
Colloquium Mathematicae
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We prove that finitely generated n-SG-projective modules are infinitely presented.
Yoichi Miyashita (1986)
Mathematische Zeitschrift
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Goddard, Mark A. (1996)
International Journal of Mathematics and Mathematical Sciences
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Roland Coghetto (2016)
Formalized Mathematics
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The real projective plane has been formalized in Isabelle/HOL by Timothy Makarios [13] and in Coq by Nicolas Magaud, Julien Narboux and Pascal Schreck [12]. Some definitions on the real projective spaces were introduced early in the Mizar Mathematical Library by Wojciech Leonczuk [9], Krzysztof Prazmowski [10] and by Wojciech Skaba [18]. In this article, we check with the Mizar system [4], some properties on the determinants and the Grassmann-Plücker relation in rank 3 [2], [1], [7],...
S.M. Bhatwadekar (1987)
Mathematische Zeitschrift
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R. Parimala, M. Ojanguren (1990)
Mathematische Annalen
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Gallo, Daniel M. (1997)
Annales Academiae Scientiarum Fennicae. Mathematica
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Roland Coghetto (2017)
Formalized Mathematics
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In this article we check, with the Mizar system [2], Pascal’s theorem in the real projective plane (in projective geometry Pascal’s theorem is also known as the Hexagrammum Mysticum Theorem)1. Pappus’ theorem is a special case of a degenerate conic of two lines. For proving Pascal’s theorem, we use the techniques developed in the section “Projective Proofs of Pappus’ Theorem” in the chapter “Pappus’ Theorem: Nine proofs and three variations” [11]. We also follow some ideas from Harrison’s...
Marek Kordos (1989)
Colloquium Mathematicae
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Boskoff, Wladimir G., Suceavă, Bogdan D. (2008)
Beiträge zur Algebra und Geometrie
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L.L. Avramov (1989)
Inventiones mathematicae
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Klaus Kaiser (1973)
Colloquium Mathematicae
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István Beck (1972)
Mathematische Zeitschrift
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M. Pavaman Murthy (1965)
Mathematische Zeitschrift
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