K3 Projective Models in Scrolls

K3 Projective Models in Scrolls
Author: Andreas L. Knutsen
Publisher: Springer
Total Pages: 172
Release: 2004-04-30
Genre: Mathematics
ISBN: 3540408983


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The exposition studies projective models of K3 surfaces whose hyperplane sections are non-Clifford general curves. These models are contained in rational normal scrolls. The exposition supplements standard descriptions of models of general K3 surfaces in projective spaces of low dimension, and leads to a classification of K3 surfaces in projective spaces of dimension at most 10. The authors bring further the ideas in Saint-Donat's classical article from 1974, lifting results from canonical curves to K3 surfaces and incorporating much of the Brill-Noether theory of curves and theory of syzygies developed in the mean time.


K3 Projective Models in Scrolls
Language: en
Pages: 172
Authors: Andreas L. Knutsen
Categories: Mathematics
Type: BOOK - Published: 2004-04-30 - Publisher: Springer

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The exposition studies projective models of K3 surfaces whose hyperplane sections are non-Clifford general curves. These models are contained in rational normal
K3 Projective Models in Scrolls
Language: en
Pages: 180
Authors: Andreas L. Knutsen
Categories:
Type: BOOK - Published: 2014-01-15 - Publisher:

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K3 Projective Models in Scrolls
Language: en
Pages: 180
Authors: Trygve Johnsen
Categories: Projective modules (Algebra)
Type: BOOK - Published: 2004 - Publisher: Springer Science & Business Media

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Facets of Algebraic Geometry
Language: en
Pages: 417
Authors: Paolo Aluffi
Categories: Mathematics
Type: BOOK - Published: 2022-04-07 - Publisher: Cambridge University Press

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Written to honor the enduring influence of William Fulton, these articles present substantial contributions to algebraic geometry.
Random Perturbation of PDEs and Fluid Dynamic Models
Language: en
Pages: 187
Authors: Franco Flandoli
Categories: Mathematics
Type: BOOK - Published: 2011-03-02 - Publisher: Springer

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The book deals with the random perturbation of PDEs which lack well-posedness, mainly because of their non-uniqueness, in some cases because of blow-up. The aim