Published in: LIPIcs, Volume 366, 13th International Conference on Fun with Algorithms (FUN 2026)
Jean-Claude Bermond, Michel Cosnard, Frédéric Havet, Takako Kodate, and Stéphane Pérennes. Directed Grabbing Games or How to Politely Grab the Maximum Number of Olives in a Reception. In 13th International Conference on Fun with Algorithms (FUN 2026). Leibniz International Proceedings in Informatics (LIPIcs), Volume 366, pp. 8:1-8:19, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2026)
@InProceedings{bermond_et_al:LIPIcs.FUN.2026.8,
author = {Bermond, Jean-Claude and Cosnard, Michel and Havet, Fr\'{e}d\'{e}ric and Kodate, Takako and P\'{e}rennes, St\'{e}phane},
title = {{Directed Grabbing Games or How to Politely Grab the Maximum Number of Olives in a Reception}},
booktitle = {13th International Conference on Fun with Algorithms (FUN 2026)},
pages = {8:1--8:19},
series = {Leibniz International Proceedings in Informatics (LIPIcs)},
ISBN = {978-3-95977-417-8},
ISSN = {1868-8969},
year = {2026},
volume = {366},
editor = {Iacono, John},
publisher = {Schloss Dagstuhl -- Leibniz-Zentrum f{\"u}r Informatik},
address = {Dagstuhl, Germany},
URL = {https://drops.dagstuhl.de/entities/document/10.4230/LIPIcs.FUN.2026.8},
URN = {urn:nbn:de:0030-drops-257273},
doi = {10.4230/LIPIcs.FUN.2026.8},
annote = {Keywords: grabbing games, paths, directed grids}
}
Published in: LIPIcs, Volume 353, Approximation, Randomization, and Combinatorial Optimization. Algorithms and Techniques (APPROX/RANDOM 2025)
Romain Bourneuf, Julien Cocquet, Chaoliang Tang, and Stéphan Thomassé. A Polynomial-Time Approximation Algorithm for Complete Interval Minors. In Approximation, Randomization, and Combinatorial Optimization. Algorithms and Techniques (APPROX/RANDOM 2025). Leibniz International Proceedings in Informatics (LIPIcs), Volume 353, pp. 15:1-15:23, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2025)
@InProceedings{bourneuf_et_al:LIPIcs.APPROX/RANDOM.2025.15,
author = {Bourneuf, Romain and Cocquet, Julien and Tang, Chaoliang and Thomass\'{e}, St\'{e}phan},
title = {{A Polynomial-Time Approximation Algorithm for Complete Interval Minors}},
booktitle = {Approximation, Randomization, and Combinatorial Optimization. Algorithms and Techniques (APPROX/RANDOM 2025)},
pages = {15:1--15:23},
series = {Leibniz International Proceedings in Informatics (LIPIcs)},
ISBN = {978-3-95977-397-3},
ISSN = {1868-8969},
year = {2025},
volume = {353},
editor = {Ene, Alina and Chattopadhyay, Eshan},
publisher = {Schloss Dagstuhl -- Leibniz-Zentrum f{\"u}r Informatik},
address = {Dagstuhl, Germany},
URL = {https://drops.dagstuhl.de/entities/document/10.4230/LIPIcs.APPROX/RANDOM.2025.15},
URN = {urn:nbn:de:0030-drops-243814},
doi = {10.4230/LIPIcs.APPROX/RANDOM.2025.15},
annote = {Keywords: Approximation algorithm, Ordered graphs, Interval minors, Delayed decompositions}
}
Published in: LIPIcs, Volume 77, 33rd International Symposium on Computational Geometry (SoCG 2017)
Martin Balko, Josef Cibulka, and Pavel Valtr. Covering Lattice Points by Subspaces and Counting Point-Hyperplane Incidences. In 33rd International Symposium on Computational Geometry (SoCG 2017). Leibniz International Proceedings in Informatics (LIPIcs), Volume 77, pp. 12:1-12:16, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2017)
@InProceedings{balko_et_al:LIPIcs.SoCG.2017.12,
author = {Balko, Martin and Cibulka, Josef and Valtr, Pavel},
title = {{Covering Lattice Points by Subspaces and Counting Point-Hyperplane Incidences}},
booktitle = {33rd International Symposium on Computational Geometry (SoCG 2017)},
pages = {12:1--12:16},
series = {Leibniz International Proceedings in Informatics (LIPIcs)},
ISBN = {978-3-95977-038-5},
ISSN = {1868-8969},
year = {2017},
volume = {77},
editor = {Aronov, Boris and Katz, Matthew J.},
publisher = {Schloss Dagstuhl -- Leibniz-Zentrum f{\"u}r Informatik},
address = {Dagstuhl, Germany},
URL = {https://drops.dagstuhl.de/entities/document/10.4230/LIPIcs.SoCG.2017.12},
URN = {urn:nbn:de:0030-drops-71955},
doi = {10.4230/LIPIcs.SoCG.2017.12},
annote = {Keywords: lattice point, covering, linear subspace, point-hyperplane incidence}
}