paper

Balanced partitions of 3-colored geometric sets in the plane

arXiv:1708.06062 · doi:10.1016/j.dam.2014.10.015

Abstract

Let be a finite set of geometric objects partitioned into classes or \emph{colors}. A subset is said to be \emph{balanced} if contains the same amount of elements of from each of the colors. We study several problems on partitioning -colored sets of points and lines in the plane into two balanced subsets: (a) We prove that for every 3-colored arrangement of lines there exists a segment that intersects exactly one line of each color, and that when there are lines of each color, there is a segment intercepting lines of each color. (b) Given red points, blue points and green points on any closed Jordan curve , we show that for every integer with there is a pair of disjoint intervals on whose union contains exactly points of each color. (c) Given a set of red points, blue points and green points in the integer lattice satisfying certain constraints, there exist two rays with common apex, one vertical and one horizontal, whose union splits the plane into two regions, each one containing a balanced subset of .

This paper was published in Discrete Applied Mathematics, 181:21--32, 2015

References in corpus (2)

Cited by in corpus (2)