English

Counting mountain-valley assignments for flat folds

Combinatorics 2014-10-21 v1

Abstract

We develop a combinatorial model of paperfolding for the purposes of enumeration. A planar embedding of a graph is called a {\em crease pattern} if it represents the crease lines needed to fold a piece of paper into something. A {\em flat fold} is a crease pattern which lies flat when folded, i.e. can be pressed in a book without crumpling. Given a crease pattern C=(V,E)C=(V,E), a {\em mountain-valley (MV) assignment} is a function f:E{f:E\rightarrow \{M,V}\} which indicates which crease lines are convex and which are concave, respectively. A MV assignment is {\em valid} if it doesn't force the paper to self-intersect when folded. We examine the problem of counting the number of valid MV assignments for a given crease pattern. In particular we develop recursive functions that count the number of valid MV assignments for {\em flat vertex folds}, crease patterns with only one vertex in the interior of the paper. We also provide examples, especially those of Justin, that illustrate the difficulty of the general multivertex case.

Cite

@article{arxiv.1410.5022,
  title  = {Counting mountain-valley assignments for flat folds},
  author = {Thomas C. Hull},
  journal= {arXiv preprint arXiv:1410.5022},
  year   = {2014}
}
R2 v1 2026-06-22T06:28:27.375Z