Cluster growth for Bernoulli site percolation on a cubic lattice
Submitted by Nils Berglund on
The connected component of one face for Bernoulli site percolation on a cubic lattice, for increasing parameter p and different lattice sizes.
Submitted by Nils Berglund on
The connected component of one face for Bernoulli site percolation on a cubic lattice, for increasing parameter p and different lattice sizes.
Submitted by Nils Berglund on
Backwards zooms for Bernoulli site percolation on a lattice of triangles
Submitted by Nils Berglund on
Backwards zooms for Bernoulli site percolation on a honeycomb lattice
Submitted by Nils Berglund on
Bernoulli site percolation on a Poisson disc process, for different lattice sizes. Open clusters are colored according to their size.
Submitted by Nils Berglund on
Bernoulli site percolation on a Poisson disc process, for different lattice sizes.
Submitted by Nils Berglund on
Bernoulli bond percolation on a square lattice, for different lattice sizes. Open clusters are colored according to their size.
Submitted by Nils Berglund on
Bernoulli site percolation on a lattice of equilateral triangles (whose centers form a hexagonal lattice), for different lattice sizes. Open clusters are colored according to their size.
Submitted by Nils Berglund on
Bernoulli site percolation on a honeycomb lattice, for different lattice sizes. Open clusters are colored according to their size.
Submitted by Samuel Lelièvre on
Les diplotores sont des polyèdres «de genre un» (c’est-à-dire à un trou comme une bouée ou certains beignets) qui sont plats au sens où l’angle total à chaque sommet est exactement 360 degrés.
Submitted by Nils Berglund on
Bernoulli bond percolation on a honeycomb lattice, for different lattice sizes. Open clusters are shown in different colors.