andrewthelifer:
Probviously true, but intractable: in the long run (and at large range), an arbitrarily sparse but non-zero-density Life universe will have no moving objects as all spaceships and puffers will collide into something eventually.
This is false, if I understand you correctly. If we assume the Life universe to be infinite, then
whatever its density, any glider-constructable arrangement of cells will exist after any number of steps, because for any such arrangement, and for any number
s of steps greater than some minimum, there will be arbitrarily large regions containing nothing but a collection of gliders that give rise to that arrangement after
s steps. More generally, in analysing Sparse Life (i.e. an arbitrarily sparse but non-zero-density [infinite (or finite but arbitrarily large enough to contain a finite but arbitraily large number of initial on-cells)] Life universe) - sorry about the nested brackets - we need to consider three timescales:
* Short-term: what has happened after
s steps for some finite
s.
* Long-term: what arrangements of cells will and will not continue to exist after any number of steps. That includes everything glider-constructible, excludes any arrangment that includes an "orphan" or descendant of orphans on every line of descent, and leaves a lot undetermined in between.
* Medium-term: We can define "eras" in terms of the reciprocal
N of the initial density
d. Consider the originally-existing gliders in a Sparse universe. They will be present at step 0 at
O(d^5) locations - i.e.,
O(d^5) cells will form part of such a glider, while
O(d^3) cells will form part of a blinker or preblock. Now consider the possible path of such a glider. For "almost all" such gliders (I'll be more precise below) the first thing in their path will be a blinker or (from step 1) a block (twice as many will have a block than a blinker in this position), and that blonk will be
O(N^3) cells away, and the glider will hit it after
O(N^3) steps. But for a proportion
O(d) of the initial gliders, the first thing in their path will be something requiring four or more initial on-cells, and for
O(d) of the initial gliders again, the first thing in their path will be at a distance of
O(N^2) or less. I've written several articles on Sparse Life, and am currently preparing to return to the topic after a long break.