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A270321
Number of active (ON, black) cells in n-th stage of growth of two-dimensional cellular automaton defined by "Rule 150", based on the 5-celled von Neumann neighborhood.
4
1, 5, 8, 20, 20, 44, 32, 84, 44, 100, 68, 188, 72, 192, 132, 304, 140, 344, 172, 516, 132, 384, 276, 700, 232, 612, 388, 928, 356, 900, 440, 1196, 404, 1072, 612, 1564, 432, 1340, 648, 1816, 644, 1544, 808, 2052, 748, 2068, 984, 2588, 884, 2240, 1196, 3052
OFFSET
0,2
COMMENTS
Initialized with a single black (ON) cell at stage zero.
REFERENCES
S. Wolfram, A New Kind of Science, Wolfram Media, 2002; p. 170.
MATHEMATICA
CAStep[rule_, a_]:=Map[rule[[10-#]]&, ListConvolve[{{0, 2, 0}, {2, 1, 2}, {0, 2, 0}}, a, 2], {2}];
code=150; stages=128;
rule=IntegerDigits[code, 2, 10];
g=2*stages+1; (* Maximum size of grid *)
a=PadLeft[{{1}}, {g, g}, 0, Floor[{g, g}/2]]; (* Initial ON cell on grid *)
ca=a;
ca=Table[ca=CAStep[rule, ca], {n, 1, stages+1}];
PrependTo[ca, a];
(* Trim full grid to reflect growth by one cell at each stage *)
k=(Length[ca[[1]]]+1)/2;
ca=Table[Table[Part[ca[[n]][[j]], Range[k+1-n, k-1+n]], {j, k+1-n, k-1+n}], {n, 1, k}];
Map[Function[Apply[Plus, Flatten[#1]]], ca] (* Count ON cells at each stage *)
CROSSREFS
Sequence in context: A270733 A270168 A270984 * A271885 A295901 A143157
KEYWORD
nonn,easy
AUTHOR
Robert Price, Mar 15 2016
STATUS
approved