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 A271275 Partial sums of the number of active (ON,black) cells in n-th stage of growth of two-dimensional cellular automaton defined by "Rule 329", based on the 5-celled von Neumann neighborhood. 1
 1, 5, 10, 50, 59, 159, 164, 364, 381, 701, 738, 1210, 1227, 1903, 1964, 2820, 2869, 4017, 4094, 5466, 5535, 7219, 7320, 9336, 9461, 11817, 11958, 14674, 14843, 17963, 18156, 21724, 21925, 26057, 26258, 30882, 31115, 36267, 36524, 42252, 42533, 48861, 49134 (list; graph; refs; listen; history; text; internal format)
 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. LINKS Robert Price, Table of n, a(n) for n = 0..128 N. J. A. Sloane, On the Number of ON Cells in Cellular Automata, arXiv:1503.01168 [math.CO], 2015 Eric Weisstein's World of Mathematics, Elementary Cellular Automaton S. Wolfram, A New Kind of Science MATHEMATICA CAStep[rule_, a_]:=Map[rule[[10-#]]&, ListConvolve[{{0, 2, 0}, {2, 1, 2}, {0, 2, 0}}, a, 2], {2}]; code=329; 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}]; on=Map[Function[Apply[Plus, Flatten[#1]]], ca] (* Count ON cells at each stage *) Table[Total[Part[on, Range[1, i]]], {i, 1, Length[on]}] (* Sum at each stage *) CROSSREFS Cf. A265689. Sequence in context: A305476 A270089 A336582 * A270100 A271287 A003587 Adjacent sequences:  A271272 A271273 A271274 * A271276 A271277 A271278 KEYWORD nonn,easy AUTHOR Robert Price, Apr 03 2016 STATUS approved

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Last modified April 12 17:48 EDT 2021. Contains 342929 sequences. (Running on oeis4.)