cp's OEIS Frontend

This is a front-end for the Online Encyclopedia of Integer Sequences, made by Christian Perfect. The idea is to provide OEIS entries in non-ancient HTML, and then to think about how they're presented visually. The source code is on GitHub.

A288697 Binary representation of the diagonal from the corner to the origin of the n-th stage of growth of the two-dimensional cellular automaton defined by "Rule 494", based on the 5-celled von Neumann neighborhood.

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%I A288697 #12 Feb 16 2025 08:33:48
%S A288697 1,1,0,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,
%T A288697 10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,
%U A288697 1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1,10,1
%N A288697 Binary representation of the diagonal from the corner to the origin of the n-th stage of growth of the two-dimensional cellular automaton defined by "Rule 494", based on the 5-celled von Neumann neighborhood.
%C A288697 Initialized with a single black (ON) cell at stage zero.
%D A288697 S. Wolfram, A New Kind of Science, Wolfram Media, 2002; p. 170.
%H A288697 Robert Price, <a href="/A288697/b288697.txt">Table of n, a(n) for n = 0..126</a>
%H A288697 Robert Price, <a href="/A288697/a288697.tmp.txt">Diagrams of first 20 stages</a>
%H A288697 N. J. A. Sloane, <a href="http://arxiv.org/abs/1503.01168">On the Number of ON Cells in Cellular Automata</a>, arXiv:1503.01168 [math.CO], 2015
%H A288697 Eric Weisstein's World of Mathematics, <a href="https://mathworld.wolfram.com/ElementaryCellularAutomaton.html">Elementary Cellular Automaton</a>
%H A288697 S. Wolfram, <a href="http://wolframscience.com/">A New Kind of Science</a>
%H A288697 Wolfram Research, <a href="http://atlas.wolfram.com/">Wolfram Atlas of Simple Programs</a>
%H A288697 <a href="/index/Ce#cell">Index entries for sequences related to cellular automata</a>
%H A288697 <a href="https://oeis.org/wiki/Index_to_2D_5-Neighbor_Cellular_Automata">Index to 2D 5-Neighbor Cellular Automata</a>
%H A288697 <a href="https://oeis.org/wiki/Index_to_Elementary_Cellular_Automata">Index to Elementary Cellular Automata</a>
%t A288697 CAStep[rule_, a_] := Map[rule[[10 - #]] &, ListConvolve[{{0, 2, 0},{2, 1, 2}, {0, 2, 0}}, a, 2],{2}];
%t A288697 code = 494; stages = 128;
%t A288697 rule = IntegerDigits[code, 2, 10];
%t A288697 g = 2 * stages + 1; (* Maximum size of grid *)
%t A288697 a = PadLeft[{{1}}, {g, g}, 0,Floor[{g, g}/2]]; (* Initial ON cell on grid *)
%t A288697 ca = a;
%t A288697 ca = Table[ca = CAStep[rule, ca], {n, 1, stages + 1}];
%t A288697 PrependTo[ca, a];
%t A288697 (* Trim full grid to reflect growth by one cell at each stage *)
%t A288697 k = (Length[ca[[1]]] + 1)/2;
%t A288697 ca = Table[Table[Part[ca[[n]] [[j]],Range[k + 1 - n, k - 1 + n]], {j, k + 1 - n, k - 1 + n}], {n, 1, k}];
%t A288697 Table[FromDigits[Part[ca[[i]] [[i]], Range[i, 2 * i - 1]], 10], {i, 1, stages - 1}]
%Y A288697 Cf. A288697, A288699, A288700.
%Y A288697 Cf. A010691.
%K A288697 nonn,easy
%O A288697 0,5
%A A288697 _Robert Price_, Jun 13 2017