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A283401
Binary representation of the x-axis, from the origin to the right edge, of the n-th stage of growth of the two-dimensional cellular automaton defined by "Rule 633", based on the 5-celled von Neumann neighborhood.
4
1, 0, 110, 1000, 1110, 11000, 111110, 111000, 110111110, 1000111000, 1111111110, 11111111000, 111111111110, 1111111111000, 11111111111110, 111111111111000, 1111111111111110, 11111111111111000, 111111111111111110, 1111111111111111000, 11111111111111111110
OFFSET
0,3
COMMENTS
Initialized with a single black (ON) cell at stage zero.
REFERENCES
S. Wolfram, A New Kind of Science, Wolfram Media, 2002; p. 170.
FORMULA
Conjectures from Chai Wah Wu, May 06 2024: (Start)
a(n) = 10*a(n-1) + a(n-2) - 10*a(n-3) for n > 26.
G.f.: (-1100000000000000000000000*x^26 + 10000000000000000000000*x^25 + 1100000000000000000000000*x^24 - 10000000000000000000000*x^23 + 8890000000*x^12 + 101000000*x^11 - 8999000000*x^10 - 100000000*x^9 + 109000000*x^8 - 1000000*x^7 + 10000*x^6 - 9000*x^4 - 90*x^3 + 109*x^2 - 10*x + 1)/((x - 1)*(x + 1)*(10*x - 1)). (End)
MATHEMATICA
CAStep[rule_, a_] := Map[rule[[10 - #]] &, ListConvolve[{{0, 2, 0}, {2, 1, 2}, {0, 2, 0}}, a, 2], {2}];
code = 633; 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}];
Table[FromDigits[Part[ca[[i]] [[i]], Range[i, 2 * i - 1]], 10], {i, 1, stages - 1}]
CROSSREFS
KEYWORD
nonn,easy
AUTHOR
Robert Price, Mar 07 2017
STATUS
approved