| 数据
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1, 10, 100, 1011, 10011, 101111, 1001001, 10110110, 100100010, 1011010100, 10011000011, 101100110111, 1001011110001, 10110011001110, 100111100110100, 1011011111110011, 10010010011011111, 101101101111001101, 1001101101000110100, 10110001100101110011
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| 链接
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N.J.A.Sloane,<A href=“http://arxiv.org/abs/1503.01168“>关于元胞自动机中On细胞的数量,arXiv:1503.01168[math.CO],2015
Eric Weisstein的《数学世界》,<a href=“http://mathworld.wolfram.com/ElementaryCellularAutomaton.html“>基本元胞自动机</a>
S.Wolfram,<a href=“http://wolframscience.com/“>一种新的科学</a>
Wolfram Research,<a href=“http://atlas.wolfram.com/“>Wolfram简易程序地图集</a>
<a href=“/index/Ce#cell”>与细胞自动机相关的序列的索引条目</a>
<a href=“https://oeis.org/wiki/Index_to_2D_5-Neighbor_Cellular_Automata网站“>二维五邻域元胞自动机索引</a>
<a href=“https://oeis.org/wiki/Index_to_Elementary_Cellular_Automata网站“>基本元胞自动机索引</a>
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| 数学
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CAStep[rule_,a_]:=映射[rule[[10-#]]&,ListConvolve[{{0,2,0},{2,1,2},},a,2],{2}];
代码=589;阶段=128;
规则=整数位数[code,2,10];
g=2*级+1;(*网格最大尺寸*)
a=PadLeft[{{1}},{g,g},0,Floor[{g,c}/2]];(*电网上的初始ON电池*)
ca=a;
ca=表[ca=CAStep[rule,ca],{n,1,stages+1}];
PrependTo[ca,a];
(*修剪整个网格以反映每个阶段一个单元格的增长*)
k=(长度[ca[[1]]]+1)/2;
ca=表[Table[Part[ca[[n]][[j]],范围[k+1-n,k-1+n]],{j,k+1-n,k-1+n}],{n,1,k}];
表[FromDigits[Part[ca[i]][[i]],Range[1,i],10],{i,1,stages-1}]
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