Distances exactly where bifurcations take place in a chaotic nonlinear method; its where
Distances where bifurcations take place in a chaotic nonlinear process; its where is the socalled Feigenbaum ratio/limit/constant, where bifurcations two in essence, a similarity (scalable) element in its numerical utive distances provided by 4.67 and expresses, numerical worth is the ratio of come about within a chaotic non-linear process; the consecutive distances exactly where bifurcations occur 4.67 and expresses, inprocess; its a similarity (scalable) aspect within the chaotic processes; in a chaotic nonlinear essence, value ischaotic processes; , , are calibration variables aimed to match the numerical values into numerical worth is 4.67 and expresses, in essence, a similarity (scalable) aspect in the qualitative assumptions; for the circumstances in which it have to be calculated , we’ve: Entropy 2021, 23, 1396 a, b, k are calibration elements aimed to fit the numerical values into qualitative assumptions; 18 of 26 chaotic processes; , , are calibration factors aimed to fit the numerical values into -1 = x, we’ve: for the situations in which it , we’ve: qualitative assumptions; for the cases in which it must be calculated must be calculated y(1) (1) where is the socalled Feigenbaum ratio/limit/constant, given by the ratio of two exactly where could be the so-called Feigenbaum ratio/limit/constant, provided by the ratio of two consec-6. Discussion 6. Discussion(two)(two)The following seven issues are chosen to be discussed under as a way to better clarify our proposal: (1) why, soon after all, a logistic curve is (probably the most) appropriate to formally cap our proposal: (1) why, just after all, a logistic curve is (probably the most) appropriate to formally capture ture the relationship in between behavioural entropy and behavioural efficiency on the fi the relationship between behavioural entropy and behavioural efficiency around the monetary nancial market; (two) that are the Fmoc-Gly-Gly-OH Technical Information Cartesian coordinates of points M, N, and P in Figure 6;
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