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1.
The iterative function sequence of the function f(x)=1/(x+a) and the Fibonacci sequence;
函数f(x)=1/(x+a)的迭代序列与斐波那契数列
2.
The Perfect Unity of Logarithmic Spiral,Golden Section and Fibonacci Sequence
对数螺线、黄金分割与斐波那契数列的完美统一
3.
Moreover, Fibonacci design method was used for structural optimum design with discrete variables.
利用斐波那契数列的规律,提出了离散变量结构优化设计的斐波那契算法。
4.
generating function for Fibonacci sequence
斐波纳契序列生成函数
5.
The natural progression follows a series that is popularized in the West as the" Fibonacci Series".
自然级数遵照一在西方普及的如“斐波纳契级数”那样的数列。
6.
AN APPLICATION LAYER MULTICAST PROTOCOL BASED ON FIBONACCI SERIES
基于斐波那契序列的应用层组播协议
7.
The Fibonacci spiral is fundametal to all life forms.
斐波纳契数列螺旋是所有生命形式的基础。
8.
Some Identities Involving the Jacobi Polynomials and Fibonacci Number;
雅可比多项式及斐波那契数的一组恒等式
9.
I use the moving averages as described earlier as well as Fibonacci levels and then most definitely trendlines and price levels.
我应用均线、斐波纳契数列线和明显的趋势线和价格水平线。
10.
Studies on Optical and Electronic Properties for Fibonacci-class & Generalized Fibonacci Superlattices;
斐波那契类及广义斐波那契超晶格光电性质研究
11.
The first thing I discovered was that610 is part of the Fibonacci series of creational geometry.
我发现的第一件事情是610是创造性几何学斐波纳契级数数列的部分。
12.
The Cuts Number of the Positive Integer to the Addition and Fibonacci Sequence of Number;
自然数n的加法分拆数与菲波那契数列
13.
The judge later confirmed the existence of the code, and revealed that the Fibonacci sequence was indeed the secret to its solution.
之后,法官证实密码确实存在,并说明破解密码的方法就是斐波那契序列。
14.
An Investigation of the Quantum Electronic Spectral Structure of a Special Fibonacci Quasilattice
特殊斐波那契准晶量子电子谱结构探讨
15.
Construction and Noised Persurbed Structures of Quasi-sine Fibonacci M-J Sets
准正弦斐波那契M-J集的构造及其受干扰特性
16.
Pythagoras Meets Fibonacci & Generalization
菲波那契数列满足毕达哥拉斯定理的推广(英文)
17.
Self-assembly on core/shell microstructures driven by stress into triangular and Fibonacci number patterns
内核/壳层微结构上应力驱动的三角和斐波纳契数花样
18.
Fibonacci numbers at least have the virtue of creating a testable proposition; one that they appear to fail.
斐波纳契数的优点在于至少有可测试的主张;一个看起来错了的主张。