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[
Mathimatics-Numerical algorithms
]
Cantor 表问题
DL : 0
Cantor 表问题: 问题描述: 把分子和分母均小于108 的分数按下面的办法排成一个数表。 1/1 1/2 1/3 1/4 1/5 ... 2/1 2/2 2/3 2/4 2/5 ... 3/1 3/2 3/3 3/4 3/5 ... 4/1 4/2 4/3 4/4 4/5 ... 5/1 5/2 5/3 5/4 5/5 ... ... ... 我们以Z 方形方法给上表的每项编号。第一项是1/1,第二项是1/2, 然后是2/1,3/1,2/2,1/3,1/4,2/3,3/2,4/1,5/1,4/2,...... 要求:对于给定的输入的编号N(0<N<10000),能够输出其中的第N 项。 如: 输入N = 7; 输出1/4。-Cantor Table : Problem description : put both the numerator and the denominator of the fraction is less than 108 by the following methods formed a few tables. 1 / 1 1 / 2 1 / 3 1 / 4, 1 / 5 ... 2 / 1 2 / 2 2 / 3 2 / 4 2 / 5 ... 3 / 1, 3 / 2 3 / 3 3 / 4 3 / 5 ... 4 / 1 4 / 2, 4 / 3, 4 / 4, 4 / 5 ... 5 / 1 5 / 2, 5 / 3, 5 / 4 5 / 5 ... ... ... Z to square our side France to the table each numbered. The first is the 1 / 1, 2 1 / 2, followed by 2 / 1, 3 / 1, 2 / 2, 1 / 3, 1 / 4, 2 / 3, 3 / 2, 4 / 1, 5 / 1, 4 / 2 ...... requirements : For a given input of the number N (0lt; Nlt; 10000), to which the output of N items. Such as : N = 7 importation; Output 1 / 4.
Update
: 2008-10-13
Size
: 3.52kb
Publisher
:
欧
[
Mathimatics-Numerical algorithms
]
Cantor 表问题
DL : 0
Cantor 表问题: 问题描述: 把分子和分母均小于108 的分数按下面的办法排成一个数表。 1/1 1/2 1/3 1/4 1/5 ... 2/1 2/2 2/3 2/4 2/5 ... 3/1 3/2 3/3 3/4 3/5 ... 4/1 4/2 4/3 4/4 4/5 ... 5/1 5/2 5/3 5/4 5/5 ... ... ... 我们以Z 方形方法给上表的每项编号。第一项是1/1,第二项是1/2, 然后是2/1,3/1,2/2,1/3,1/4,2/3,3/2,4/1,5/1,4/2,...... 要求:对于给定的输入的编号N(0<N<10000),能够输出其中的第N 项。 如: 输入N = 7; 输出1/4。-Cantor Table : Problem description : put both the numerator and the denominator of the fraction is less than 108 by the following methods formed a few tables. 1/1 1/2 1/3 1/4, 1/5 ... 2/1 2/2 2/3 2/4 2/5 ... 3/1, 3/2 3/3 3/4 3/5 ... 4/1 4/2, 4/3, 4/4, 4/5 ... 5/1 5/2, 5/3, 5/4 5/5 ... ... ... Z to square our side France to the table each numbered. The first is the 1/1, 2 1/2, followed by 2/1, 3/1, 2/2, 1/3, 1/4, 2/3, 3/2, 4/1, 5/1, 4/2 ...... requirements : For a given input of the number N (0lt; Nlt; 10000), to which the output of N items. Such as : N = 7 importation; Output 1/4.
Update
: 2025-02-19
Size
: 3kb
Publisher
:
欧
[
GUI Develop
]
Cantor
DL : 0
本程序显示为分形中的一个图形,很象迷宫。利用分形学的基础知识算法实现的。-this procedure showed the fractal a graphics, much like a maze. Fractal use of the basic knowledge of the algorithm.
Update
: 2025-02-19
Size
: 54kb
Publisher
:
符宗夏
[
Other
]
2fractal
DL : 0
分形的mandelbrot和cantor,koch图形,使用matlab编写。-the Mandelbrot fractal and Cantor, koch graphics, the use of Matlab prepared.
Update
: 2025-02-19
Size
: 1kb
Publisher
:
邓德鑫
[
Fractal program
]
FractalVFX
DL : 0
基于DirectDraw的分形演示程序,实现了 SierGasket, Tree, Koch, Cayley, Cantor, Mandelbrot, Sierpinski, TriWingEagle(三翅鹰)的显示。-based DirectDraw Fractal demo program, achieving SierGasket. Tree, Koch, Cayley, Cantor, Mandelbrot. Sierpinski, TriWingEagle (3-winged hawk) show.
Update
: 2025-02-19
Size
: 243kb
Publisher
:
张静
[
Fractal program
]
cantor
DL : 0
康托集的JVA代码,使用eclips开发的程序-Cantor set JVA code, the use of procedures developed by Eclips
Update
: 2025-02-19
Size
: 2kb
Publisher
:
suitao
[
SCM
]
cantor
DL : 0
给定一条初始直线,生成Cantor三分集-First,you should give a original line. Then,you can get a Cantor set.
Update
: 2025-02-19
Size
: 3.51mb
Publisher
:
[
SCM
]
2_01
DL : 0
cantor三分集的递归算法,按照三分集的生成规则表示在绘图空间中的生成关系-one-third cantor set recursive algorithm, in accordance with the two-thirds of the generation of rules set at the generation of mapping the relationship between space
Update
: 2025-02-19
Size
: 1.84mb
Publisher
:
杨明
[
Graph program
]
koch
DL : 0
MATLAB中的科赫曲线分形几何的概念是美籍法国数学家曼德尔布罗特(Mandelbrot)于1975年首先提出的,但最早的工作可追朔到1875年,德国数学家维尔斯特拉斯(Weierestrass)构造了处处连续但处处不可微的函数,集合论创始人康托尔(Cantor,德国数学家)构造了有许多奇异性质的康托尔三分集。-World of Koch Through the creation of high-value products and services, coupled with the wise management of natural resources, Koch Industries, Inc., and its affiliates are
Update
: 2025-02-19
Size
: 1kb
Publisher
:
lijp
[
JSP/Java
]
CANTOR
DL : 0
Cantor集,java语言实现的分形图形算法的程序,应运于分形的研究-Cantor is used for fratcal ,it is a sample for learning and studing the fratcal classes.
Update
: 2025-02-19
Size
: 2kb
Publisher
:
ganggang
[
matlab
]
CantorDust
DL : 0
cantor dust programm using iteration
Update
: 2025-02-19
Size
: 7kb
Publisher
:
ruud
[
Fractal program
]
2_01
DL : 0
内含三分cantor集的C++源码,初学分形的朋友注意了-Cantor set contains one-third of C++ source code
Update
: 2025-02-19
Size
: 39kb
Publisher
:
唐振华
[
FlashMX
]
Cantor
DL : 0
用flash编写的Cantor三分集曲线源代码,在cs4编译下通过-Prepared by flash-third Cantor set of curves of the source code through the compiler in cs4
Update
: 2025-02-19
Size
: 6kb
Publisher
:
notgoodman
[
Windows Develop
]
cantor-set_0810447
DL : 0
it is a program to generate the cantor set
Update
: 2025-02-19
Size
: 10kb
Publisher
:
mimi
[
matlab
]
cantor
DL : 0
Cantor in chaotic analysis in quasi-periodic root to chaos
Update
: 2025-02-19
Size
: 1kb
Publisher
:
ayub shokrollahi
[
matlab
]
cantor
DL : 0
该函数实现了cantor三分集的生成,例如输入cantor(0,0,1,0)即可产生[0,1]区间的三分集-The function implements the generation of the cantor ternary set, for example, enter the cantor (0,0,1,0) to generate the third set of the interval [0,1]
Update
: 2025-02-19
Size
: 7kb
Publisher
:
杨峰
[
Graph Drawing
]
Cantor-set-algorithm
DL : 0
初学者的几个在MFC工程中实现的图形学算法例子Cantor集算法(1)- a few examples of graphics algorithm implemented in the MFC for beginners ,project Cantor set algorithm
Update
: 2025-02-19
Size
: 248kb
Publisher
:
saberproxy
[
Graph Drawing
]
Cantor
DL : 0
画图算法--Cantor集算法,用于学习,是算机图形学基础的基础算法。-Drawing algorithm- Cantor set algorithm for learning the basic algorithm for computer graphics based.
Update
: 2025-02-19
Size
: 341kb
Publisher
:
chensiyuan
[
2D Graphic
]
Cantor
DL : 0
Cantor集算法 自定义二维坐标系 使用对话框输入Cantor的递归深度 然后绘制相应的Cantor集-Cantor set algorithm custom dialog to enter the two-dimensional coordinate system using recursion depth and then draw the corresponding Cantor Cantor set
Update
: 2025-02-19
Size
: 174kb
Publisher
:
Cavalier
[
matlab
]
cantor
DL : 0
一、Cantor三分集的递归算法 选取一个欧氏长度的直线段,将该线段三等分,去掉中间一段,剩下两段。将剩下的两段分别再三等分,各去掉中间一段,剩下四段。将这样的操作继续下去,直到无穷,则可得到一个离散的点集。点数趋于无穷多,而欧氏长度趋于零。经无限操作,达到极限时所得到的离散点集称之为Cantor集。-A recursive algorithm selection Cantor ternary set a Euclidean line segment length, the three equal segments, remove the middle section, and the remaining two. The remaining two aliquots were repeated, removing the middle section of each of the remaining four. This operation will continue until infinity, you can get a discrete set of points. Points tends to infinity and more, and the Euclidean length tends to zero. After unlimited operation, discrete points obtained when reaching the limit set called the Cantor set.
Update
: 2025-02-19
Size
: 1kb
Publisher
:
yangyong
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