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fen
- 程序简介: 本程序是用Java实现的分形程序,实现了绘制M集分形的功能,并且可以方便的管理分形的颜色,可以将绘制得到的分形保存为图片文件,更可以对选中的一片分形区域进行反复的放大绘制。 程序采用Java语言书写,在编写过程中十分注重程序的架构,采用了完全的面向对象的程序设计方法。程序代码整洁清晰,在适当的地方做了注释,以方便大家的阅读和研究。-guide : This procedure is used Java Fractal procedures to achieve the map
fractal-FBM
- 分形里面的随机中点位移法(分形布朗运动),要正常运行程序,必须在机器上装OPEN GL,有原代码,可用于三维地形仿真显示方面,但是缺点是比较占用资源-fractal random inside the midpoint displacement method (FBM), to be normal operating procedures, must be in machinery makeup OPEN GL, the original code can be used for three-d
4_01
- 再传些《分形算法与程序设计VC版》一书中所讲解的程序设计的源代码及部分供参考的效果图<4_01>:内含IFS算法源代码。双击Debug下的ifs01.exe文件,程序运行;双击ifs01.dsw文件,进入编辑环境。-more "fractal algorithms and program design VC version" a book on the design process and the source code for some reference Dr
DRAW_CLOCK
- 这是一个适合初学者的一个时钟,好看好玩,还是一个比较适合初学者的c-for beginners of a clock, pretty fun, or a more suitable for beginners to the c
fxfb
- 分形图形 本程序由 Hss 设计!( 2001.10.1 ) 左键拖动为放大,右键拖动为缩小。 录制GIF动画时,更长的时间片断将占用更大的内存空间。 It codes by HSS ( 2001.10.1 ). Drag left button down when you want to zoom in , and drag right button down when you want to zoom out. As recording GIF animator,longer time se
gwfb
- 分形图形2 本程序由 Hss 设计!( 2001.10.1 ) 左键拖动为放大,右键拖动为缩小。 录制GIF动画时,更长的时间片断将占用更大的内存空间。 It codes by HSS ( 2001.10.1 ). Drag left button down when you want to zoom in , and drag right button down when you want to zoom out. As recording GIF animator,longer time s
hss_ifs
- 分形IFS系统 It codes by HSS ( 2001.10.1 ). Drag left button down when you want to zoom in , and drag right button down when you want to zoom out. As recording GIF animator,longer time segment will take more RAM.-Fractal It IFS system codes by HSS (2001.1
fxjh
- 分形图形的选择进化 It codes by HSS ( 2001.10.1 ). Drag left button down when you want to zoom in , and drag right button down when you want to zoom out. As recording GIF animator,longer time segment will take more RAM.-fractal graphics options evolutionary It
KOCH 曲线
- 自己写的KOCH曲线,利用OpenGL和C++实现,本来发在我的blog上面,http://www.cppblog.com/deercoder/articles/101583.html 居然下载达到410次,发到这里,希望更多的人能够受用,同时欢迎大家访问我的blog。-Wrote it myself, KOCH curve, using OpenGL and C++ implementation, hair in my blog above, http://www.cppblog.com
KOCH
- 自己写的KOCH曲线,利用OpenGL和C++实现,本来发在我的blog上面,http://www.cppblog.com/deercoder/articles/101583.html 居然下载达到410次,发到这里,希望更多的人能够受用,同时欢迎大家访问我的blog。-Wrote it myself, KOCH curve, using OpenGL and C++ implementation, hair in my blog above, http://www.cppblog.com/
Geometrycalculator
- 常用几何图形计算,算法不难,就是比较麻烦,可供参考-Common geometric calculations, the algorithm is not difficult, is more trouble, for reference
project3
- 令人着迷的电影特效,到医学成像、电子游戏和更多的领域,3D图形所带来的冲击不亚于一场革命。这项从五年前(1996年)开始,带来了个人电脑消费风暴的技术,根源于学术界和军事。其实从某种程度上来说,我们今天在个人电脑上所享受的3D图形算是一种“和平红利”,许多最初设计军事模拟器的专家如今在从事3D图形芯片,电影和游戏开发产业的工作。 除娱乐之外,3D图形技术在计算机辅助设计(CAD)上为工业设计带-Fascinating film special effects, to medical imagin
iphoneSierpinski
- iphone上的Sierpinski分形, 用来学习IPHONE OBJECTIVE C编程, 如UIImageViews-The Sierpinski triangle, also called the Sierpinski gasket or the Sierpinski Sieve, is a fractal named after Sierpinski who described it in 1915. Originally constructed as a curve, this is
2_01
- 经典分形算法 对分形的爱好者比较有用 经典分形算法 对分形的爱好者比较有用-Classical fractal algorithm of the more useful fractal lovers Classical fractal algorithm of the more useful fractal lovers
2_02
- 经典分形算法 对分形的爱好者比较有用 经典分形算法 对分形的爱好者比较有用-Classical fractal algorithm of the more useful fractal lovers Classical fractal algorithm of the more useful fractal lovers
2_03
- 经典分形算法 对分形的爱好者比较有用 经典分形算法 对分形的爱好者比较有用-Classical fractal algorithm of the more useful fractal lovers Classical fractal algorithm of the more useful fractal lovers
2_04
- 经典分形算法 对分形的爱好者比较有用 经典分形算法 对分形的爱好者比较有用-Classical fractal algorithm of the more useful fractal loversClassical fractal algorithm of the more useful fractal lovers
2_05
- 经典分形算法 对分形的爱好者比较有用 经典分形算法 对分形的爱好者比较有用-Classical fractal algorithm of the more useful fractal lovers Classical fractal algorithm of the more useful fractal lovers
0602kochsnow
- 图形学分形能比较简便的实现较简单的分形,而且都是经典的分形代码-Graphics credits to a more simple form than the simple fractal realization, and all the classic fractal code
detection_of_phase_distributed_weak_sine_signal_ba
- 基于双耦合Duffing振子的随机相位正弦信号检测 采用双耦合混沌振子阵列实现了随机相位微弱正弦信号的检测,在此基础上,提出了新的检测方法,即利用单个耦合混沌振子,通过临界及周期状态 的变化检测随机相位微弱正弦信号并大致估计信号相位范围,该方法比双耦合混沌振子阵列法简单,更易于实现。-Based on double coupled Duffing oscillators random phase sine signals detected by two coupled chaotic o