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- 哈夫曼编码,实现哈夫曼树和哈夫曼编码。首先生成一个哈夫曼树,然后用这颗树对所有字符进行哈夫曼编码。
Hermite 埃尔米特差值多项式
- 埃尔米特差值多项式 利用Hermite插值多项式 求被插值函数f(x)在点x=0.55处的近似值-Difference between the use of Hermite polynomial Hermite interpolation polynomial interpolation functions demand is f (x) at point x = 0.55 at the approximate
zxexf
- 曲线拟合的最小二乘法 实验用例: 已知函数y=f(x)的一张表: x 0 10 20 30 40 50 60 70 80 90 y 68 67.1 66.4 65.6 64.6 61.8 61.0 60.8 60.4 60 试验要求:利用曲线拟合的线性最小二乘法求被逼近函数f(x)在点x=55处的近似值,并画出实验数据和直线-Method of least squares curve fitting of the experimental cases: known func
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- 用Monte Carlo方法计算如下定积分,并讨论有效数字位数。-Monte Carlo method with the following definite integral, and discuss the significant digits.
dtft
- N分别取45,50,55,60时的FFT频率响应曲线绘图. -N respectively 45,50,55,60 when FFT frequency response curve drawing.
nd
- 本程序利用牛顿插值法对函数表,求出各阶均差值并通过输入x值得到函数值。例如(课本 ) 给出 的函数表 X 0.40 0.55 0.65 0.80 0.90 y 0.41075 0.57815 0.69675 0.88811 1.02652 均差求至4阶,并由此计算 的近似值 运行环境:C-Free -This procedure for the use of Newton' s interpolation function table, find the diffe
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- oad 200 files). Webmaster will activate your member account after checking your files. If you do not want to upload source code, you can join the [VIP member] to activate your account.
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- 正交矩阵与正交变换的课件,总结的非常好,利于理工类的学生对数学知识的加深-Orthogonal matrix with orthogonal transformation of the courseware, lessons very well, which will help students in science and engineering to enhance the knowledge of mathematics
Eular-Engineering
- Euler工程,相邻元素乘积最大。 给了一个20x20的两位数矩阵,其中的红字部分的积为: 26x63x78x14=1788696 那么,任意方向上(上、下、左、右、对角)4个相邻的数的最大乘积是多少?-In the 20x20 grid below, four numbers along a diagonal line have been marked in red. 08 02 22 97 38 15 00 40 00 75 04 05 07 78 52 12 50 7
Eular-Engineering
- 自然数求和可生成三角数列.第七个三角数是1 + 2 + 3 + 4 + 5 + 6 + 7 = 28.前10个三角数列元素是: 1, 3, 6, 10, 15, 21, 28, 36, 45, 55, ... 下面列出前7个三角数及其整除数: 1: 1 3: 1,3 6: 1,2,3,6 10: 1,2,5,10 15: 1,3,5,15 21: 1,3,7,21 28: 1,2,4,7,14,28 可以看出,28是第一个有超过5个整除
quxiannihe
- 利用曲线拟合的线性最小二乘法求被逼近函数f(x)在点x=55处的近似值,并画出实验数据和直线。-c language curve fitting
Dynamic-Fibonacci
- 动态规划计算斐波那契数(后一个数等于前面两个数的和)1,1,2,3,5,8,13,21,34,55,89,144…… -Dynamic programming computes Fibonacci numbers (after a number equal to the previous two numbers) 1,1,2,3,5,8,13,21,34,55,89,144 ......
robotsV2
- VC 工业机器人控制源码 #include<windows.h>//包含基本数据类型定义 #include<stdlib.h> //数学函数库 #include<string.h> //数学函数库 #include<stdio.h>//输入输出库 #include math.h #include winio.h #define ID_MYBUT50 50//自动运行 #define ID_MYBUT51 51//
