资源列表
haar-noiselets
- 本代码用内积的方式求两个矩阵的相关性,即K值大小,用haar矩阵和noiselet矩阵式相关性最低,为1,附带英文文档辅助参考-This code with the inner product sum of two matrices, the K value of size, use the haar matrix and noiselet matrix least 1, with English documentation auxiliary reference
haar-fft
- 本程序求相关性K值大小,采用傅里叶矩阵和haar矩阵内积。-The procedures for seeking the size of the K value of the correlation, the use of the Fourier matrix and haar matrix of inner product.
computer-simulation-
- 数学建模中基本程序,这个主要是线性规划的程序及讲解-Basic procedures in the mathematical modeling, linear programming procedures and explain
linear-plan-
- 数学建模中线性规划问题的matlab程序以及讲解-Linear programming problems in mathematical modeling matlab program, as well as explain
Fund1
- 显示1-20内的素数,更改数组大小,可以改变范围-Display within the 1-20 prime number, change the array size, you can change the scope of
yanshejisuan-MATLAB
- 功能: 菲涅耳衍射的S-FFT计算 执行:调入一图像,计算平面波照射下给定波长及距离的衍射场振幅图像 -Given wavelength and the distance of the diffraction field amplitude image function: Fresnel diffraction of the S-FFT calculation of Execution: transferred to an image, computing the plane wave
FT
- 傅里叶变换可以把数据转换到频域中,是数学计算常用的变换方法-Fourier transform data conversion into the frequency domain, the mathematical calculations commonly used in transformation
2008_522708934
- 用Ansys求解结构动力学的例题,包含详细的建模方法以及ANSYS中操作步骤,以及详细的前后处理-A total series of examples in how to solve dynamic problems. The procedures are detailed included in how to model and solve it with the help of ANSYS
060455
- 墙柱配筋辅助软件,减少计算工作量,实在是工程师必备良方-Wall and column reinforcement supporting software, to reduce the computational workload, it is the engineers essential recipe
stack
- 实现一个简单的整数计算器,能够进行加,减,乘,除以及乘方运算。-A simple integer calculator capable of addition, subtraction, multiplication, in addition to and power computing.
chazhi3line
- 插值3次多项式曲线,含追赶法源程序,m关系式的计算方法-Three times a polynomial interpolation curve with the source of catch-up method, m relation calculated
Three_body_question
- 三体问题,用于求解地球、月球的轨道的计算,运用的是龙格库塔法-Three-body problem is used to solve the earth, the calculation of the orbit of the moon, using the Runge-Kutta method
