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- 模拟非线性常微分方程的解的图像变化趋势与变化规律(An image of a nonlinear differential equation is simulated)
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- 模拟常微分方程组的解的变化规律,反馈稳定解到稳态点(An image of a nonlinear differential equation is simulated)
OpenCVlyh02
- 数字摄影测量中数字微分纠正的部分代码,希望大家多多指正(digital photogrammetry)
数值微分
- 数值分析求数值微分问题的matlab的范例,超好用der((Numerical analysis of the Matlab example, super easy to use der))
常微分方程的初值问题
- 数值分析常微分初值问题的matlab的范例,超好用der ((Numerical analysis of the Matlab example, super easy to use der))((Numerical analysis of the Matlab example, super easy to use der))
显示格式
- 三种抛物型偏微分方程数值解法的matlab代码,利用的方法是显示差分格式。(the numerical solution of three kinds of parabolic function using the explicit method.)
四阶PDE_denoise
- 包含了一个四阶偏微分的去噪程序以及其子程序(The denoising procedure of the fourth-order partial differential)
常微分方程组的四阶RungeKuttamatlab实现
- 常微分方程组的四阶RungeKutta龙格库塔法matlab实现(RungeKutta realization of four order Runge Kutta method for ordinary differential equations matlab)
牛顿插值和欧拉法解方程
- 欧拉法解常微分方程和牛顿插值法,是数值分析中的经典算法,适合初学者。(Euler solutions of ordinary differential equations and newton interpolation are the classic algorithms, they are suitable for beginners.)
数值偏微分方程快速迭代计算
- 利用Matlab数值计算偏微分方程的快速迭代计算。(Fast iterative computation of partial differential equations by Matlab numerical method.)
_dde23
- 计算随机DDEd的pathon代码,可以包含噪声,可以解决复杂微分方程组的时间演化问题(calculate the random delayed-differential equation)
SDE_Toolbox_1.4.1
- 本工具包可用于matlab编写程序模拟随机常微分方程。(This toolkit can be used for matlab programming to simulate stochastic ordinary differential equations.)
偏微分方程的数值解法
- 偏微分方程的经典求解方法,有限元分析法,可以求解典型的偏微分方程的数值解(The classical solution of partial differential equations and finite element analysis can solve the numerical solutions of typical partial differential equations)
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- 基于偏微分方程和区域一致性测度的图像边界检测(3 based on partial differential equation and the region consistency measure image boundary detection)
Matlab
- 一个简单的MATLAB程序解决微分方程,不知道写啥(A simple of program to solve differential equations, do not know what to write)
jfchs
- 可求解一微分方程,在得到解析解的同时用matlab画出方程图像。(A differential equation can be solved and the image can be obtained.)
CONTROL
- 使用adams法和R-4K法求解微分方程,并且比较精度(Adams method is used to solve differential equations, and the accuracy is compared)
pde1
- 用数值方法有限差分法求解二阶偏微分方程附带C分解(partial differential equation)
连续系统的微分方程matlab实例
- 可利用MATLAB软件编写,求取路面时域模型,同时也便于求解一些复杂的微分方程(MATLAB software can be used to obtain the time domain model of the road surface, and it is also convenient to solve some complex differential equations)
RungerKutta
- 龙格-库塔法(Runge-Kutta methods)是用于非线性常微分方程的解的重要的迭代法。(Longge Kutta algorithm used to solve ordinary differential equations.)