Description: defequ,是用来解偏微分方程的求解器。能够自主定义边界条件,并且可以得到图示的效果。-defequ is used solution of partial differential equations solver. Autonomy definition of boundary conditions, and can be Picture shows the effect. Platform: |
Size: 227928 |
Author:王永科 |
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Description: defequ,是用来解偏微分方程的求解器。能够自主定义边界条件,并且可以得到图示的效果。-defequ is used solution of partial differential equations solver. Autonomy definition of boundary conditions, and can be Picture shows the effect. Platform: |
Size: 227328 |
Author:王永科 |
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Description: Differential Equations (ODE) Solver through Galerkin Method
Galerkin方法求解常微分方程组的实现
这个matlab程序通过Galerkin方法求解常微分方程组,当然求解的结果是
Differential Equations (ODE)近似的解。-Differential Equations (ODE) Solver through Galerkin Method Galerkin method for solving ordinary differential equations matlab program to achieve this through the Galerkin method for solving ordinary differential equations, of course, a result of solving Differential Equations (ODE) approximation of the solution. Platform: |
Size: 203776 |
Author:adu |
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Description: 求解偏微分方程,使用LF格式求解程序,具体方程见程序-Solution of partial differential equations, using the LF format solver Platform: |
Size: 1024 |
Author:xiangdalin |
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Description: 数值方法的5个重要的算法:
1.[Dirich.m] 求解拉普拉斯方程的狄利克雷方法. 用于偏微分方程的数值解
2.[Hamming.m] 汉明方法是用来修正微分方程的多步预测。
3. [Milne.m] 米尔恩 - 辛普森差分方程求解方法,用于预测校正方法。
4. [Rkf45.m]龙格 - 库塔 - 沃尔伯格错误控制和步骤的方法求解微分方程的近似解
5.[Romber.m]著名的龙贝格积分源代码。计算结果存在并显示为下三角矩阵。-Numerical Methods in five of the more important algorithms:
1. [Dirich.m] to solve the Laplace equation Dirichlet method for the numerical solution of partial differential equations
2.[Hamming.m] Hamming method is the multistep forecast corrected differential equations.
3. [Milne.m] the Milne- Simpson method as a differential equation solver used forecast correction method.
4. [Rkf45.m] Runge- Kutta- Wahlberg error control and step method for solving differential equations approximate solution
5. [Romber.m] the famous Romberg integral source code numerical integration, the presence of computable results show a lower triangular matrix. Platform: |
Size: 4096 |
Author:黄建理 |
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Description: 基于Matlab用于求解常微分方程的小程序,非常好用,欢迎下载。-Matlab-based applet for solving ordinary differential equations, and very easy to use, welcome to download. Platform: |
Size: 2048 |
Author:liang |
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Description: Matlab计算微分方程、矩阵求解、数据插值、曲线拟合的pdf原文与程序包。必须顶!-Matlab computing differential equations, matrix solver, data interpolation, curve fitting and pdf original package. You must be the top! Platform: |
Size: 5870592 |
Author:赵峰 |
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Description: 龙格库塔法和fft转换计算非线性微分方程,十分好用。简单方便。-Runge kutta method and FFT transformation calculation of nonlinear differential equations, is very good.Easy and convenient. Platform: |
Size: 1024 |
Author:Bian |
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Description: 利用MATLAB对偏微分方程的形式进行分析,编程求解-In the form of partial differential equations using MATLAB for analysis, programming solver Platform: |
Size: 990208 |
Author:jane |
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Description: 利用解微分方程组的求解器,计算利用两阶振荡器代表的电力系统一次调频功能。-Using a set of differential equations solver solution, calculated using the two-stage power oscillator system represented a Frequency Modulation. Platform: |
Size: 1024 |
Author:王冠中 |
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Description: 利用边值问题求解器bvp4c求解常微分方程的数值解(The numerical solution of ordinary differential equations is solved by using the boundary value solver bvp4c) Platform: |
Size: 1024 |
Author:xrzy
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Description: OpenFVM is a general CFD solver released under the GPL license. It was developed to simulate the flow in complex 3D geometries. Therefore, the mesh can be unstructured and contain control volumes with arbitrary shape. The code uses the finite volume method to evaluate the partial differential equations. As well as solving the velocity and pressure fields, the code is capable of solving non-isothermal multiphase flow. Platform: |
Size: 269312 |
Author:hua2005
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Description: MATLAB解常微分方程和偏微分方程求解器介绍,算法和用法。结合几个有代表性的案例,一步步讲解,非常简单、清楚,明了(MATLAB solutions to ordinary differential equations and partial differential equations solver, algorithm and usage. A few representative cases, step by step, are very simple, clear and clear.) Platform: |
Size: 496640 |
Author:Shown Liu |
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