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mittag-leffter-function
- 用mittaga-leffter函数求解分数阶微分方程. copyright:Igor Podlubny-Solution of fractional differential equation using mittaga- leffter function. copyright: Igor Podlubny
BE_shooting
- 使用欧拉方法实现打靶法,解决带有边界条件的布拉修斯方程。-Simple shooting with Euler method to the Blasius equation
ordinary-differential-equation
- 本次课程设计中,主要讨论了常微分方程的初值问题数值解法。文章主要分3大块,分别是:1.简单介绍几种常微分方程的初值问题数值解的求法,给出其算法流程图和相应matlab程序。2.通过运用典型的数值解法如Eulor方法,改进Eulor方法,Runge-Kutta方法求解具体常微分方程并分析对比方法收敛阶、稳定性。3.进一步去用以上三种方法求解Lotka-Volterra方程,分析食饵与捕食者模型,得出相关结论。-The curriculum design, focused on the numeri
Volume-Molar-of-Mixture
- Calculate the molar volume of a gas mixture consisting of 50 mol propane (1), 20 n-butane (2), and 30 n-pentane (3) at 393 K and 40 bar using: (a) van der Waals equation of state. (b) Peng-Robinson equation of state-Calculate the molar volume of
dsaddheader
- to solve equation type
implicit_fde_5_7
- 时间分数阶方程隐式格式 运用此格式来解方程-Implicit format time fractional order equation,Use this format to solving equations
xianxingdabafa
- 利用线性打靶法计算变系数的微分方程,并画图-The second- order differential equation with variable coefficient is solved by linear target method, and the content is detailed
rechuandaofangcheng
- 热传导方程采用前向差分法求解,内容详细,通俗易懂,并配图像-The heat conduction equation is solved by the forward difference method, the content is detailed, easy to understand, and with the image
奇非线性参数激励n=1完善版
- 运用超越摄动同伦法,求解动力学方程,并进行动力学方程结果的图形化(The transcendental perturbation homotopy method is used to solve the dynamic equation, and the graphical results of the dynamic equation are obtained)
方程求根
- MATLAB里面常用的方程求解程序,里面包括各类常用的数值分析算法(MATLAB is commonly used in the equation solver, including various commonly used numerical analysis algorithms.)
第16章 偏微分方程的数值解法
- 工程应用中的偏微分方程的数值解法,包括源代码和函数索引,用于matlab中PDE工具箱的学习(Numerical solution of partial differential equation in engineering application)