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1.
The typical way to analyze dynamic circuit is writing differential equation, then obtaining the solution.
求解动态电路一般是列微分方程,解微分方程.
2.
approximate analytic solution of ordinary differentialequation
常微分方程近似解析解
3.
differential equation pseudocode interpreter
微分方程伪码解释器
4.
Numerical Solutions of Modern Differential Equations ?
现代微分方程数值解
5.
fundamental solution of partial differential equation
偏微分方程的基本解
6.
analytic theory of ordinary differential equation
常微分方程解析理论
7.
Numerical Methods for PDE
偏微分方程数值解法
8.
The new exact solutions of Volterra difference-differential equation and KdV difference-differential equation
Volterra差分微分方程和KdV差分微分方程新的精确解
9.
Solutions to Several Classes of Nonlinear Differential Equations and Integral Equations;
几类非线性微分方程和积分方程的解
10.
Behavior for Solutions of Differential and Difference Equations;
微分方程和差分方程解的性质的研究
11.
Analytic Solutions and Smooth Solutions of Iterative Differential Equations;
迭代微分方程解析解与光滑解的研究
12.
A New Method to Figure Out Differential Equation: Differential Arithmetic Operators Progression Method;
微分方程的新解法——微分算子级数法
13.
Fractional Partial Differential Equation s Numerical Solution and Fundamental Solution;
分数阶偏微分方程的数值解及基本解
14.
Particular Solution for a Class Riccati Equation on System of Differential Equations of First Order
用一阶微分方程组求Riccati方程的特解
15.
Spectral Galerkin Method for Volterra Integro-Differential Equations
谱Galerkin方法求解Volterra积分微分方程
16.
Derivation and solutions to the differential form of mass conservation equations.
质量守恒微分方程的推导解析和解答。
17.
Almost Periodic Solutions and Periodic Solutions for Several Kinds of Functional Differential Equations;
几类泛函微分方程概周期解与周期解
18.
Analytic Solutions of Certain First Order Iterative Functional Differential Equations;
一类一阶迭代泛函微分方程的解析解