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1)  Ordinary Differential Equation(ODE)
常微方分程
2)  ordinary differential equation
常微分方程
1.
Positive solutions to sub-linear ordinary differential equations;
次线性常微分方程边值问题的正解
2.
Analysis and comparison of some numerical methods for the initial value problem of ordinary differential equations;
常微分方程初值问题若干数值方法的分析比较
3.
The implications from “many solutions” to ordinary differential equation;
常微分方程“一题多解”的启迪
3)  differential equation
常微分方程
1.
Elementary integration method for A kind of differential equation;
一类特殊的一阶常微分方程的初等积分法
2.
A note of the existence and uniqueness of solution of differential equations in Banach space;
Banach空间中常微分方程解的存在唯一性定理的注
3.
Integral criterior to one kind of first-order differential equation;
一类一阶常微分方程的可积判据
4)  ODE [英][əʊd]  [美][od]
常微分方程
1.
Explicit exact solutions to ODE and applications;
常微分方程的精确解及其应用(英文)
2.
This paper introduces a procedure which has the aid of built in nonlinear dependent sources in PSpice, the main stream software in the field of circuits and electronics, to construct the macro models of ordinary differential equations (ODE) which are the commonly used models of systems in research and practical engineering.
提出了运用PSpice内置受控源建立常微分方程宏模型的一般方法。
3.
W hen the PDE model of MOSFETs is applied for circuit simulation, the system equat ion becomes a coupled system, including partial differential equations (PDE), or dinary differential equation (ODE), and algebraic equations (AE).
当MOSFET PDE模型用于射频 (RF)电路仿真时 ,系统方程为一个耦合系统 ,包括偏微分方程 (PDE)、常微分方程(ODE)和代数方程 (AE)。
5)  constant differential equation
常微分方程
1.
A weighted derivative numerical computation solving constant differential equations;
常微分方程数值计算导数权重法
2.
The Methods for Get Constant Differential Equation s Initial Value in VB;
VB实现常微分方程初值求解的算法
6)  Ordinary differential equations
常微分方程
1.
Application of Mathematica in Ordinary Differential Equations;
计算机数学软件在常微分方程中的应用
2.
The application of the existence theorem in singular solution of first order ordinary differential equations
一阶常微分方程的奇解的存在定理的应用
3.
This paper generalizes the maximum principle for a class of second order ordinary differential equations , and obtains two important theorems .
对一类二阶常微分方程最大值原理进行了推广,得到了两个定理。
补充资料:献张义方常侍
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【出处】:
全唐诗:卷747-42
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