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implicit differential equation相关的网络例句

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Under some conditions,the effective method in the second kind of line integrals and the differential equation is derived by using the improvising differential method of indefinite integral.

给出了在一定的条件下,利用不定积分的凑微分法得到了第2类曲线积分及微分方程的一些较为方便的解法

Based on differential theorem by laplace transform.It makes transform of equal value to the initial value problems in differential equation.

控制系统仿真是一种对系统模型做实验的手段,是系统分析和设计的一个重要组成部分。

The chapter two, by using reduction to absurdity and estimating the differential inequality, we investigate the oscillation of a kind of even order half- linear differential equation, and we give an example to validate the theorem.

在第二章中,我们利用反证法及对微分不等式的估计研究了一种偶数阶半线性微分方程解的振动性,接着举了例子验证所得定理。

Two-point boundary value problems of second order mixed type integro-differential-difference equation is studied by means of differential inequality theories.

利用微分不等式技巧研究了某一类二阶混合型积分微分差分方程的两点边值问题,在上下解存在的条件下,得到了解的存在性和唯一性定理。

In Chapter 3, we investigate the delay-dependent stability analysis of linear multistep methods when they are applied to the neutral delay differential equations. We state a necessary condition for any linear multistep method applied to the neutral delay differential equation to be Nτ(0)-stable.

在第3章中,考虑了中立型延迟微分方程线性多步法依赖于延迟的稳定性分析,给出了任意线性多步法是Nτ(0)-稳定的一个必要条件。

There are many problems can be described by the partial differential equation in the natural science and engineering technology field, studying the numeric solution of these partial differential equations is a strong tool for solving these problems.

在自然科学与工程技术领域中有许多问题都可以用偏微分方程来描述,研究偏微分方程的数值解是解决上述问题的有力工具。

Differential Quadrature Method, one of numerical methods of solving boundary problem of differential equation is introduced in this paper. By using DQM, the dynamic stability of pipes conveying fluid and rectangular plates under the action of non-conservative force is studied. The main research work is as follows.

本文首先介绍了求解微分方程边值问题的一种数值方法—微分求积法,然后采用微分求积法分别对输流管道和非保守矩形薄板的稳定性问题进行了分析研究,具体有如下三方面的研究内容。

The oscillation theory of differential equation is one of important branchof differential equations.

微分方程的振动性理论是微分方程理论中一个十分重要的分支,它具有非常深刻的物理背景和数学模型。

A kind of delay parabolic partial differential equation is studied. A numerical method is proposed by discrete skill. The numerical stability for this kind of delay parabolic partial differential is analyzed by interpolation method.

研究了一类时滞的抛物型偏微分方程初边值问题,利用离散技巧,提出了一种数值方法,然后在一定插值技术下分析了算法的稳定性。

METHODS The partial differential equation is reduced into a set of ordinary differential equations by using finite difference method.

采用有限差分方法,将偏微分方程组约化为常微分方程组。

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