所以你要做的第一件事是你写下,你的微分方程。
So the first thing you do is your write down your differential equations.
因此可以马上写下,这个微分方程的,解法。
So you can write down immediately the solution to this differential equation.
这个微分方程的,解法是什么呢?
得到一个微分方程。
这是个微分方程。
我们不再讨论微分方程序。
这是一个,由电场e确定的偏微分方程。
It is a partial differential equation satisfied by the electric field e.
例如,这个解决方案的微分方程是一个功能。
For example, the solution of a differential equation is a function.
在论文的最后,给出了倒向随机微分方程在金融中的几个应用。
At the end of the paper, we give the application of BSDE in finance.
最后,给出了上述问题在偏微分方程方面的一个应用。
At last, an application of this problem in partial differential equation is also discussed.
类似的方法还可以用在其它类型的偏微分方程数值解中。
Similar method may be applied in other types of partial differential equations.
这将是对偏微分方程数值分析方法的新的重要尝试。
This is a important attempt for the numerical analysis methods of PDEs.
这是研究正倒向随机微分方程的基础。
This work is a foundation of the study of forward-backward equations.
常微分方程是大自然的语言。
The Ordinary differential equation is the language of the nature.
常微分方程中经典的存在性定理不能使用。
Often the existence axioms of classic in the differential calculus square distance can't use.
加州理工学院也纷纷发表自己的偏微分方程研究的一些优秀的信息。
CalTech have also published some excellent information on their own PDE research.
该控制微分方程求解简便。
The solution of the governing differential equations is very easy.
本文给出了在复杂运动条件下,单摆的运动微分方程。
This paper give differential equations of the motion of the complex pendulum.
中心焦点判定是微分方程定性理论的重要组成部分之一。
The center focus decision problem is an important part of the differential equation theory.
建立了在该状态下的运动微分方程。
Motion differential equation is established in this condition.
讨论一种新的图像分辨率增强的偏微分方程模型。
This paper discusses a new partial differential equation model for resolution enhancement of image.
本文由费马原理的变分形式,导出光线微分方程。
Ray equation is derived from Fermat's principle in variation form.
而一个偏微分方程就是,函数各个偏导之间的联系,看看。
And a partial differential equation is some relation between its partial derivatives. Let me see.
第二类为时滞依赖于状态的微分方程。
目的寻求一种新的描述基因调控网络的微分方程模型。
Objective to explore a new differential equation to describe gene regulatory network.
在求解气相场微分方程时用SIMPLE方法。
该模型的数学形式是一个非线性二阶常微分方程,利用有限差分方法进行求解。
The mathematical expression of this model is a second order non linear ordinary difference equation.
其运动方程是一个非线性微分方程。
本文主要讨论偏微分方程在图像去噪中的应用。
In this paper, we will discuss the application of PDE in image denoising.
本文主要讨论偏微分方程在图像去噪中的应用。
In this paper, we will discuss the application of PDE in image denoising.
应用推荐