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secular equation相关的网络例句

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Wave equation, heat conduction equation and Laplace's equation are the second-order linear equations.

波动方程、热传导方程和拉普拉斯方程都是二阶线性方程。

It starts from the Laplace equation of a two-phase interface, to the Young equation of three-phase contact line, as well as some modifications on the Young equation appeared in literature.

文章从介绍二相界面的Laplace方程开始,到Young提出的关于三相接触线的平衡方程,以及后来的一些研究者对其做的修正补充。

Governing equation s adopted are Stokes equation for momentum and Laplace equation for energy.

由于研究对象是小液滴缓慢的热毛细迁移过程,因而所采用的控制方程中动量方程为StokeS方程、能量方程为Laplace方程。

Making use of the fundamental solution of Laplace equation, we change the nonhomogeneous Helmholtz equation with veriable coeffients into integral equation.

利用Laplace方程的基本解,将变系数非齐次Helmholtz偏微分方程的边值问题化为积分方程问题。

First the topological relations between the unknown points and known points are built as a linear constrain, then the DSI equation group is formulated by combining Laplace equation with the linear constrain equation.

首先由待插值点与已知点之间的拓扑关系建立线性约束,进一步结合位元场满足Laplace方程,建立离散光滑插值联立方程组,采用预条件共轭梯度求解该方程组。

By the least common denominator of all denominators in the equation to transform it into an integral equation;(2)Solve the integral equation

一次函数y=kx+b有下列性质:当k>0时,y随x的增大而增大,这时函数的图象从左到右上升:当k<0时,y随x的增大而减小,这时函数的图象从左到右下降。

Content: By learning this course, students should grasp the elementary solution of first order differential equation, the structure theory of linear differential equation or system of linear differential equations and the solution of constant coefficient differential equation or system of constant coefficient differential equations.

主要内容:通过对本课程学习,使学生掌握一阶微分方程的初等解法、线性微分方程的结构理论和常系数方程的解法,对微分方程初值问题的一些基础理论有一定的了解,对

By transforming the interlace series type linear differential equation with coefficients containing negative second order power function and arrangement number into the linear differential equation of successive integral,the theory and method for the general solution of this kind of equation are determined.

通过把系数含有负二次幂函数与排列数的交错级数型线性微分方程化为可逐次积分的线性微分方程,找出了求这类方程通解的方法与理论,所得定理给出了严格的证明,并通过实例介绍了它的应用

Pass the interlace series type linear differential equation that coefficient contains power function and arrangement number change into the linear differential equation of successive integral, have found out the theory and method that begs this kind of equation to know to untie.

通过把系数含有幂函数与排列数的交错级数型线性微分方程化为可逐次积分的线性微分方程,找出了求这类方程通解的方法与理论,把所得定理给出了严格的证明,并通过实例介绍了它的应用。

By transforming high - grade gentle lack one type linear differential equation into the linear differential equation of successive integral, the theory and method for the general solutions of this kind of equation are determined.

方程'+=f是高阶线性微分方程,(约定尹0)=刃,是两项和的形式,其特征是含有相同的底,导数的次数相差一阶,因此不妨定义该方程为:高阶和式次数差一型线性微分方程。

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推荐网络例句

Connectors are lines that can be anchored to particular places, called glue points , on the graphic object.

连接符,可固定在图形对象的特定的地方的线条。

Another way of putting it, too many agents have a say in each other's work, and bureaucratic rigor mortis sets in.

另一种表达是,太多的作用物在彼此的工作里都有话语权,官僚的僵尸开始抬头。

As someone aptly said,'there is no business without competition.

有人说恰如其分,没有业务竞争。