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This paper gives the probabilistic interpretation for one system of the second order quasilinear parabolic partial differential equations combined with an algebra equation using fully coupled forward-backward stochastic differential equation.

本文利用完全耦合的正倒向随机微分方程,对一类耦合了一个代数方程的二阶拟线性抛物型偏微分方程系统,给出概率表示。

The solution can't already behalf the real movement of the constraint multibody system so the default of the constraint equation must be restrained; On the other hand is how to turn the differential — algebra hybrid equations into the pure differential equations effectively.

得到的解已经不能表示约束多体系统的真实运动,所以必须对约束方程的违约进行抑制;另一方面是怎样有效地将微分—代数混合方程组化为纯微分方程组,运用求解微分方程组的计算方法求解。

Since the different dynamics methods such as Newton-Euler method, Lagrange's equations and other methods can be used to develop the dynamic equations of global system, the two different forms of the dynamic equations are ordinary differential equations and differential algebra equations.

通过结合有限段法和多体系统动力学离散时间传递矩阵法,形成了非线性梁有限段离散时间传递矩阵法,该方法保留了有限段法适用于几何非线性大变形分析、自动考虑动力刚度项等优势,又保留了DT-TMM-MS建模方便灵活的特点。

German mathematician and astronomer known for his contributions to algebra, differential geometry, probability theory, and number ''.

高斯,卡尔·弗雷德里''。'希'。''1777-1855德国数学家和天文学家,因其对代数、微积分几何、或然率''。'理论'。''和数字''。

We can take Fourier transformation or Laplace transformation towards try to of square distance both ends according to the their lines property, differential calculus property and integral calculus property, its conversion for act for of elephant function square distance, from this algebra square the distance beg an elephant function, then take Fourier negative transformation or Laplace negative transformation have to originally square distance of solution.

我们可以根据他们的线性性质,微分性质和积分性质,对欲求的方程两端取Fourier变换或Laplace变换,将其转化为象函数的代理方程,由这个代数方程求出象函数,然后再取Fourier逆变换或Laplace逆变换就得出原来方程的解。

This course offers advanced topics for students who have learned ordinary differential equations. The course includes linear algebra which has topics as matrices, linear systems of equations, eigenvalue problems, vector differential and integral calculus. Fourier series, orthogonal functions, Fourier transforms and partial differential equations will also be introduced.

本课程为提供已有常微分方程式基础的同学修习,内容包括线性代数,矩阵运算,特徵值问题,向量的微分与积分,一阶线性微分方程组,傅力叶级数和正交函数,傅力叶转换,并将对椭圆,抛物线,双曲线型式的偏微分方程式作概略介绍。

This course offers advanced topics for students who have learned ordinary differential equations. The course includes linear algebra which has topics as matrices, linear systems of equations, eigenvalue problems, vector differential and integral calculus. Fourier series, orthogonal functions, Fourier

本课程为提供已有常微分方程式基础的同学修习、内容包括线性代数、矩阵运算、特徵值问题、向量的微分与积分、一阶线性微分方程组、傅力叶级数和正交函数、傅力叶转换、并将对椭圆、抛物线、双曲线型式的偏微分方程式作概略介绍。

Theory of differential form Wus method is a powerful tool in algebra and has widely application.

微分情形吴方法是代数领域中的一种有效的工具并有着广泛的应用。

The methods used in this dissertation include matrix, algebra as well as differential geometry theory.

自七十年代以来,奇异系统的理论与应用问题的研究一直吸引着国内外众多学者的关注。

The paper expounded internal difference between 0/0 of the derivative and of algebra, and discussed in detail the dual nature of 0/0 about algebraic substance of derivative on the basis of the philosophical thought about the concept of the differential quotient of Marx and Engels, and thus answered how derivative itself is converted to differential quotient logically.Then the discussion was extended to the Concept of the partial derivative, and proved that the form of differential quotient converted f...

本文依据马克思、恩格斯关于微商概念的哲学思想,阐述了代数的0/0与导数的0/0的内在差异,并详细讨论了导数的代数实体0/0的双重性质,从而回答了导数本身是如何合平逻辑地转化为微商的问题;其次,把这一讨论推广到偏导数的概念中去,论证了偏导数转化为微商形式的合理性,以及偏微商表述的意义,文中还就微商所牵涉到的形式逻辑与辩证逻辑的问题做了具体分析。

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What would he tell Judith and the children?

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I this is at that time, the opinion with peacockish true girl is full of in a heart.

这就是当时的我,一个心中布满虚荣的女孩子真实的想法。

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