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unique factorization theorem相关的网络例句

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与 unique factorization theorem 相关的网络例句 [注:此内容来源于网络,仅供参考]

In the first chapter (1.1.1)-(1.1.4) is studied by means of fixed point index theorem, not only the existence theorem is obtained, but the multiplicity is also obtained.

本文第一章利用这一理论研究方程(1.1.1)-(1.1.4)的正周期解问题,与已有研究成果相比,本章不仅获得了该类方程的正周期解的存在性定理又获得了正周期解的多解性定理,并将所取得的结论应用于一些具有实际背景的方程。

Motivated by this, we consider the global behavior of positive solutions of three-point boundary-value problems for second-order differential equations, under two different kinds of boundary-value problems, using fixed point theorem, fixed point index theorem and cone theory.

本文受到文献[7]的启发,运用不动点定理、不动点指数定理以及锥理论,分别研究了两种不同边值条件下二阶微分方程三点边值问题正解的整体性。

Based on the minimizing vector theorem of the fuzzy inner product space ,the pseudo fuzzy orthogonal vector is defined and the projected theorem of the fuzzy inner product space is testified.

在模糊内积空间的极小化向量定理基础上,给出了向量拟模糊正交定义,并在模糊内积空间中证明了投影定理。

In this paper we have obtained the sufficient and necessary condition concerning the passage to the limit under the integral sign, and have given some examples of the problems which can be solved by the theorem of this paper but cannot be solved by the familiar Vitali's theorem.

关于积分号下取极限的问题,有著名的Lebesgue定理及Vitali定理。本文作者进一步研究了这一问题,得到了积分号下取极限的充分和必要条件,并给出了几个能用本文结果解决而不能用Vitali定理解决的例子。

Third, the use of Lagrange's theorem proving the points of the study on some conclusions, that the Lagrange theorem in the integral study also has a wide range of applications.

再次,利用拉格朗日定理证明了积分学上的几个结论,说明拉格朗日定理在积分学中也有广泛的应用。

Although it is easy to prove the result of the integral mean value theorem in advanced mathematics, the application of the theorem is thus limited.

摘要高等数学中的积分中值定理,其结论易于证明,但限制了定理的应用。

What is discussed in this paper is on the applications of the integral upper limit function in proving the equality, proving the inequality, calculating the repeated integral , the theorem of integratl mean value , prove the theorem of differention mean value .

给出了积分上限函数在证明等式和不等式、算累次积分、明微分中值定理和积分中值定理中的应用。

Its universal approximation has been proved by using differential intermediate value theorem and Weierstrass theorem.

笔者采用微分中值定理和Weierstrass定理证明它的通用逼近性。

Differential intermediate value theorem commonly known as "Lagrange mean value theorem" is a differential study in one of the most important conclusion.

微分中值定理一般称为"Lagrange中值定理",是微分学中最重要的结论之一。

Through the study of this article requires proficiency in differential intermediate value theorem and Taylor's formula to prove, using theorem to solve a number of conclusions related questions, so can a clear understanding of this kind of problem solving ideas.

通过本文的学习,要求熟练掌握微分中值定理和泰勒公式的证明,运用定理结论来解决一些与之相关的问题,使能够明确了解此类问题的解题思路。

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"第二次生命是显着容易的工作,并且很受欢迎,"

For example, we usually assume that materials are homogeneous and isotropic and free of internal defects or flaws.

为了得到适合有限元分析的模型,我们必须经过如图2所示的简化步骤。

Rev. 20:15 And if anyone was not found written in the book of life, he was cast into the lake of fire.

启二十15 无论谁在生命册上不见是记著的,就被扔在火湖里。