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In dual Brunn-Minkowski theory, we study the properties of the dual harmonic quer-massintegrals systematically and establish some inequalities for the dual harmonic quer-massintegrals, such as the Minkowski inequality, the Brunn-Minkowski inequality, the Blaschke-Santalo inequality and the Bieberbach inequality. We establish the dual Brunn-Minkowski inequality for dual affine quermassintegrals. Recently we learned that Gardner have independently proved it by a different method. The polar body of a convex body is an important object in the context of convex geometry. Hence, after we studied the intersection bodies, it is natural to consider the inequalities for their polar bodies.

在对偶Brunn-Minkowski理论中,我们引入了对偶调和均质积分概念,系统的研究了它的性质,并建立对偶调和均质积分的Brunn-Minkowski不等式,Blaschke-Santalo型不等式和Bieberbach不等式;接着我们建立了对偶仿射均质积分的对偶Brunn-Minkowski不等式,最近我们得知这个不等式被Gardner用另外的方式证明;凸体的极体是凸几何中一个重要概(来源:2525ABf8C论文网www.abclunwen.com)念,既然相交体和投影体有对偶关系,因此在研究完投影体的极体之后自然要研究相交体的极体。

The convolution integral is quite important in signal processing, control theory, and dynamic electric circuit analysis.

各类教材对卷积积分的介绍和讨论卷积积分对于信号处理、控制理论和动态电路分析均具有重要意义。

The numerical method for fractional integral presented in this dissertation isapplied to solve the equations.

然后利用分数积分的计算方法对这类非线性积分-微分方程组进行求解。

Construction and properties of the integral; convergence theorems; Radon-Nykodym theorem; Fubini's theorem; mean convergence.

积分。 积分的构造和性质;各类收敛定理;拉东(Radon-Nykodym)定理;富比尼定理;平均收敛

The computing plots of the solutions from the two methods were inconsistent under the specified boundary-initial conditions, which stirred up the debate of the effectiveness of Maxwell's equations in lossy medium. It is found that the differences between the two numerical curves can be viewed as the Gibbs phenomenon caused by cutting off the high frequency components in computing the infinite integral of the numerical curve of Harmuth's solution.

通过比较两种解析解的数值曲线得出:两者的差异在于求解Harmuth解的数值曲线时,采取无穷积分的高频截断近似产生了吉布斯现象;在计算Harmuth解的数值曲线时不断增大积分上限,其数值曲线的振荡不断向不连续点处收缩,而且衰减加快,因此在求解Harmuth解的数值曲线时,若积分区间取为理想无限大,则可以预见相同计算精度下两种方法的电场解的数值曲线是一致的。

But , when we changeour trainofthought , we can find that sometimes using mathematical Analysis is a better solution to the linear algebraic problems.In thispaper, use the propertyofcontinuous function andimproper integralof infinite interval and to solve some matrix and quadratic form problems.Algebraic ideas andmethodstosolvemathematical analysisproblems are indicated by several specific examples. Close contactof differentmathematical analysis fields is shown.

该文探讨运用数学分析的有关知识(如:函数连续性、无穷区间的广义积分)和方法解决高等代数中的某些复杂、繁琐的问题;通过具体的实例,阐述高等代数的思想和方法在解决数学分析问题中的作用,揭示不同的数学领域之间的密切联系,例如:二次型与正交变换是代数学的基本内容,其用途十分广泛,而重积分的计算往往存在技术性的困难,若利用"二次型"与"正交变换"的有关理论去解决某些重积分的计算问题是颇有功效的。

The direct problem was solved by DRBEM, which eliminated the drawback of domain integral for classical boundary element method and resulted in pure boundary integral calculation.

正问题采用双倒易边界元法求解,该法避免了传统边界元法需进行区域积分的缺点,仅需纯边界积分计算。

The integral range and the integrand structure are the two key points of the function integral.

积分区域和被积函数结构是函数积分的两个关键点。

Precise time-integration of the FORTRAN source program, can accurately carry out integral operator, which contain examples.

详细说明:精细时程积分的FORTRAN源程序,可以精确进行积分运算,里面含有例子。

In study on structure damage identification in time domain,error of numerical integral will affect directly accuracy of parameters resulted from reversion.

在结构损伤识别的时域法研究中,数值积分的误差将直接影响反演参数结果的精度。积分初值的未知、消除数值积分引入的误差是结构损伤反演计算中信号处理的难题。

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