积分的
- 与 积分的 相关的网络例句 [注:此内容来源于网络,仅供参考]
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The basic idea is to set a continuous solution of the region with a finite number of discrete points instead of a grid consisting of, these discrete points called grid nodes the solution of a continuous area on a given function of continuous variables used in the definition of discrete grid variable function approximation the original equation and boundary conditions in the micro-business operators to approximate differential, integral with the points and to approximate, so the original differential equations and boundary conditions are replaced by algebraic equations near Side, that is, finite difference equations , solve this equation group can get the original problem in discrete points on the approximate solution.
基本思想是把连续的定解区域用有限个离散点构成的网格来代替,这些离散点称作网格的节点;把连续定解区域上的连续变量的函数用在网格上定义的离散变量函数来近似;把原方程和定解条件中的微商用差商来近似,积分用积分和来近似,于是原微分方程和定解条件就近似地代之以代数方程组,即有限差分方程组,解此方程组就可以得到原问题在离散点上的近似解。
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In this paper ,on one hand ,we establish the weakly asymptotic order of the classical Bernstein interpolation sequence approximate functionin the Wiener space(or 1-fold integrated Wiener space),on the other hand,we discuss the asymptotically order for the average error of Lagrange interpolation sequence, Hermite-Fejer interpolation sequence and Hermite interpolation sequence based on the Chebyshev nodes on the 1-fold integrated Wiener space.
本文一方面确定了经典的Bernstein多项式算子列逼近函数时在Wiener空间(或1-重积分Wiener空间)下的平均误差的弱渐近阶;另一方面确定了基于第一类Chebyshev多项式零点的Lagrange插值算子列、Hermite-Fejer插值算子列和Hermite插值算子列在1-重积分Wiener空间下的平均误差的弱渐近阶。
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For the purpose of extending the applicability of the coupling method to the bidimensional exterior steady Oseen problem, we will introduce a smooth artificial boundary separating an interior inhomogeneous region from an exterior homogeneous region .The solution in the exterior region is represented by an integral equation over the artificial boundary.
为了将这种耦合方法应用于二维外部定常的Oseen问题,我们人为的引入一条光滑的边界,将内部非均匀区域和外部均匀区域分离,外部区域的解可以由人工边界上的积分方程来描述,此积分方程同内部区域的速度-压力变分形式结合为耦合变分形式,我们则可以使用有限元的方法求解此耦合变分方程。
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In "the Fine Li Younger sister" in this work, fine Li is a pure attractive countryside girl, because yearned for the big city the lively life as well as each kind of countryside are unable the joy which hopes to attain or equal, then comes to Chicago to go to the elder sister, when receives the cold reception in the elder sister family, because of got sick lost when the livelihood pain not helped, then successively and German fatigue Egypt and 赫斯特 Wood lives together, achieved the different level by this method the material demand, but afterwards in did not need their time but them gets rid.
刚才忘记把翻译内容发出来了我已经没积分了谁帮我把这个翻译后,然后再在我提问过的那个里面回答下,我就把积分都给你。简要内容:在《嘉莉妹妹》这部作品中,嘉莉是一个纯真漂亮的农村姑娘,因向往大城市的繁华的生活以及各种农村无法企及的快乐,便来到芝加哥投奔姐姐,当在姐姐家受到冷遇,因病而丢失了生计痛苦无助时,便先后与德劳埃和赫斯特伍德同居,以此种手段来达到不同层次的物质需求,而随后又在不需要他们的时候而把他们抛弃。
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The boundary contour formulations of evaluatingstresses from the Somigliana stress identity are derived for 2-D problemswith quadratic boundary elements.The boundary contour method basedon the traction boundary integral equation is further discussed.Elasticproblems are first solved using the traction boundary contour method.Amixed collocation of the displacement boundary contour formulation andtraction boundary contour formulation is given.(4)The dual boundarycontour method is developed for the analysis of crack problems.
3建出了Somigliana应力积分式的二维和三维问题的边界轮廓法理论;给立了二维问题由Somigliana应力积分式计算应力的二次形函数的边界轮廓法方程,进而给出了基于面力边界积分方程的边界轮廓法;提出了一种以位移边界轮廓法方程与面力边界轮廓法方程混合配置的方案,首次实现了用两种积分方程相结合来求解弹性力学问题。
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This article used the truncation mark law to discuss the common quadratic surface on the coordinate plane projection, based on this gave by the surface encircles three-dimensional asks the law on the coordinate plane projection one kind, this kind asked method the superiority lay in does not draw the range of integration graph also to be able to determine it on the coordinate plane projection.
本文利用截痕法讨论了常见二次曲面的在坐标面上的投影,在此基础上给出由曲面所围立体在坐标面上的投影的一种求法,这种求法的优越性在于不画出积分区域图形也能确定它在坐标面上的投影。最后以实例说明这种求投影的方法在计算三重积分中的应用。
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First,image structure vector field is derived from source luminance orthonormal vector sets. Andusing neighbor vectors to improve the weak gradient fields produces the structure vectorfield that is needed by LIC rendering. Then, LIC convolution step-length is adjustedaccording to local curvature in the structure vector field. LIC convolution length iscalculated according to the local statistical characteristics of the texture image. Finally, thealgorithm transfers the reference image\'s color characteristics to the rendering result tomake it full of rich color like oil paintings.
该算法通过计算源图像亮度分量的切矢量产生图像的结构矢量场,并对弱矢量区域进行邻域填充处理,获得LIC绘制所需的结构矢量场;然后,根据结构矢量场的局部曲率特征调整LIC的积分步长,并根据纹理参考图像的局部统计特征,自适应地改变LIC的积分长度;最后,将颜色传输算法引入LIC绘制结果,对绘制效果颜色进行渲染。
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He said that with Yuxi, in fact integral is a disguised form of discounts, hotel originally to be paid to agents as much as 20 percent of the commission, and in the Union's direct marketing platform, pay only 5 percent of the platform user fees, will be another 10 % Return as integral to consumers, such hotel or than the original receipts increased by 5 per cent.
何同玺表示,实际上积分是一种变相的打折方式,酒店原先需要支付给代理商高达20%的佣金,而在联盟的直销平台上,只需支付5%的平台使用费,将另外的10%作为积分返还给消费者,这样酒店还是比原先的收益提高了5%。
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We discuss the initial value value problems and boundary value problem for second-order integro-differential equation of mixed type in Banach space as follow:And give some results of maximal and minimal solutions of them.
我们讨论了如下带有一阶微分项的的二阶非线性积分-微分方程的最小最大解的存在性问题:{·犷"',一刃,,,,T\x,"双,,、L工LU=工0,x LU=工L上t〔J 在够。3及笋。4中,'我们利用笋。1及笋。2的思路,讨论了相应的一阶、二阶脉冲积分一微分方程。
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The solvability can not be sidestepped, for it relates the problem of equivalence of boundary reduction.
人们在用直接边界元方法进行计算时,并不刻意去考虑积分方程的可解性,但可解性的问题是不能回避的,这涉及到原问题的解与边界积分方程的解的等价性问题。
- 推荐网络例句
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The concept of equivalent rotationally rigidity is offered and the formula of rotationally rigidity is obtained.
主要做了如下几个方面的工作:对伸臂位于顶部的单层框架—筒体模型进行分析,提出了等效转动约束的概念和转动约束刚度的表达式。
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Male cats normally do not need aftercare with the exception of the night after the anesthetic.
男猫通常不需要善后除了晚上的麻醉。
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Its advantage is that it can be used in smaller units.
其优点在于可以在较小的单位中应用。