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perfect square相关的网络例句

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

I do not know whether the recall, China Central Television has reported that after the National Day in Tiananmen Square, remnants of chewing gum everywhere, 40 million square meters of Tiananmen Square, actually 600,000 chewing gum residues, and some less than one square meter of the ground, as many as nine of chewing gum stains, chewing gum crowded Tiananmen Square, scarred and sacred and solemn form a strong contrast.

不知大家是否记得,中央电视台曾经报道,国庆节后的天安门广场,随处可见口香糖的残迹,40万平方米的天安门广场上竟60万块口香糖残渣,有的不到一平方米的地面上,竟然有9块口香糖污迹,密密麻麻的口香糖斑痕与天安门广场的神圣和庄严形成了强烈的反差。

Fangxing and many big projects are in the state of slow digestion, such as Suzhou River north of the region over three rooms of 140 square metres has been encountered sales resistance, there are 160 square metres viruses, Hongkou 150 square metres, offering 115 square meters, 140 square-Minhang Fangxing many have become "resistance plate."

而不少大房型楼盘都处于缓慢消化状态,如苏州河以北区域140平方米以上的三房已遭遇销售阻力,还有徐汇160平方米、虹口150平方米、杨浦115平方米、闵行140平方米以上的房型不少都已成为&阻力盘&。

And the perfect Q-vector was applied to diagnose a heary rain process for August 3~5, 1996. The results showed that there were more advantageous using the perfect Q-vector, and suggested that the perfect Q-vector could clearly reveal the system development of the heary rain; the divergence center or line, the divergence field and the frontogenesis function field of the perfect Q-vector could be used to locate the heary rain area; the center magnitudes of the perfect Q-vector divergence field and the frontogenesis function field could be signified the intensity of the heary rain.

结果表明,完全Q矢量能较清楚地揭示暴雨天气系统的演变;考虑了湿过程的完全Q矢量在暴雨的诊断过程中显示了其更大的优越性;定性而言,完全Q矢量散度的辐合中心或辐合线、散度场和锋生函数场有助于确定暴雨的落区,暴雨区正好落在低层完全Q矢量散度场辐合中心和锋生函数场正值中心之间;定量而言,低层完全Q矢量散度场辐合中心和锋生函数场正值中心大小对暴雨强度有显著的指示作用。

And another construction methods for perfect and quasi-perfect binary array pairs are presented with the help of the relationships among the perfect, quasi-perfect and double quasi-perfect binary array pairs. On the other hand, a new kind of discrete signal is presented in this paper, which is the punctured binary sequence pair and the punctured binary array pair.

另一方面,本文提出了一种新的离散信号,即屏蔽二进序列偶和阵列偶,建立了完整的屏蔽二进序列偶和阵列偶的理论体系,它包括最佳屏蔽二进序列偶理论、最佳屏蔽二进阵列偶理论、准最佳和双准最佳屏蔽二进阵列偶理论,以及屏蔽二元互补序列偶理论。

With the help of these conditions, computer efficiently searches out many quasi-perfect and double quasi-perfect punctured binary array pairs. The relationships among perfect punctured binary array pair, quasi-perfect and double quasi-perfect punctured binary array pair is presented. Specially, when first and second dimension period of the punctured binary ar

定义了非周期屏蔽二元序列偶的自相关函数、屏蔽二元互补序列偶和最佳屏蔽二元互补序列偶,给出并证明了屏蔽二元互补序列偶的变换性质;和它存在的组合允许条件,用计算机搜索出若干最佳屏蔽二元互补序列偶;给出了屏蔽二元互补序列构造出新的屏蔽二元互补序列偶的四种构造方法;并且,给出了利用不同长度的二元互补序列和屏蔽二元互补序列偶构造出新的屏蔽二元互补序列偶的四种构造方法。

Each player starts with a token in the starting square (usually the "1" grid square in the bottom left corner, or simply, the imaginary space beside the "1" grid square) and takes turns to roll a single die to move the token by the number of squares indicated by the die roll, following a fixed route marked on the gameboard which usually follows a boustrophedon track from the bottom to the top of the playing area, passing once through every square.

每个球员开始的象征出现在首发平方米(通常为" 1 "网格方在左下角,或简单地说,旁边的想象空间的" 1 "网格平方米),并轮流推出一个单裸片移动令牌在一些广场所表明的模具推出后,固定航线上的标示gameboard通常遵循boustrophedon跟踪从底部到顶部的比赛场地内,通过每平方米一次通过。

This paper overviews the various algorithms for least square collocation, discusses the matrix QR decomposition, derives the relationship between QR decomposition and generalized inverse matrix, and obtains least square inverse used for calculating matrix. In addition, the estimation formula for least square collocation by QR decomposition and its accuracy formula are derived. A case study is conducted using gravity anomaly test and calculation to demonstrate that the QR method is correct and valid in least-square collocation calculation.

分析了目前采用的最小二乘配置法解算方法,在讨论了矩阵的QR分解方法的基础上,推导得出了矩阵QR分解与广义逆矩阵的关系,得出了可以直接利用QR分解求解矩阵的最小二乘逆,并推导了应用QR分解求解最小二乘配置的估值计算公式和精度估算公式,最后通过重力异常实例进行了计算,得出矩阵的QR分解用于最小二乘配置解算的正确性和可行性。

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。

With standard plant 12,000 square meters, office building 1600 square meters, 3000 square meters dormitory building an integrated, factory covers an area of 8000 square meters.

拥有标准厂房 12000 平方米,办公楼 1600 平方米,综合宿舍楼 3000 平方米,厂区占地面积 8000 平方米。

Studied present measuring methods" advantages and disadvantages, and presented the necessity and importance of researching propellant transient heat transfer.2.according to 130 and aeronautic 90 rocket projectiles" structure, analysed and acquired physical and mathematical models for propellant transient heat transfer, also designed propellant temperature field simulation units for test.3.acquired discrete transient heat balance equation and temperature calculation program, and gave contrasting curves between experimental temperature values and program calculating temperature values as well as maximum errors and average square root errors between them.4.by programs based on the first class boundary condition, worked out temperature distribution in propellant temperature field simulation units at different time, analysed temperature field distribution law and main elements affecting heat transfer, acquired propellant mass weighted average temperature and one at the half position of propellant maximum thickness as well as maximum errors and average square root errors between them.5.established transient heat transfer mathematical model and temperature calculation program for the third class boundary condition, drew contrasting curves between temperature experimental values and calculation values and gave maximum errors and average square root errors between them, got temperature distribution in the simulation unit at different time and main elements affecting heat conduction, figured out propellant mass weighted average temperature and one at the half position of propellant maximum thickness as well as maximum errors and average square root errors between them.

分析了现有测试方法的优缺点,提出了研究推进剂瞬态导热的必要性和重要性。 2。根据130和航90两种火箭弹的结构,分析得到了推进剂传热的物理模型和数学模型,设计了推进剂温度场模拟实验装置。 3。得到了离散形式的瞬态热平衡方程和温度场计算程序,给出了实验温度与程序计算温度值的对比曲线及其最大偏差与均方差。 4。利用程序求出了第一类边界条件下、不同时刻推进剂温度场模拟装置中的温度分布,分析了温度场的分布规律和影响传热的主要因素,求出了推进剂质量加权平均温度和最大肉厚1/2处的温度时间曲线并给出了两者之间的最大偏差与均方差。 5。建立了第三类边界条件下的瞬态导热数学模型和温度计算程序,求出了温度实测值与计算值的对比曲线并给出了两者之间的最大偏差与均方差,得到了不同时刻温度场模拟装置的温度分布与影响导热的主要因素,求出了推进剂质量加权平均温度和最大肉厚1/2处温度及两者之间的最大偏差与均方差,讨论并确定了能代表130和航90推进剂温度的特征点的位置。

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