conquer vt. 1.征服;攻克;打败(敌人)。 2.克服(困难等),改正(恶习等);抑制(情欲等)。 3.〔古、诗〕赢得(名誉,某人的感情等)。 conquer the enemy征服敌人。 conquer bad habits 克服不良习惯。 conquer passions 压制情欲。 the conquered 被征服者,败者。 vi. 得胜。 stoop to conquer 忍辱取胜;降低身分以达到目的。 To conquer or to die. 非胜即死,不成功便成仁。
divide vt. 1.分,区分,划分 (into)。 2.分配,分派,分给;分享,分担,分摊 (with; between; among)。 3.分开,隔开,隔离 (from)。 4.分裂,使对立;使(意见)分歧,离间(朋友);【化学】分离。 5.【数学】除;除尽;【机械工程】在…上刻[分]度。 divide words between syllables 给单词分音节。 Administratively, the country is divided into counties. 这个国家在行政区划分上分为许多郡。 The river divides the city into two parts. 那条河把市区分成两部分。 Opinions are divided on that point. 意见就在那一点上对立起来了。 divide ten dollars among five persons 十块美元五个人分。 divide profits with the stock-holders 和股东共分利润。 D- 6 by 3 and you get 2. 给3除6得2。 9 divides 36. 9 能除尽36。 divide a sextant 给六分仪分度。 be divided against itself 发生内讧 (If a house be divided against itself, that house cannot stand. 家不和,必自败)。 vi. 1.分,分开。 2.分裂,(意见等)分歧。 3.【数学】除,被除尽。 4.(议会等)表决。 divide in one's mind 犹豫不决。 We all divide equally. 我们平等分配,各取一份。 The road divides six miles from here. 这条路在六英里之外有分岔。 He could add and subtract, but hadn't learned to divide. 他会做加减法,但还没有学会除法。 Eight divides by four. 8能被4除尽。 Five will not divide into nine. 5除不尽9。 D-! D-! (议会等中提出)表决!表决! n. 1.分,分配。 2.〔口语〕分裂。 3.分界;〔美国〕分水岭。 divide and rule 分而治之。 the Great D- 1. 〔美国〕落矶山脉分水岭;主要分水岭。 2. 大限;死;生死关头 (cross the Great D- 死)。
In addition , boundaries can be detected automatically during reconstruction . in order to dispose the large data , we use the divide and conquer method to improve the algorithm mentioned above 为了能够有效的处理海量数据,我们用分解再合并的思想对上述算法进行了改进,减小了算法的时间复杂度和空间复杂度。
Because it s a publishing vocabulary , xhtml has very little structure , and i prefer to maintain photo galleries through the ad hoc xml vocabulary shown in listing 3 originally introduced in my tip , divide and conquer large xml documents 因为xhtml是用于发布的词汇表,因此结构性很差,我希望通过清单3中所示的那种xml词汇表来维护我的照片库(这个词汇表最早是在我的技巧文章
By matching overall corresponding points , divide and conquer method is adopted in determination of local corresponding points between adjacent sections . the determination of overall corresponding points also provided a method of modifying the correspondence between adjacent sections 通过引入全局对应点,采用分治方法确定相邻层轮廓的对应点,同时全局对应点还为修改拓扑重构的结果提供了一种手段。
By pre - dividing parametric region of the surface and introducing the concept “ maximum absolute normal curvature ” at a point on the surface , the method adopts “ divide and conquer ” approach triangulating the parametric region of the surface piecewise 该算法通过对曲面的参数域进行预剖分,以及引入曲面上一点处的“最大绝对法曲率”的概念,采用“分而治之”的方法分片对参数曲面的参数域进行三角形网格剖分。
Researched the methods to test configrable logic block ( clb ) and its sub - blocks . based on a “ divide and conquer ” methodology , the clb resources are divided into three basic blocks : logic units , carry logic module ( clm ) and lut ’ s ( look up tables ) ram - mode . the testing configurations are implemented based on a two - dimensional array structure for logic blocks 主要基于“分治法”对clb及其子模块进位逻辑( clm ) 、查找表( lut )的ram工作模式等进行了测试划分,分别实现了以“一维阵列”为基础的测试配置和测试向量,以较少了测试编程次数完成了所有clb资源的测试。
On the basis of set operation on integrity bo - dy , taking advanta ge of the excellency provided abundant topolo - gical information by the ra dial edge data structure , applying the divide and conquer method for inha ncing the efficiency of the system , the boolean operation on integrity or unintegrity bodys is furnished 本文在正则形体集合运算算法的基础上,充分应用辐射边结构提供丰富拓扑信息的优点,运用了分而治之的编程思想,实现了形体间的正则、非正则布尔运算。
Different parts in the same seamless system perform different tasks , and the use of oo method becomes the key point in the system integration of netfeaf . by making full use of some strategies like " from top to down " , " divide and conquer " and " step by step " , with the help of oo method , netfeaf creates a new method to build the whole integrated system : using one class hierarchy map to fully stand for the structure of netfeaf , and different parts in netfeaf like cluster class library , fea class library , web fea class library and gravity wharf cad class library can also be further explained by their sub class hierarchies , then the complexity of building netfeaf has been decreased step by step , the whole building procedure becomes much easier , so oo method can really change complexity into simplicity Netfeaf系统依据自顶向下、分而治之以及层层推进的实现原则,采用了全新的系统构造思路,对系统的集成用整体类库组成图进行表述,对各组成部分通过子类库再进一步详细介绍,系统的整体实现被一层一层分解、细化,各组成部分基于统一的计算核心集成在同一个系统框架内,同时相互之间还保持一定的独立性,独成一体,正是因为深入利用了面向对象的分析与实现手段,整个复杂系统构成从概念上更有利于理解,集成更加紧凑,具体模块的实现也更加迅速高效,面向对象方法的变复杂为简单的策略艺术在系统的具体实现过程中得到了充分展示。