树排序是一种原理较复杂的排序方法。
在计算机应用中,要实现树排序编程较难。
On computer's application the programming of tree sort is difficult .
正如我所说,二叉树排序是一种非常有效且快速的方法。
As I said, binary trees are a very efficient and fast way of sorting.
然后使用该内容来比较每一列,以确定该列在排序树中的正确位置。
That content is then used to compare each column, to determine its correct position in the sorted tree.
swt树的一个较困难的方面是实现树项目的排序,对于这个主题,公共支持论坛中提供的信息难以满足广大用户的需求。
One difficult aspect of SWT trees is to implement sorting of the tree's items, a topic on which information is much sought after in public support forums.
排序通过对树项目进行迭代(第37- 39行)来执行。
The sorting is performed by iterating through the tree's items (lines 37 to 39).
清单4展示了具有列的基本树的完整实现,其中,列排序功能添加在第27和33行。
Listing 4 shows the full implementation of the Basic tree with columns, in which the column-sorting capability is added in lines 27 and 33.
图5展示了一个具有列排序功能的基本树。
对于其他任何情况,树必须按升序排序(第75 - 116行)。
For any other case, the tree must be sorted upward (lines 75 to 116).
比如,在树中对一组元素排序很容易,但在UML 中就需要很多技巧。
For example, it is easy to order the elements of a sequence in a tree, but it is very tricky to do so in UML.
当树型网格执行一个排序查询时,您需要清除expando状态。
You need to clear the expando states when the tree grid performs a sorting query.
排序之前,第4行是展开的,树型网格记住了这个状态。
Before the sorting action, the fourth row is expanded and the tree grid remembered it.
当排序变量设置为true时,会按照正确的顺序将两个受影响的项目重新创建为新的树项目,旧项目将从树中删除(第51 - 67和91 - 107行)。
When the sort variable is set to true, the two affected items are recreated as new tree items in the correct order, and the old items are removed from the tree (lines 51 to 67 and 91 to 107).
利用传统的决策树方法,无法确定一个次优方案,对所有方案进行排序也很难。
It is difficult to use the decision tree method to find the sub-optimal solution, not to mention the alternative ranking.
对邻接矩阵在图的遍历、最小生成树、拓扑排序和关键路径等算法分析上的应用作了一定的探讨。
This paper discusses the application of adjacency matrix at the algorithm's analysis for traversing Graph, Minimum cost Spanning Tree, Topological sort and Critical Path.
用故障树分析法、风险排序法、专家评分法进行管道风险评价。
Fault Tree Analysis, Riska Sorting, Experts Scores Technique are used in the Pipeline Risk Assessment.
研究阶段任务系统(PMS)故障树变量排序方法。
This paper studies the variable ordering of Phased Mission System (PMS) fault tree.
研究了最细层数据的建立方法,提出采用并行正则采样排序算法来代替众多文献所推荐的并行桶排序算法,以此来建立分布树的最细层数据。
Instead of parallel bucket sort recommended by some authors, a scheme using parallel regular sampling sort algorithm to construct the finest level data of the distributed tree is presented.
不要对计划发布的工作项树列表进行排序。
Do not sort a tree list of work items that you plan to publish.
终结符号处理过程中,深入地研究了字符串匹配算法和正则表达式匹配算法,并实现了二叉排序树字符串匹配算法。
First, classic string matching algorithms and regular expression matching algorithms are studied; second a binary sort tree string matching algorithm is proposed and realized.
它通过判断树支的边缘性质,逐个确定树支的排序,从而实现线形树。
The pendant property of tree branches is checked and the order of tree branches is determined step by step, then the linear tree is realized.
内容包括:数组、链接表、栈和队列、递归、树与森林、图、排序、检索和散列结构等。
The contents are included as follows: Array, Linked List, Stack and Queue, Recursion, Tree and Forest, Graph, Sorting, Indexing and Hashing Structure, etc.
也许同样重要的是基本的算法,如二进制搜索,图形搜索算法,排序算法,并基于树的极小搜索。
Perhaps just as important are fundamental algorithms like binary search, graph searching algorithms, sorting algorithms, and tree-based searches such as minimax.
研究了基于一种新二叉树结构的二叉排序树的生成算法,并在此算法的基础上进行时间复杂度分析。
This paper is devoted to a study of an algorithm of generating the binary-sort-tree on the new structure and, on the basis of this algorithm, an analysis is made of the time complexity.
应用模糊重要度法对事故树基本事件进行排序,把导致火灾的两大因素进行模糊分级。
The paper also elaborates a theory of fuzzy mathematics and its application in coal mine production.
概要设计:本程序所使用的数据结构是树和线性表,所使用的算法主要有堆排序、赫夫曼算法。
Summary of design: the procedures used by the data structure is linear tree and table, the algorithm used by the main sculpture, in order Huffman algorithm.
概要设计:本程序所使用的数据结构是树和线性表,所使用的算法主要有堆排序、赫夫曼算法。
Summary of design: the procedures used by the data structure is linear tree and table, the algorithm used by the main sculpture, in order Huffman algorithm.
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