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problem space造句

"problem space"是什么意思  
造句与例句手机版
  • Independently address the same problem space
    ,彼此独立而又针对相同的问题空间。
  • It means handling a consistent but useful problem space
    它意味着处理一致但有用的问题空间。
  • We refer to the elements in the problem space and their representations in the solution space as “ objects
    问题空间中的元素和它们在解空间中的继承被称作"对象"
  • Developing a software is actually a transformation from the " problem space " to the " solution space "
    摘要软件开发过程实际上是“问题空间”向“方案空间”的转换过程。
  • In the next - and final - article in this series , part 4 , we ll conclude our journey through this problem space
    在本系列的下一篇(也是最后一篇)文章中,我们将对这个问题的研究进行总结。
  • Detailed , granular processes are the most useful , although they are usually only useful across restricted problem spaces
    详细的,细致的过程是最有用的,尽管他们常常仅仅对受限的问题空间有用。
  • After you ' ve been through all your source documents , you ' ll have a draft description of the entities and attributes in the problem space
    在当你过了一遍所有你的源文档后,你就会对问题域里实体及其属性有一个大概的了解。
  • Moreover , due to the general symmetry of fuzzy rule base and membership functions , the problem space to be optimized can be halved , which results in better stability and convergent property
    另外,由于模糊规则库和隶属度函数通常都具有对称的特点,控制器优化时可将搜索空间减半,从而使稳定性、收敛性得到显著提高。
  • Critical thought is of vital significance to problem tokening , problem space searching and new problem finding , whereas problem - solving process is rightly effective way of training critical thought
    批判性思维对问题表征、问题空间搜索以及发现新问题都有着举足轻重的作用,而问题解决过程也恰是训练批判性思维的有效途径。
  • Abstract : solving a mathematical problem is a procedure of seeking out a road that links the initial state with the final state of the problem in problem space . the mathematical method is used to discuss this process
    文摘:数学问题的解答,是在问题空间中寻求一条由问题初始状态到目标状态的通路,用数学方法描述这一过程
  • It's difficult to see problem space in a sentence. 用problem space造句挺难的
  • The representations of the " problem space " and " solution space " were abstracted from their characteristics , and the limitations of the programming were discussed from several typical problems
    根据“问题空问”和“方案空间”的特点,对它们的表示方法进行了抽象,并从一些有代表性的问题入手,对有关程序功能的局限性进行了分析和讨论。
  • This thesis transforms the 19 objects and their relations abstracted from ooa into the classes and relations in the problem space , and describes the classes in detail . the development of design software about gcs is necessary to the construction trade
    本论文将分析过程中抽象而来的19个对象及其相互之间的关联转化为问题空间中的类和关联,并对问题空间类进行了详细的描述。
  • The development of the design software about gcs utilizes object - oriented analysis ( ooa ) to abstract 19 objects from the things in the problem space . the 19 objects " abstraction and description is the important base of the design software about gcs
    综合布线设计软件开发采用面向对象分析方法,将问题空间中的事物抽象为19个对象,这19个对象的抽象和描述是综合布线设计软件开发的重要基础。
  • Its foundation absorbs the cooperatively evolution idea of hybs & gero ' s disjunction of problem space and solution space , and the ideology of collaboration in parallel engineering . it divides engineering optimization task to scheme design and detail design
    该算法吸收了hvbs & cero提出的问题空间与解空间分离协同演化( co - evolution )的思想以及并行工程的协同设计思想,将工程优化任务分解为方案设计和细部设计两部分。
  • Furthermore , we assert that while grid technologies are currently distinct from other major technology trends , such as internet , enterprise , distributed , and peer - to - peer computing , these other trends can benefit significantly from growing into the problem space addressed by grid technologies
    此外,我们肯定网格技术不同于当前许多其他技术方向,比如因特网、企业、分布式、点到点计算,但这些其他的方向能因成为网格计算的问题域而获益匪浅。
  • In this paper , i try to construct a new model of mcai , which the core was to create learning environment based on problem exploring , to create problem space , to present and find problem and to explore independently learning by means of researching anchored instruction , generative learning theory , problem - based learning , finding learning and multimedia computer and internet . the design on problem - based exploring mcai base on the newest research of learning theory , instruction design and development soft of cai
    问题探索型mcai以“探索性学习”为设计基础,通过对建构主义的“抛锚式”教学法、维特罗克的生成学习理论、布鲁纳的发现式学习和barrow的问题式学习理论等的研究,借助于多媒体计算机网络技术,力图建构以“创设问题探索的学习环境、创建问题空间、呈现或发现问题、学生自主探索”为核心的新型mcai设计模式,通过增加cai课件开发中的探索性学习成分来突破传统cai设计的局限性。
  • The results indicated that : ( 1 ) there are several reasons that make the three doors problem hard such as regret , the illusion of control , the misrepresentation of the problem space , etc . , but the misrepresentation is the most important reason ; ( 2 ) clear representation of the logical relation between the contestant and the host is the key of resolving three doors problems
    ( 2 )清晰表征选手行为和主持人行为的逻辑关系显著地促进了三门问题的解决,而只有在逻辑关系基础上的频率表征才能够更进一步地促进三门问题的解决,在此基础上概率形式的信息表征没有更显著的促进作用。
  • This paper discusses the problem space and solutions of interoperability in digital libraries , subdivides interoperability into two levels - plantform interoperability and application interoperability , and discusses simply the construction , principles of interoperable plantform of rpc and corba , and the approach of accomplish interoperability based on standards , agents and digital objects
    本文对数字图书馆互操作的问题空间及解决方案进行了探讨,把数字图书馆互操作划分成平台级和应用级两个层次,简单讨论了rpc 、 corba构建互操作平台的原理,以及基于标准、外部代理和数字对象互操作的实现途径。
  • 3 . in order to improve searching quality of restricting optimization , good and bad gene code method has been brought forward . its focus lays in emphasizing the value of gene to targets and more precisely simulate evolvement mechanism so that useful information in problem space will be used completely
    为提高约束优化的搜索质量,提出了基因优劣编码,其重点是精确模拟自然进化机制,着重强调各基因位对优化目标的价值作用,越有利于优化目标的基因位越有价值,从而使问题空间的有益信息得到了充分利用。
  • Here scheme design evolutes in system optimizer ; detail design consists of various parts , and each part evolutes in different sub - optimizer . distributed co - evolution introduces " fittest survival " law of genetic algorithm , and adds hierarchical co - evolution of problem space and solution space
    分布式协同演化算法,引入了遗传算法的优胜劣汰法则,加入了问题空间与解空间的层次性协同演化,为变化的方案提供变化的细部探索区域,适用于诸如基坑支护优化问题等参数离散的、带层次性的复杂工程问题。
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