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  • Microsoft.NET测试驱动开发 Test-Driven Development in Microsoft .NET by James W. Newkirk and Alexei A.

    Microsoft.NET测试驱动开发 Test-Driven Development in Microsoft .NET by James W. Newkirk and Alexei A. Vorontsov ISBN:0735619484 Microsoft Press © 2004 Using a wealth of pragmatic examples in C# and other .NET development tools, the two authors of this text demonstrate how to use AUTOMATED tests to drive lean, efficient coding and better design.

    标签: Microsoft A. W. Development

    上传时间: 2014-01-07

    上传用户:ynzfm

  • . Info directory .delphiinternet Delphi sample applications (all Delphi versions) .cppinternet C++

    .\ Info directory .\delphi\internet Delphi sample applications (all Delphi versions) .\cpp\internet C++Builder sample applications .\cpp\internet\bcb1 C++Builder version 1 projects .\cpp\internet\bcb3 C++Builder version 3 projects .\cpp\internet\bcb4 C++Builder version 4 projects .\cpp\internet\bcb5 C++Builder version 5 projects .\cpp\internet\bcb6 C++Builder version 6 projects .\delphi\vc Delphi 1.x files (winsock.pas 16 bits and *.dcr) .\delphi\vc32 Delphi (1/2/3/4/5/6/7) and C++Builder (1/3/4/5/6) components .\Delphi1 AUTOMATED build for Delphi 1. Not for beginners. .\Delphi2 AUTOMATED build for Delphi 2. Not for beginners. .\Delphi3 AUTOMATED build for Delphi 3. Not for beginners. .\bcb1 AUTOMATED build for Bcb 1. Not for beginners.

    标签: Delphi delphiinternet applications cppinternet

    上传时间: 2014-01-12

    上传用户:star_in_rain

  • EclipseTrader is a stock exchange analysis system, featuring shares pricing watch, intraday and hi

    EclipseTrader is a stock exchange analysis system, featuring shares pricing watch, intraday and history charts with technical analysis indicators, level II/market depth view, news watching, AUTOMATED trading systems, integrated trading.

    标签: EclipseTrader featuring exchange analysis

    上传时间: 2016-04-12

    上传用户:shizhanincc

  • 本程序是DES加密系统的c语言源程序

    本程序是DES加密系统的c语言源程序,它很可能是使用最广泛的秘钥系统,特别是在保护金融数据的安全中,通常,自动取款机(AUTOMATED Teller Machine,ATM)都使用 DES。

    标签: DES 程序 加密系统 c语言

    上传时间: 2013-12-13

    上传用户:cuibaigao

  • 数据加密算法(Data Encryption Algorithm

    数据加密算法(Data Encryption Algorithm,DEA)的数据加密标准(Data Encryption Standard,DES)是规范的描述,它出自 IBM 的研究工作,并在 1997 年被美国政府正式采纳。它很可能是使用最广泛的秘钥系统,特别是在保护金融数据的安全中,最初开发的 DES 是嵌入硬 件中的。通常,自动取款机(AUTOMATED Teller Machine,ATM)都使用 DES。文件是DES代码的VHDL描述

    标签: Encryption Algorithm Data 数据加密

    上传时间: 2014-09-07

    上传用户:ztj182002

  • Module De Captcha (Captcha Decoder) - recognition of service graphic images of any complexity. The p

    Module De Captcha (Captcha Decoder) - recognition of service graphic images of any complexity. The process image is completely AUTOMATED.

    标签: Captcha recognition complexity Decoder

    上传时间: 2013-12-05

    上传用户:manlian

  •  数据加密算法(Data Encryption Algorithm

     数据加密算法(Data Encryption Algorithm,DEA)的数据加密标准(Data Encryption Standard,DES)是规范的描述,它出自 IBM 的研究工作,并在 1997 年被美国政府正式采纳。它很可能是使用最广泛的秘钥系统,特别是在保护金融数据的安全中,最初开发的 DES 是嵌入硬 件中的。通常,自动取款机(AUTOMATED Teller Machine,ATM)都使用 DES。 此源码可完成简单的DES加密解密

    标签: Encryption Algorithm Data 数据加密

    上传时间: 2017-06-25

    上传用户:ainimao

  • 物流系统是指在一定的时间和空间里

    物流系统是指在一定的时间和空间里,由所需输送的物料和包括有关设备、输送工具、仓储设备、人员以及通信联系等若干相互制约的动态要素构成的具有特定功能的有机整体。随着计算机科学和自动化技术的发展,物流管理系统也从简单的方式迅速向自动化管理演变,其主要标志是自动物流设备,如自动导引车(AGV-AUTOMATED guided vehicle)、自动存储、提取系统(AS/RS-AUTOMATED storage/retrieve system)、空中单轨自动车(SKY-RAV-Rail AUTOMATED vehicle)、堆垛机(Stacker crane)等,及物流计算机管理与控制系统的出现。

    标签: 物流系统

    上传时间: 2014-01-07

    上传用户:zhaiyanzhong

  • DAKOTA

    Computational models are commonly used in engineering design and scientific discovery activities for simulating complex physical systems in disciplines such as fluid mechanics, structural dynamics, heat transfer, nonlinear structural mechanics, shock physics, and many others. These simulators can be an enormous aid to engineers who want to develop an understanding and/or predictive capability for complex behaviors typically observed in the corresponding physical systems. Simulators often serve as virtual prototypes, where a set of predefined system parameters, such as size or location dimensions and material properties, are adjusted to improve the performance of a system, as defined by one or more system performance objectives. Such optimization or tuning of the virtual prototype requires executing the simulator, evaluating performance objective(s), and adjusting the system parameters in an iterative, AUTOMATED, and directed way. System performance objectives can be formulated, for example, to minimize weight, cost, or defects; to limit a critical temperature, stress, or vibration response; or to maximize performance, reliability, throughput, agility, or design robustness. In addition, one would often like to design computer experiments, run parameter studies, or perform uncertainty quantification (UQ). These approaches reveal how system performance changes as a design or uncertain input variable changes. Sampling methods are often used in uncertainty quantification to calculate a distribution on system performance measures, and to understand which uncertain inputs contribute most to the variance of the outputs. A primary goal for Dakota development is to provide engineers and other disciplinary scientists with a systematic and rapid means to obtain improved or optimal designs or understand sensitivity or uncertainty using simulationbased models. These capabilities generally lead to improved designs and system performance in earlier design stages, alleviating dependence on physical prototypes and testing, shortening design cycles, and reducing product development costs. In addition to providing this practical environment for answering system performance questions, the Dakota toolkit provides an extensible platform for the research and rapid prototyping of customized methods and meta-algorithms

    标签: Optimization and Uncertainty Quantification

    上传时间: 2016-04-08

    上传用户:huhu123456

  • Communication+Networks

    n its Framework and Roadmap for Smart Grid Interoperability Standards, the US National Institute of Standards and Technology declares that a twenty-first-century clean energy economy demands a twenty-first-century electric grid. 1 The start of the twenty-first century marked the acceleration of the Smart Grid evolution. The goals of this evolution are broad, including the promotion of widespread and distributed deployment of renewable energy sources, increased energy efficiency, peak power reduction, AUTOMATED demand response, improved reliability, lower energy delivery costs, and consumer participation in energy management.

    标签: Communication Networks

    上传时间: 2020-06-06

    上传用户:shancjb