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We realize TCP/IP distributed simulation in client/server computing mode on Novell Network by Network programming interface NETBIOS (Network Basic Input/Output System) and provide Graphic User Interface for users in WINDOWS development environment. We solve upgrading problem of WINDOWS FOR WORKGROUPS in installation and contradiction between NETBIOS interrupt call with windows multitask scheduling and memory management.

在协议实现方面,以NOVELL网络为开发环境,用WINDOWS为用户提供图形界面,以客户/服务器方式,运用网络编程接口NETBIOS实现了TCP/IP分布式仿真,并解决了Windows for Workgroups安装过程中的升级问题及NETBIOS中断调用与WINDOWS多任务调度、内存管理的冲突。

The standardized specification language and interactive graphical interface provides users some advanced functions, such as visual modeling of the Combined Continuous/Discrete Event System, management of simulation projects and models, design of experimental frame, experiments of simulation, data storage, real-time and off-line presentation of simulation results, diagrammatic analysis of simulation results.

它采用规范化的描述语言和图形化人机界面,支持用户完成连续—离散事件混合系统建模、仿真项目和模型管理、实验框架设计、仿真实验、数据存储、仿真结果的实时和事后表现、仿真结果的图表分析,具有比较完善的面向对象的多媒体建模和仿真功能,是国内第一个面向对象的多媒体仿真环境。

The emphasis is introduction to the design idea and realization of algorithm of fillet ...

该模块 充分利用了Auto CAD R14的二维和三维图形处理功能,为用户提供了直观、简洁、实用的界面和造型手段。

All the mentioned features are provided with a user friendly graphical interface.

所有提到的功能是提供一个用户友好的图形界面。

Microsoft began its development of a GUI in 1983 as an extension of its MS-DOS operating system.

微软于1983年开始开发用户图形界面,作为其MS-DOS操作系统的扩展。

On the basis of SUN workstation, it provides users with a friendly interactive interface by means of multiwindow, menu, and graphical display.

系统以SUN工作站为基础,通过多窗口技术,菜单提示技术和图形显示技术为用户提供了一个非常友好的交互界面。

To use the Petri Nets graphical modeling sententiously and intuitively, the thesis is about the way to using Visual C++ development environment to develop a constitute and debug tool found on the Petri Nets GUI. The essential request is the stabilization of running, the simplicity of operation, the friendliness of the User Interface, and the utility and sufficiency of the functions. Users can draw and edit the Petri Nets model diagram through the standard GUI, and also can observe and debug the migration. It is also helpful to promote the applications.

为了更好的利用Petri网简洁、直观的图形建模方法,本论文旨在通过Visual C++开发环境开发一款基于图形界面的Petri网模型建立和调试工具,其基本要求是:运行稳定,操作简单,界面清晰友好,功能实用够用,用户可以通过标准图形界面的方式绘制,编辑Petri网模型图,并对其迁移过程进行观察和调试,便于推广应用。

To use the Petri Nets graphical modeling sententiously and intuitively, the thesis is about the way to using Visual C++ development environment to develop a constitute and debug tool found on the Petri Nets GUI.

为了更好的利用Petri网简洁、直观的图形建模方法,本论文旨在通过Visual C++开发环境开发一款基于图形界面的Petri网模型建立和调试工具,其基本要求是:运行稳定,操作简单,界面清晰友好,功能实用够用,用户可以通过标准图形界面的方式绘制,编辑Petri网模型图,并对其迁移过程进行观察和调试,便于推广应用。

Dan Bricklin and Bob Frankston develop the first electronic spreadsheet, called VisiCalc, for the Apple computer. 1979-82 Bjarne Stroustrup of Bell Laboratories in New Jersey introduces "C with Classes." 1981 IBM introduces the IBM PC. 1983-85 C with Classes is redesigned and reimplemented as C++. 1984 Apple introduces the Macintosh, the first widely available computer with a "user-friendly" graphical interface using icons, windows, and a mouse device.

丹*布莱克林和鲍伯*弗兰克森为苹果电脑开发了第一个电子制表软件VisiCalc 1979-82 贾尼在新泽西创立贝尔实验室,推出了&高级语言的C& 1981 IBM推出了IBM 个人电脑 1983-85 高级语言C被改进和重新设计成C++ 1984 Apple公司推出Mac系统,这是第一个被广泛使用用户友好图形界面的计算机,该图形界面使用了图标,视窗和鼠标设备。

Editable and with cognitive issues surrounding user perception of functions (layout, visual hierarchy, figure-ground issues, and so on).

他们要关注如何用界面的视觉结构匹配用户的心理模型或者产品的行为,也必须关注如何将程序的状态传达给用户(例如,文档的只读状态和编辑状态),还要关注围绕着用户感知功能方面(布局、视觉层次及图形背景问题等)的认知性问题。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。