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  2. Unified Modeling Language - Wikipedia

    en.wikipedia.org/wiki/Unified_Modeling_Language

    UML logo. The unified modeling language (UML) is a general-purpose visual modeling language that is intended to provide a standard way to visualize the design of a system.. UML provides a standard notation for many types of diagrams which can be roughly divided into three main groups: behavior diagrams, interaction diagrams, and structure diagrams.

  3. Applications of UML - Wikipedia

    en.wikipedia.org/wiki/Applications_of_UML

    UML ( Unified Modeling Language) is a modeling language used by software developers. [1] UML can be used to develop diagrams and provide users (programmers) with ready-to-use, expressive modeling examples. [note 1] Some UML tools generate program language code from UML. [2] UML can be used for modeling a system independent of a platform language.

  4. Blackboard Learn - Wikipedia

    en.wikipedia.org/wiki/Blackboard_Learn

    Blackboard Learn (previously the Blackboard Learning Management System) is a web-based virtual learning environment and learning management system developed by Blackboard Inc. The software features course management, customizable open architecture, and scalable design that allows integration with student information systems and authentication ...

  5. Adapter pattern - Wikipedia

    en.wikipedia.org/wiki/Adapter_pattern

    Adapter pattern. In software engineering, the adapter pattern is a software design pattern (also known as wrapper, an alternative naming shared with the decorator pattern) that allows the interface of an existing class to be used as another interface. [1] It is often used to make existing classes work with others without modifying their source ...

  6. Modeling and Analysis of Real Time and Embedded systems

    en.wikipedia.org/wiki/Modeling_and_Analysis_of...

    Description. The UML modeling language has been extended by the OMG consortium to support model-driven development of real-time and embedded application. This extension has been defined via a UML2 profile called MARTE (Modeling and Analysis of Real-Time and Embedded systems). It consists mainly of four parts:

  7. Systems modeling language - Wikipedia

    en.wikipedia.org/wiki/Systems_modeling_language

    The systems modeling language ( SysML) [1] is a general-purpose modeling language for systems engineering applications. It supports the specification, analysis, design, verification and validation of a broad range of systems and systems-of-systems . SysML was originally developed by an open source specification project, and includes an open ...

  8. Umple - Wikipedia

    en.wikipedia.org/wiki/Umple

    Umple. Umple is a language for both object-oriented programming and modelling with class diagrams and state diagrams . The name Umple is a portmanteau of "UML", "ample" and "Simple", [1] indicating that it is designed to provide ample features to extend programming languages with UML capabilities.

  9. Glossary of Unified Modeling Language terms - Wikipedia

    en.wikipedia.org/wiki/Glossary_of_Unified...

    Glossary of Unified Modeling Language terms. Glossary of Unified Modeling Language ( UML) terms provides a compilation of terminology used in all versions of UML, along with their definitions. Any notable distinctions that may exist between versions are noted with the individual entry it applies to. Contents:

  10. Timing diagram (Unified Modeling Language) - Wikipedia

    en.wikipedia.org/wiki/Timing_diagram_(Unified...

    v. t. e. A timing diagram [1] in the Unified Modeling Language 2.0 is a specific type of interaction diagram, where the focus is on timing constraints. Timing diagrams are used to explore the behaviors of objects throughout a given period of time. A timing diagram is a special form of a sequence diagram. The differences between timing diagram ...

  11. Lifecycle Modeling Language - Wikipedia

    en.wikipedia.org/wiki/Lifecycle_Modeling_Language

    The Lifecycle Modeling Language (LML) is an open-standard modeling language designed for systems engineering. It supports the full lifecycle: conceptual, utilization, support and retirement stages. Along with the integration of all lifecycle disciplines including, program management, systems and design engineering, verification and validation ...