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Integrating Dynamic Systems materials into a Mechanical Engineering curriculum through innovative use of Web-based acquisition and hands-on application and use of virtual Graphical User Interfaces - Part 5: Graphical User Interfaces (GUIs) Assist in

机译:通过基于Web的获取和动手应用的创新使用以及虚拟图形用户界面的使用,将Dynamic Systems材料集成到机械工程课程中-第5部分:图形用户界面(GUI)辅助

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This six-part educational series presents some approaches that have been incorporated into a Mechanical Engineering curriculum to better integrate materials related to STEM (Science, Technology, Engineering, and Mathematics) that are generally considered to be disjointed from a student's learning perspective. The material presented in this series has been developed in order to better integrate material taught in traditional differential equations, math methods, dynamics systems, and laboratory courses in Mechanical Engineering at the University of Massachusetts Lowell to help students better understand the true inter-relationship of this material for solving structural dynamic-related problems. While this material is geared toward a Mechanical Engineering curriculum, all of the educational materials have been developed in a modular fashion and can be used in any curriculum which addresses dynamic systems applications (such as Chemical Engineering, Electrical Engineering, Applied Mechanics, etc.) Part 1: Background of Problem and Generic Methodology Employed presents the introduction to the problem and identifies general approaches utilized. Part 2: Numerical Difficulties Processing Measured Data identifies some typical numerical issues that need to be addressed. Part 3: Dynamic Systems-Analytical and Experimental System Characterization identifies an approach for integrating analytical and experimental concepts in a dynamic systems project for system characterization. Part 4: Alternate Approaches for Teaching Fourier Series Applications presents some alternate mechanisms for teaching Fourier series material. Part 5: Graphical User Interfaces (GUIs) Assist in Solidifying Analytical Materials identifies some additional graphical user interfaces to help foster deeper learning. Part 6: Design of a Measurement System to Integrate STEM Material presents a design of a structural dynamic measurement system integrating both analytical and experimental concepts.
机译:这个由六部分组成的教学系列介绍了一些方法,这些方法已被纳入机械工程课程中,以更好地整合与STEM(科学,技术,工程和数学)相关的材料,这些材料通常从学生的学习角度来看是脱节的。开发本系列中的材料是为了更好地整合传统的微分方程,数学方法,动力学系统以及马萨诸塞州洛厄尔大学的机械工程实验室课程中讲授的材料,以帮助学生更好地理解与材料之间真正的相互关系。该材料用于解决与结构动力学有关的问题。尽管此材料适合机械工程课程,但所有教育材料均以模块化方式开发,可用于处理动态系统应用程序的任何课程(例如化学工程,电气工程,应用力学等)。第1部分:问题的背景和所采用的一般方法介绍了问题的简介并确定了所采用的一般方法。第2部分:处理测量数据的数字困难确定了一些需要解决的典型数字问题。第3部分:动态系统-分析和实验系统表征确定了一种在动态系统项目中集成分析和实验概念以进行系统表征的方法。第4部分:教授傅立叶级数应用程序的替代方法介绍了一些教授傅立叶级数材料的替代方法。第5部分:有助于巩固分析材料的图形用户界面(GUI)标识了一些其他图形用户界面,以帮助促进更深入的学习。第6部分:集成STEM材料的测量系统的设计介绍了结合了分析和实验概念的结构动态测量系统的设计。

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