The Case for Systems Thinking in Undergraduate Engineering Education

J. P. Monat, Thomas F. Gannon, Matthew Amissah
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引用次数: 1

Abstract

Systems Thinking is currently a popular topic among the general public as well as in colleges and universities. Systems Thinking helps solve complex problems that cannot be solved using conventional means, helps engineers design functional and reliable systems, and helps to understand why the world looks and behaves as it does. However, Systems Thinking is usually not integrated into engineering curricula; instead, it is either taught as a stand-alone, independent program or course, or it is not taught at all. We believe that this is sub-optimal. Just as mathematics, physics, and computer science are integrated into engineering courses as fundamental tools, so should Systems Thinking be. Here we provide several examples demonstrating the application and benefits of Systems Thinking to a variety of engineering disciplines with the objective of convincing university administrators and instructors to integrate it into every engineering discipline.
系统思维在本科工程教育中的应用
系统思维是当今社会和高校的热门话题。系统思维有助于解决传统方法无法解决的复杂问题,帮助工程师设计功能可靠的系统,并帮助理解为什么世界是这样的。然而,系统思维通常不会被整合到工程课程中;相反,它要么作为一个独立的、独立的项目或课程来教授,要么根本不教授。我们认为这是次优的。就像数学、物理和计算机科学作为基本工具被整合到工程课程中一样,系统思维也应该如此。在这里,我们提供了几个例子来展示系统思维在各种工程学科中的应用和好处,目的是说服大学管理者和教师将其整合到每个工程学科中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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