运用CDIO与专案式学习,将创意融入基础电气工程教育

Emily Marasco, L. Behjat
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引用次数: 19

摘要

微电子和嵌入式系统行业正在寻找有创造力的工程师来创造新的和创新的技术,同时高等教育工程入学人数下降。研究表明,学生可能早在小学就对科学、数学、工程和技术(STEM)失去兴趣,认为这些领域缺乏创新或创造力。利用CDIO工程教育倡议框架,本研究着眼于开发一种名为“探索电气工程”的创造性、基于项目的学习计划,旨在通过与其他学科(如英语、社会研究、体育和美术)的整合,教授电子和电气的入门知识。通过在STEM教育中引入创造性和跨学科的组成部分,我们建议增加电气工程对那些对其他学科感兴趣的孩子的吸引力,并鼓励创新的、探索性的问题解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating creativity into elementary electrical engineering education using CDIO and project-based learning
Microelectronics and embedded systems industries are seeking creative engineers to create new and innovative technologies at the same time as a decline in post-secondary engineering enrollment. Studies show that students may lose interest in science, mathematics, engineering and technology (STEM) as early as elementary school, believing that these areas are not innovative or creative. Using the CDIO Initiative framework for engineering education, this study looks at the development of a creative, project-based learning program called Exploring Electrical Engineering, designed to teach an introduction to electronics and electricity through integration with other disciplines, such as English, social studies, physical education and fine arts. By introducing a creative and cross-disciplinary component to STEM education, we propose to increase the appeal of electrical engineering to children who have expressed interest in other subjects, and encourage innovative, exploratory problem-solving.
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