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The Education of Future Aeronautical Engineers: Conceiving, Designing, Implementing and Operating

机译:未来航空工程师的教育:构思,设计,实施和运营

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This paper will outline answers to the two central questions regarding improving engineering education: (1) What is the full set of knowledge, skills, and attitudes that engineering students should possess as they leave the university, and at what level of proficiency? (2) How can we do better at ensuring that students learn these skills? The suggested answers lie within an innovative educational framework, the CDIO (conceive-design-implement-operate) Initiative. This initiative will be described along with the needs it meets, its goals, context, vision and pedagogical foundation. The first question is answered by the CDIO Syllabus and the process for reaching stakeholder consensus on the level of proficiency that students should attain in a given program. The second question is addressed through a best practice framework, which discusses curriculum design, design-implement experiences, teaching and learning, student assessment, program evaluation and faculty competence. Examples are provided of the implementation of best practices within the CDIO program in Aeronautics and Astronautics at the Massachusetts Institute of Technology (MIT).
机译:本文将概述有关改善工程教育的两个核心问题的答案:(1)工科学生离开大学时应具备的全套知识,技能和态度是什么,其熟练水平是什么? (2)我们如何才能更好地确保学生学习这些技能?建议的答案位于创新的教育框架CDIO(构思,设计,实施,运营)倡议之内。将描述该计划及其满足的需求,目标,背景,愿景和教学基础。 CDIO教学大纲回答了第一个问题,并达成了有关利益相关者就学生在给定课程中应达到的熟练水平达成共识的过程。第二个问题是通过最佳实践框架解决的,该框架讨论了课程设计,设计实施经验,教与学,学生评估,课程评估和教师能力。举例说明了麻省理工学院(MIT)航空航天领域CDIO计划中最佳实践的实施方法。

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