适应工程教育变革 建设未来物理课程OA
ADAPT TO THE REFORM OF ENGINEERING EDUCATION AND BUILD FUTURE-ORIENTED PHYSICS COURSES
本文立足高等教育普及化、人工智能第三次浪潮与工程教育第四次范式变革三大背景,探讨工科院校普通物理课程的未来建设思路,以支撑智慧教育"四个未来"任务.高等教育普及化要求课程建设实现三大转型:从知识传授转向能力培养、从标准化教学转向自主学习、从课堂主导转向产教融合.在此背景下,人工智能推动教育进入碳基生命与硅基智慧深度融合的人机协同时代,促使未来物理课程教学目标由知识中心转向能力与思维中心,教学模式升级为"师生机"三元一体.同时,工程教育第四次范式变革以新工科为核心,突出创新驱动与交叉融合.未来工科物理课程建设,核心是以项目化教学替代传统授课,深度融入AI实现人机协同,打造线上线下融合的无边界课堂;最终以学生为中心,用实践与创新培养其应对未来的工程能力.
Based on the three major contexts of the popularization of higher education,the third wave of artificial intelligence,and the fourth paradigm shift in engineering education,this paper explores the future construction ideas of general physics courses in engineering col-leges to support the"four futures"tasks of smart education.The popularization of higher edu-cation requires three major transformations in curriculum construction:from knowledge im-parting to ability development,from standardized teaching to autonomous learning,and from classroom-led to industry-education integration.In this context,artificial intelligence has driv-en education into an era of human-machine collaboration where carbon-based life and silicon-based intelligence are deeply integrated,and has prompted the future teaching objective of physics courses to shift from knowledge-centered to ability and thinking centered,and the teaching model to upgrade to the trinity of"teacher,student and life".At the same time,the fourth paradigm shift in engineering education is centered on new engineering disciplines,highlighting innovation-driven and cross-integration.The future construction of engineering physics courses will focus on replacing traditional teaching with project-based instruction,deeply integrating AI to achieve human-machine collaboration,and creating borderless class-rooms that integrate online and offline.Ultimately,with a student-centered approach,prac-tice and innovation are used to develop their engineering capabilities for the future.
施大宁
南京航空航天大学,江苏 南京 210016
工程教育人工智能项目式课程
engineering educationartificial intelligenceproject-based curriculum
《物理与工程》 2026 (3)
45-48,4
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