创新创业理论研究与实践 ›› 2025, Vol. 8 ›› Issue (15): 23-25.

• 教学革新 • 上一篇    下一篇

基于学习自主性培养的大学物理课程教学改革——以原子物理学课程为例

解伟誉, 刘希望, 张宏丹, 杨玮枫   

  1. 海南大学 物理与光电工程学院, 海南海口 570228
  • 出版日期:2025-08-10 发布日期:2025-11-18
  • 作者简介:解伟誉(1992—),男,黑龙江大庆人,博士研究生,讲师,研究方向:计算物理。
  • 基金资助:
    海南大学教育教学改革研究项目“完全学分制背景下开设大学物理(通识课)创新研究”(hdjy2258); 海南省高等学校教育教学改革研究资助项目“物理课程教学手段的改革与实践——以原子物理学为例”(Hnjg2023ZD-12)、“科技英语教学的课程思政融合探索与实践”(Hnjg2024-33)

Reflections on Teaching Reform of University Physics Curriculum for Fostering Learning Autonomy—Case Study of Atomic Physics Course

XIE Weiyu, LIU Xiwang, ZHANG Hongdan, YANG Weifeng   

  1. School of Physics and Optoelectronic Engineering, Hainan University, Haikou Hainan 570228, China
  • Online:2025-08-10 Published:2025-11-18

摘要: 大学物理课程是自然科学体系中的核心基础学科,培养学生学习自主性是提升物理教学育人成效的重要目标。该文以原子物理学课程教学改革为例,针对该课程知识抽象度高、学习迁移难、课程思政元素不足等问题,以学习自主性培养为核心,提出参与式、探究式、互动式、开放式、共享式、沉浸式6种教学改革举措,有效提升了课程教学实效。大学物理课程教学应凸显课程的价值性、适用性与前瞻性,激发学生内在学习动力,搭建课堂学习与实践应用的链接,并为适应信息社会的学生终身学习赋能。

关键词: 大学物理课程, 基础学科, 终身学习, 原子物理, 自主性培养, 教学改革

Abstract: The college physics course is a core foundational discipline within the natural science system, and cultivating students'autonomy is a crucial objective for enhancing the effectiveness of physics education. Taking the teaching reform of the atomic physics course as an example, this paper addresses the pedagogical pain points of the discipline, such as the high level of abstraction in knowledge, challenges in learning transfer, and insufficient integration of ideological and political education elements. Centered on fostering learning autonomy, six teaching reform measures are proposed: participatory, exploratory, interactive, open, shared, and immersive approaches, which have effectively improved teaching effectiveness. This experience suggests that college physics instruction should emphasize the value, applicability, and futurism of the curriculum, stimulate students'intrinsic motivation for learning, bridge classroom learning with practical application, and empower students with lifelong learning capabilities to thrive in an information-driven society.

Key words: College physics course, Fundamental disciplines, Lifelong learning, Atomic physics, Autonomy cultivation, Teaching reform

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