基于反溯教学法的物理实验课程思政建设的探索EXPLORATION OF IDEOLOGICAL AND POLITICAL CONSTRUCTION OF COLLEGE PHYSICS EXPERIMENT COURSE BASED ON RETROACTIVE TEACHING METHOD
李莉,张师平,裴艺丽,谢子昂,陈森,吴平
摘要(Abstract):
物理实验具有天生的“思政”教育属性,可以帮助学生树立爱国情怀,为培养学生客观进取、实事求是的世界观和人生观奠定基础。为实现高质量人才培养的目标,我们提出了物理实验的反溯效教学法,将现代科学技术新发展引入物理实验课程内容,激发学生探索欲和创造欲的同时,深挖物理实验中的思政元素,以此打通前沿科技发展、基本物理原理与现象、课程价值引领之间的联系,探索了物理实验的知识传授、能力提高与价值塑造三位一体的育人模式。本文以霍尔效应实验为例,探索了基于反溯效教学法的思政元素融入物理实验课程的方法。
关键词(KeyWords): 物理实验;课程建设;课程思政;反溯教学法
基金项目(Foundation): 北京科技大学,2022年课程思政特色示范课程项目《理科物理实验Ⅰ&Ⅱ》(KC2022SZ18);; 北京科技大学,2021年度本科教育教学改革重点项目《对标一流本科课程,重构优化《大学物理实验》课程内容体系,建设物理实验金课》(JG2021Z05)
作者(Author): 李莉,张师平,裴艺丽,谢子昂,陈森,吴平
参考文献(References):
- [1] 教育部.中共中央国务院印发《关于加强和改进新形势下高校思想政治工作的意见》[J].社会主义论坛,2017(3):4-5.The Ministry of Education,the Central Committee of the Communist Party of China and the State Council issued ‘Opinions on Strengthening and Improving Ideological and Political Work in Colleges and Universities under the New Situation’[J].Socialist Forum,2017(3):4-5.(in Chinese)
- [2] 黄丽,刘伟龙,赵海发,等.“同向同行”的大学物理实验课程思政教学设计与探索[J].物理与工程,2019,29(S1):37-39.HUANG L,LIU W L,ZHAO H F,et al.Design and experimention of ideological teaching in college physics experiment course[J].Physics and Engineering,2019,29(S1):37-39.(in Chinese)
- [3] 教育部高等学校物理学与天文学教学指导委员会,物理基础课程教学指导分委员会.理工科类大学物理实验课程教学基本要求[M].北京:高等教育出版社,2010.
- [4] 王秀敏.大学物理实验课程教学中课程思政的实践与探索[J].教育现代化,2019(48):263-264.WANG X M.Practice and exploration of ideological and political education in college physics experiment teaching[J].Education Modernization,2019(48):263-264.(in Chinese)
- [5] 吕红英,戴占海,李凌燕,等.基于微课和翻转课堂的大学物理实验教学改革[J].大学物理实验,2018,31(3):126-130.LV H Y,DAI Z H,LI L Y,et al.The educational reform of physical experiment teaching in university on the basis of the microlearning and flipped classroom[J].Physical Experiment of College,2018,31(3):126-130.(in Chinese)
- [6] 奉勇辉,李延标,白忠,等.“大学物理实验”思政教育的内容探索[J].大学物理实验,2022,35(4):131-135.FENG Y H,LI Y B,BAI Z,et al.Exploring the content of ideological and political education in university physics experiment[J].Physical Experiment of College,2022,35(4):131-135.(in Chinese)
- [7] 张春玲,刘玉斌,文小青,等.O-AMAS助力大学物理实验课程思政——以碰撞实验为例[J].物理实验,2021,41(3):6.ZHANG C L,LIU Y B,WEN X Q,et al.Ideological and political education of college physics experimentassisted by O-AMAS effective teaching method—Taking Collsion Experiment as an Example[J].Physic Experimention,2021,41(3):6.(in Chinese)
- [8] 涂宏庆.霍尔效应理论研究发展历程[J].科技信息(学术研究),2008(29):363+367.TU H Q.The development of Hall effect theory[J].Science and technology information (academic research),2008(29):363+367.(in Chinese)
- [9] 张勇,孟建新,杨红英,等.霍尔效应的发展及应用[J].安徽电子信息职业技术学院学报,2010,9(2):31-34.ZHANG Y,MENG J X,YANG H Y,et al.Development and application of Hall effect[J].Journal of Anhuivocational College of Electronic & Information Technology,2010,9(2):31-34.(in Chinese)
- [10] 郑进,曹海霞.抓好二次开发落实课程思政 ——浅谈霍尔效应中的育人功能[J].中学教学参考,2021,12(35):39-41.ZHENG J,CAO H X.Focus on secondary development to implement curriculum ideological and political education—Discussing the educational function of Hall effect[J].Middle school teaching reference,2021,12(35):39-41.(in Chinese)
- [11] 倪忠楚.霍尔效应的发现及其意义[J].科技创新导报,2017,14(2):85-87.NI Z C.The discovery of the Hall effect and its significance[J].Science and Technology Innovation Herald[J].2017,14(2):85-87.(in Chinese)
- [12] 何艳,邓磊,罗志娟,等.挖掘霍尔效应中的科学精神与科学方法[J].物理与工程,2021,31(5):64-67.HE Y,DENG L,LUO Z J,et al.Exploring the scientific spirit and method in mining Hall effect[J].Physics and Engineering,2021,31(5):64-67.(in Chinese)
- [13] 李海.量子霍尔效应及量子反常霍尔效应的探索历程[J].大学物理,2014,33(12):4.LI H.Investigation process of quantum Hall effect and quantum anomalous Hall effect[J].College Physics,2014,33(12):4.(in Chinese)
- [14] HA Y J,LEE S M,MUN C H,et al.Methotrexate-loaded multifunctional nanoparticles with near-infrared irradiation for the treatment of rheumatoid arthritis[J].Arthritis Research & Therapy,2020,22(1):146-113.
- [15] PAXTON W F,BAKER P T,KLINE T R,et al.Catalytically induced electrokinetics for motors and micropumps[J].Journal of the American Chemical Society,2006,128(46):14881-14888.
- [16] SOLOVEV A A,MEI Y,URENA E B,et al.Catalytic microtubular jet engines self-propelled by accumulated gas bubbles[J].Small,2009,5(14):1288-1692.
- [17] 孟立飞,王国强.基于行星际磁场阿尔芬特性的星载磁通门磁强计在轨标定新方法[J].地球物理学报,2023,66(5):1847-1855.MENG F,WANG G Q.A new method for in-flight calibration of spaceborne fluxgate magnetometers based on Alfvénic nature of the interplanetary magnetic field[J].Chinese Journal of Geophysics,2023,66(5):1847-1855.(in Chinese)
- [18] 张琳,米斌周.量子霍尔效应的研究及进展[J].华北科技学院学报,2014,11(3):61-65.ZHANG L,MI B Z.The research and progress of the quantum Hall effect[J].Journal of North China Institute of Science and Technology,2014,11(3):61-65.(in Chinese)
- [19] 汽车发动机传感器有哪些,发动机传感器位置在哪[图解][EB/OL].https://www.qcwxjs.com/qcgztj/13623.html?ivk_sa=1024320u.
- [20] 吴汉基,周顺林,蒋远大.走向国际化的静态等离子体推力器[J].中国航天,1998(4):29-31.WU H J,ZHOU S L,JIANG Y D.Internationalized static plasma thrusters[J].Aerospace China,1998(4):29-31.(in Chinese)
- [21] 吴汉基,蒋远大,张志远.电推进技术的应用与发展趋势[J].推进技术,2003(5):385-392.WU H J,JIANG Y D,ZHANG Z Y.Application and development trend of electric propulsion technology[J].Journal of Propulsion Technology,2003(5):385-392.(in Chinese)
- [22] 曾奎.基于形状曲线逼近法的小推力航天器轨迹设计[D].哈尔滨:哈尔滨工业大学,2017.
- [23] 吴平.大学物理实验教程[M].2版.北京:机械工业出版社,2015.
- [24] 吴平.理科物理实验教程:力学、热学、电磁学、光学实验分册[M].2版.北京:清华大学出版社,2022.