Digital Information System (DIS) and the Current Situation of Its Application in Middle School Experiment Teaching
Abstract
the development of teaching has gradually become a hot spot. This paper, using the literature research method, finds that physics experiment
teaching combined with DISLAB sensors has a significant positive effect and can have a positive impact on students learning interest, learning quality, and teachers teaching models. DISLab sensors have achieved the integration of information technology and physics experiment
teaching, providing a better perspective for teachers and students to effectively complete the teaching and learning of experiments.
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[1] hang Xiumei, Liu Ling. Optimization and Development of high school physics Student Experiment with Digital Information System
(DIS): A case study of "Momentum Conservation Law Experiment" [J]. Physics Teaching,2016,38(12):21-25.
[2] Ma Shaojun. Application of Digital Information System Laboratory in the teaching of new Physics Course in Middle school [J]. Teaching Research,2013,36(06):115-119.
[3] Shen Qinghua. The Reform and Exploration of Middle School Physics Experimental Teaching under the New Curriculum Standards [J].
Exam Weekly, 2024, (26): 123-126
[4] Wang Chao. Innovative Thinking on Experimental Teaching of Middle School Physics under Core Literacy [J]. Guangxi Physics,
2023,44 (01): 153-155
[5] Ding Hongjuan. Research on Exploratory Teaching in High School Physics Teaching [J].Mathematics and Physics (High School Edition), 2024, (12): 54-56
[6] Tang Yueming, Xie Zijuan, Zhang Wenjie. The application of sensor technology in middle school physics experimental teaching [J].
China Electronic Education, 2006, (11): 53-55
[7] Xu Shiwen, Lu Hanhui, Xu Yibing, et al. Exploring the Law of Photoelectric Effect Using Langwei DISLab [J]. Physics Teaching,
2018,40 (11): 31-32+56
[8] Wang Lianyou, Wang Yanhong. Two thermal experimental designs based on DISLab [J]. Science and Education Journal (Mid Decadal),
2020, (08): 131-132. DOI: 10.16871/j.cnki. kjwhb. 2020, March 058
[9] Wu Xiaoying, Pang Yuan, Wang Zhifan, et al. Enhancing Digital Literacy of Rural Teachers: The Essential Points, Actual States, and
Inevitable Paths [J]. Education and Equipment Research, 2024,40 (06): 28-34
[10] Guo Congbin, Wu Yuchuan, Sha Jiemin, et al. The Teacher Foundation of Science Education in Primary and Secondary Schools in China: Challenges and Responses: Based on a Questionnaire Survey of 16841 Primary and Secondary School Teachers [J]. Chinese Journal
of Education, 2024, (06): 77-83
[11] Wang Yan, Song Zhiyun. On the Current Situation and Countermeasures of Professional Development of Rural Primary School Teachers - Taking Yanbian Korean Autonomous Prefecture as an Example [J]. Journal of Yanbian Education College, 2022, 36 (04): 141-143
[12] Wei Shunping, Hou Wenting, Cheng Gang. The current situation, causes, and development paths of digital literacy among primary and
secondary school teachers in China [J]. Journal of Tianjin Radio and Television University, 2024,28 (02): 60-68
[13] Luo Shanshan, Yang Kaiyuan, Li Jinyu, et al. Exploration and Path Practice of Innovative Talents Training Model for Applied Specialized Colleges under the Background of Education Informatization 2.0: Taking the Architectural Design Professional Group as an Example [J]. Modern Vocational Education, 2024 (14): 33-36
[14] Liu Maojun, Zhang Yong. Review of Research on the Integration of High School Physics Experiments and Sensors [J]. Physics Teachers, 2015,36 (11): 68-72
DOI: http://dx.doi.org/10.18686/wef.v2i3.4310
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