Research on Questioning Strategy of High School Physics Studentsfor Deep Learning

Authors

  • Yang Zhao Xinjiang Normal University
  • Salamat Umar Kashi University

DOI:

https://doi.org/10.71321/7043er06

Keywords:

physics teaching, deep learning, teaching strategies, student questioning

Abstract

Objective: Deep learning is essentially a machine learning method based on neural network. The introduction of the deep learning concept in physics teaching can help students better understand physical principles and cultivate students' core literacy, which is in line with the requirements put forward in the new curriculum standard.
Methods: This paper puts forward a teaching strategy of how to guide students to ask questions and promote students' deep learning in high school physics teaching.
Results: By guiding students to ask questions, teachers can improve students' ability of deep learning, so as to effectively cultivate students' core physical literacy. At the same time, it also provides a reference for teachers to guide students and apply deep learning theory to high school physics.
Conclusion: By creating physical situations, paying attention to classroom generative problems, highlighting experimental exploration and grasping the growth point of students' thinking, students are guided to put forward in-depth and enlightening questions, so as to promote the in-depth development of students' thinking and the understanding and mastery of subject knowledge.

Author Biography

  • Salamat Umar, Kashi University

    -

References

[1] Ministry of Education of the People 's Republic of China. Physics Curriculum Standards for Senior High School Education (2017 Edition 2020 Revision) [S]. Beijing : Beijing Normal University Press, 2022. https://www.gov.cn/zhengce/zhengceku/2022-04/21/P020231110625884914045.pdf

[2] Chen Xuemei. The implementation of the core literacy of junior high school physics under the concept of deep learning [J].Guangxi Physics, 2023,44 (04) : 106-108.https://kns.cnki.net/kcms2/article/abstract?v=Y2E-z2Sa5CNJFzrj_64cgTeUwfqlHIlvbtVU-G1sDkY6XFn0m_h7CDn694p3O539AbXWBTTZVErf4HFFMjeTSTlkmoXjBABP1NI1TyRiZA9s-F8oqsWvGdYoNOR5mVQ-T7PbMGeDNNNzWnAIfsoUGEsEXcW8vJzroCynKrLHuSshSIV5Ms10rQ==&uniplatform=NZKPT&language=CHS

[3] Xu Ting. The implementation of the core literacy of junior high school physics under the concept of deep learning [J].Journal of Jilin Institute of Education, 2023,39 (05) : 95-99. https://link.cnki.net/doi/10.16083/j.cnki.1671-1580.2023.05.013

[4] Wei Meng. Experimental inquiry to promote the exploration of middle school physics classroom teaching [J].Physical bulletin, 2019 (10) : 3.https://kns.cnki.net/kcms2/article/abstract?v=Y2E-z2Sa5CNTpOiIFqezmvn2H0dLnb0UEesadMQPSx_30sOsR1-on9c104qATeGO_AtU_Lgve6j2trpH3OjNHaT0_lJo6hFv7SbcZnCbBzgyuKiTvcGH2s31kN7o4LDsjm-6SY4jq3rb3FdIFyiJlQXM7Jaif4nVgI7sLsR88NdvGhdQnMO8_A==&uniplatform=NZKPT&language=CHS

[5] Dong Jiacai. A Brief Discussion on Strategies for Inspiring Students to Ask Questions in Teaching [J]. Politics Teaching, 2001, (Z1) : 32-34.

[6] Yang Feng Lou. Research on the ' problem chain ' strategy to promote deep learning in high school physics [J].Physics teacher, 2021,42 (06) : 34-37. https://link.cnki.net/urlid/32.1216.O4.20210623.1513.018

Type

Research Article

Published

2025-08-31

Data Availability Statement

All data needed to evaluate the conclusions in the paper are present in the paper or the Supplementary Materials. Additional data related to this paper may be requested from the authors.

Issue

Section

Articles

How to Cite

Zhao, Y., & Umar, S. (2025). Research on Questioning Strategy of High School Physics Studentsfor Deep Learning. Education Conflux, 1, e232. https://doi.org/10.71321/7043er06