The Curriculum Design of Junior High School Physics Activities Based on the Concept of STEAM Education——Taking "the Design and Production of Floating Sinks" as an Example

Xiang Qiao

Article ID: 3679
Vol 6, Issue 5, 2023

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Abstract


"Physics Curriculum Standards for Compulsory Education (2011 Edition)" requires that physics teaching in junior high schools should focus on the development of students' scientific abilities, including the development of scientific knowledge and skills, scientific methods and attitudes. In view of the problems existing in middle school physics teaching such as being out of touch with real life, lack of interest, and traditional indoctrination teaching, integrating STEAM education concepts into physics experiment courses can greatly improve the interest of physics teaching and put students first. , teachers as instructors and assistants to improve the existing problems in the current physics teaching. Therefore, how to reasonably apply the STEAM education concept to the physical experiment course is a question worth exploring. I take "the design and production of floating sinks" as an example. The general idea is to build the main line of classroom teaching: the smoothness of knowledge logic, the progress of students' cognitive laws, the smooth design of teaching activities, and how to learn buoyancy and explore objects. To better understand the floating and sinking of objects when floating and sinking, interspersed with the educational concept of STEAM.


Keywords


STEAM Teaching Philosophy; Junior High School Physics; Curriculum Activity Design; Floating and Sinking

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References


1. Qian DY. The development and utilization of physics curriculum resources in junior middle school from the perspective of Qian Dengying. Stream-- taking the practical study of buoyancy experimental design in junior middle school as an example [J]. New Wisdom, 2020 (30): 11: 13.

2. Luo Q, Zhang HJ, Zhang X. A preliminary study on Physics experiment Teaching in Junior Middle School under the concept of STEM Education-- taking the self-made "simple densitometer" as an example [J]. Educational Science Forum, 2019 (22): 48-50.

3. Zhang H. Research on Physics classroom Teaching in Junior Middle School under the concept of STEM Education [D]. Changchun normal University, 2020.

4. Wang YF. Research on Physics Teaching Strategy and Design of Junior Middle School based on STEM [D]. Yangzhou University, 2018.

5. Tang XQ. Junior high school physics curriculum design and implementation based on STEM education concept [D]. Northeast normal University, 2021.

6. Zhu CH. STEAM education practice based on junior high school physics small production activities [D]. Inner Mongolia normal University, 2018.

7. Yu QX, Liu Y. The design of physics inquiry activity in junior middle school permeating STEM education-- taking the teaching of "studying the Motion Law of Bubbles" as an example [J]. Friends of Physics, 2019. 35 (09): 47-49.

8. Wang YF. Research on Physics Teaching Strategy and Design of Junior Middle School based on STEM [D]. Yangzhou University, 2018.

9. Shi B. Physics Teaching Design of Junior Middle School based on STEM Educational concept-- taking leading students to make "floating sinker" as an example [J]. Research on Mathematical, physical, Chemical and problem solving, 2023 (08): 80-82.

10. Li YF. Research on Physics experiment Teaching in Junior Middle School based on STEAM Educational concept [D]. East China normal University, 2022.




DOI: https://doi.org/10.24294/ijmss.v6i5.3679

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