校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15/2026
  • 初選第二階段 6/22/2026
  • 校際選修 8/24/2026
  • 初選第三階段 8/31/2026
  • 開學後加退選 9/7/2026
  • 逾期加退選 9/21/2026
選課資源

建構主義在科學教育上的應用

The Practice of Constructivism in Science Education

學期
110-1
學分
2 學分
當期課號
5796
永久課號
IED5046
開課單位
教育研究所
授課教師
陳雅君
校區
光復
類別
選修
上課時間表
週四
3
10:10–11:00
建構主義在科學教育上的應用
HA217
2 節連堂
4
11:10–12:00

* 根據陽明交大上課時間表所列

概述

1. Exploring constructivist theories of knowledge and learning, and how these theories can apply to science education practice 2. Engage in fruitful discussions and reflection about science teaching and learning based on constructivist ideas 3. Learning to construct a review of literature in a self-selected topic relating to classroom instruction

評分方式

1. Attendance and participation (15%) 2. Mid-term reflective report (20%) 3. Constructivist teaching activities design and practice (teaching demonstration + lesson plan) (30%) 4. End-term reflective report (20%): 5. In/after-class worksheets/assignment (15%)

週次計畫
週次主題
第 1 週Introduction (google meet連結:https://meet.google.com/hpu-sbbu-vpq)
第 2 週Constructivist approaches to learning in science (Cakir, 2008) (google meet連結:https://meet.google.com/hpu-sbbu-vpq)
第 3 週The call for constructivism (Brooks & Brooks, 1999: Ch 1-3)
第 4 週Guiding principles of constructivism (Brooks & Brooks, 1999: Ch 4-5)
第 5 週Guiding principles of constructivism (Brooks & Brooks, 1999: Ch 6-7)
第 6 週Speech
第 7 週Guiding principles of constructivism (Brooks & Brooks, 1999: Ch 8)
第 8 週Becoming a constructive teacher (Brooks & Brooks, 1999: Ch 9)
第 9 週Mid-term exam
第 10 週Inquiry-based teaching (Lin, Hong, & Cheng, 2009)
第 11 週Problem-based learning (Schmidt, Rotgans, & Yew, 2011)
第 12 週Argumentation (Lin, Hong, & Frances, 2012)
第 13 週5E instructional model (Chang, Li, Chang, & Lin,2014)
第 14 週Analogies (Glynn, Duit, & Thiele, 1995; Wong, 1993)
第 15 週Demonstration of constructivist teaching (1)
第 16 週End-term exam; Demonstration of constructivist teaching (2)
第 17 週Flexible teaching week
第 18 週Flexible teaching week
教科書

1. Cakir, M. (2018). Constructivist Approaches to Learning in Science and Their Implications for Science Pedagogy: A Literature Review. International Journal of Environmental & Science Education, 3(4), 193-206. 2. Brooks, J. G., & Brooks, M.G. (1999). In search of understanding: The case for constructivist classrooms. Alexandria, VA: Association for Supervision and Curriculum Development. 3. Lin, H. Hong, Z. R. & Cheng, Y. Y. (2009). The interplay of classroom learning environment and inquiry based activities. International Journal of Science Education, 31(8), 1013-1024. 4. Schmidt, H. G., Rotgans, J. I., & Yew, E. HJ. (2011). The process of problem‐based learning what works and why. Medical Education, 45, 792–806. 5. Lin, H., Hong, Z. R., & Frances, L. (2012). Promoting and scaffolding argumentation through reflective asynchronous discussions. Computer & Science, 59, 378-384. 6. Lin, J. J., Cheng, M. F, Chang, Y. C., Li, H. W., Chang, J. Y., & Lin, D. M. (2014). Learning activities that combine science magic activities with the 5E instructional model to influence secondary-school students’ attitudes to science. Eurasia Journal of Mathematics, Science & Technology Education, 10(5), 415-426. 7. Glynn, S. M., Duit, R. & Thiele, R. B., 1995). Teaching science with analogies: A strategy for construction knowledge. In S. M. Glynn, & R. Duit (Eds.), Learning Science in the Schools: Research Reforming Practice (pp. 247-274). Routledge. 8. Wong, E. D. (1993). Self-generated analogies as a tool for constructing and evaluating explanations of scientific phenomena. Journal of Research in Science Teaching, 30(4), 367-380.

Office Hours
地點
HA202A
時間
Make an appointment with the teacher
聯絡方式
Extension: 58052; E-mail: yachunchen@nctu.edu.tw