观念转变
元认知
多样性(控制论)
记忆
死记硬背
科学建模
数学教育
过程(计算)
反射(计算机编程)
科学教育
有意义的学习
科学素养
概念学习
计算机科学
心理学
教学方法
认知
合作学习
认识论
人工智能
哲学
操作系统
神经科学
程序设计语言
作者
Katherine Wade‐Jaimes,Kadir Demir,Azhar Majeed Qureshi
摘要
Abstract Modeling is considered an important scientific practice, and modeling instruction has the potential to support conceptual change in students in physics. However, when students are not taught how to think about modeling, and how to develop and use models, the learning potential of modeling may be limited. This paper argues that the use and explicit teaching of metacognitive tools like interactive questioning and individual reflection increase students’ ability to use and make sense of models. We present a sequence of activities incorporating metacognitive tools with a variety of models (mental, physical, simulated, and mathematical) in a high school physics unit of electricity. Using data from classroom observations, individual student reflections, group‐created posters, and classroom discussion, we found evidence to demonstrate the complicated nature of conceptual change, the importance of using a variety of different representations (models) of a phenomenon, and the critical role of the teacher in learning. Teachers need to be aware of this process and able to give students the time they need to fully explore and develop multiple models and support to think critically about models. Although many classrooms are limited in time, this process is necessary to move beyond rote memorization toward meaningful conceptual change.
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