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Upper Secondary Students' Understanding of the Basic Physical Interactions in Analogous Atomic and Solar Systems

机译:高中生对类似原子和太阳系中基本物理相互作用的理解

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Comparing the atom to a ‘tiny solar system’ is a common teaching analogy, and the extent to which learners saw the systems as analogous was investigated. English upper secondary students were asked parallel questions about the physical interactions between the components of a simple atomic system and a simple solar system to investigate how they understood the forces acting within the two systems. A sample of just over 100 across the 15–18 age range responded to a pencil-and-paper instrument that asked about four aspects of the two systems. It was found that for both systems, about four fifths of students expected forces to decrease with increasing distance; but that only a little over half expected there to be interactions between the minor constituents (electrons and planets). Most students failed to apply Newton's third law to either system. There was a considerable difference in the extent to which respondents were able to identify the type of force acting in the systems (nearly all for the solar system, but only a small proportion in the case of the atom). The findings are considered in terms of both the limitations of students' understanding of the basic physics and possible implications for the use of the teaching analogy.
机译:将原子与“微小的太阳系”进行比较是一个常见的教学类比,并且研究了学习者在多大程度上将这些系统视为类比。向英语高中学生询问了有关简单原子系统和简单太阳系组件之间的物理相互作用的平行问题,以调查他们如何理解这两个系统中作用的力。在15至18岁年龄段的100多位样本中,有人用铅笔和纸质仪器回答了这两个系统的四个方面的问题。结果发现,对于两种系统,大约五分之四的学生都期望力会随着距离的增加而减小。但是只有一半以上的人认为次要成分(电子和行星)之间会发生相互作用。大多数学生未能将牛顿第三定律应用到任一系统。被调查者能够识别出作用在系统中的力类型的程度存在很大差异(对于太阳系几乎是全部,但对于原子而言只有很小的比例)。鉴于学生对基本物理理解的局限性以及对使用教学类比的可能影响,对结果进行了考虑。

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