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Biological Principles and Threshold Concepts for Understanding Natural Selection Implications for Developing Visualizations as a Pedagogic Tool

机译:生物学原理和阈值概念,用于理解自然选择对开发可视化作为教学工具的意义

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摘要

Modern evolutionary theory is both a central theory and an integrative framework of the life sciences. This is reflected in the common references to evolution in modern science education curricula and contexts. In fact, evolution is a core idea that is supposed to support biology learning by facilitating the organization of relevant knowledge. In addition, evolution can function as a pivotal link between concepts and highlight similarities in the complexity of biological concepts. However, empirical studies in many countries have for decades identified deficiencies in students scientific understanding of evolution mainly focusing on natural selection. Clearly, there are major obstacles to learning natural selection, and we argue that to overcome them, it is essential to address explicitly the general abstract concepts that underlie the biological processes, e.g., randomness or probability. Hence, we propose a two-dimensional framework for analyzing and structuring teaching of natural selection. The first-purely biological-dimension embraces the three main principles variation, heredity, and selection structured in nine key concepts that form the core idea of natural selection. The second dimension encompasses four so-called thresholds, i.e., general abstract and/or non-perceptual concepts: randomness, probability, spatial scales, and temporal scales. We claim that both of these dimensions must be continuously considered, in tandem, when teaching evolution in order to allow development of a meaningful understanding of the process. Further, we suggest that making the thresholds tangible with the aid of appropriate kinds of visualizations will facilitate grasping of the threshold concepts, and thus, help learners to overcome the difficulties in understanding the central theory of life.
机译:现代进化论既是生命科学的中心理论又是其综合框架。这反映在现代科学教育课程和环境中对进化的普遍提及中。实际上,进化是一个核心思想,应该通过促进相关知识的组织来支持生物学学习。另外,进化可以作为概念之间的关键联系,并突出生物学概念复杂性中的相似性。然而,数十年来,许多国家的实证研究都发现,学生对科学进化的理解主要集中在自然选择上,存在不足。显然,学习自然选择存在重大障碍,我们认为要克服它们,必须明确解决构成生物学过程基础的一般抽象概念,例如随机性或概率。因此,我们提出了一个用于分析和构建自然选择教学的二维框架。第一纯粹的生物维度包含三个主要原理:变异,遗传和选择,它们构成了九个关键概念,构成了自然选择的核心思想。第二维包括四个所谓的阈值,即一般抽象和/或非感知概念:随机性,概率,空间尺度和时间尺度。我们认为,在教授进化论时,必须连续考虑这两个方面,以便对过程有一个有意义的理解。此外,我们建议借助适当类型的可视化使阈值变得有形,将有助于阈值概念的掌握,从而帮助学习者克服理解生命中心理论的困难。

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  • 作者

    Tibell, Lena; Harms, Ute;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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