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How Four Scientists Integrate Thermodynamic and Kinetic Theory Context Analogies and Methods in Protein-Folding and Dynamics Research: Implications for Biochemistry Instruction

机译:四位科学家如何在蛋白质折叠和动力学研究中整合热力学和动力学理论背景类比和方法:对生物化学教学的启示

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摘要

To keep biochemistry instruction current and relevant, it is crucial to expose students to cutting-edge scientific research and how experts reason about processes governed by thermodynamics and kinetics such as protein folding and dynamics. This study focuses on how experts explain their research into this topic with the intention of informing instruction. Previous research has modeled how expert biologists incorporate research methods, social or biological context, and analogies when they talk about their research on mechanisms. We used this model as a guiding framework to collect and analyze interview data from four experts. The similarities and differences that emerged from analysis indicate that all experts integrated theoretical knowledge with their research context, methods, and analogies when they explained how phenomena operate, in particular by mapping phenomena to mathematical models; they explored different processes depending on their explanatory aims, but readily transitioned between different perspectives and explanatory models; and they explained thermodynamic and kinetic concepts of relevance to protein folding in different ways that aligned with their particular research methods. We discuss how these findings have important implications for teaching and future educational research.
机译:为了使生物化学教学保持最新和相关性,至关重要的是让学生接触前沿科学研究,以及专家如何推理受热力学和动力学(如蛋白质折叠和动力学)控制的过程。本研究着重于专家如何解释他们对这一主题的研究,以期为教学提供指导。先前的研究已经对专家生物学家在谈论其机制研究时如何结合研究方法,社会或生物学背景以及类比进行了建模。我们使用此模型作为指导框架来收集和分析来自四位专家的访谈数据。分析得出的异同表明,所有专家在解释现象如何运行时,尤其是通过将现象映射到数学模型时,都将理论知识与他们的研究背景,方法和类比相结合。他们根据解释的目的探索了不同的过程,但是很容易在不同的观点和解释模型之间进行转换。他们以与他们的特定研究方法相一致的不同方式,解释了与蛋白质折叠相关的热力学和动力学概念。我们讨论了这些发现如何对教学和未来的教育研究产生重要影响。

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