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What can the Bohr - Sommerfeld model show students of chemistry in the 21st century?

机译:Bohr-Sommerfeld模型可以向21世纪的化学学生展示什么?

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摘要

Bohr's model of the atom is considered to be important by general chemistry textbooks. A shortcoming of this model was that it could not explain the spectra of atoms containing more than one electron. To increase the explanatory power of the model, Sommerfeld hypothesized the existence of elliptical orbits. This study aims to elaborate a framework based on history and philosophy of science and formulate suggestions for facilitating students' understanding of models in chemistry. Four educational implications emerged: (i) Sommerfeld's innovation introducing elliptical orbits helped to restore the viability of Bohr's model; (ii) Bohr-Sommerfeld's model went no further than the alkali metals, which led scientists to look for other models; (iii) scientific models are tentative in nature; and (iv) inclusion of the Bohr-Sommerfeld model in textbooks can help students understand how science progresses.
机译:一般化学教科书认为玻尔的原子模型很重要。该模型的缺点是无法解释包含多个电子的原子的光谱。为了增加模型的解释能力,Sommerfeld假设存在椭圆轨道。这项研究旨在建立一个基于历史和科学哲学的框架,并提出一些建议,以促进学生对化学模型的理解。产生了四个教育意义:(i)索默菲尔德(Sommerfeld)引入椭圆轨道的创新有助于恢复玻尔模型的可行性; (ii)Bohr-Sommerfeld的模型仅次于碱金属,这促使科学家们寻找其他模型; (iii)科学模型本质上是暂定的; (iv)将Bohr-Sommerfeld模型纳入教科书可帮助学生了解科学的发展过程。

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