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Max Planck and the birth of the quantum hypothesis

机译:马克斯·普朗克(Max Planck)和量子假设的诞生

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Based on the functional dependence of entropy on energy, and on Wien's distribution for black-body radiation, Max Planck obtained a formula for this radiation by an interpolation relation that fitted the experimental measurements of thermal radiation at the Physikalisch Technishe Reichanstalt (PTR) in Berlin in the late 19th century. Surprisingly, his purely phenomenological result turned out to be not just an approximation, as would have been expected, but an exact relation. To obtain a physical interpretation for his formula, Planck then turned to Boltzmann's 1877 paper on the statistical interpretation of entropy, which led him to introduce the fundamental concept of energy discreteness into physics. A novel aspect of our account that has been missed in previous historical studies of Planck's discovery is to show that Planck could have found his phenomenological formula partially derived in Boltzmann's paper in terms of a variational parameter. But the dependence of this parameter on temperature is not contained in this paper, and it was first derived by Planck. (C) 2016 American Association of Physics Teachers.
机译:基于熵对能量的函数依赖性以及黑体辐射的维恩分布,马克斯·普朗克通过内插关系获得了该辐射的公式,该公式适合柏林物理化学研究所的物理测量(PTR)在19世纪后期。出乎意料的是,他的纯粹现象学结果竟然不只是预期的近似值,而是确切的关系。为了获得对他的公式的物理解释,普朗克随后转向玻尔兹曼(Boltzmann)在1877年发表的关于熵的统计解释的论文,这使他将能量离散的基本概念引入了物理学。普朗克的发现在以前的历史研究中一直被遗漏的一个新颖的方面是,表明普朗克可以发现他的现象学公式部分是根据变参数在玻耳兹曼的论文中得出的。但是本文没有包含该参数对温度的依赖性,它是由普朗克首先得出的。 (C)2016年美国物理教师协会。

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