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Voltaic cells for physicists: Two surface pumps and an internal resistance

机译:物理学家的伏打电池:两个表面泵和一个内部电阻

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A proper discussion of voltaic cells-the basic elements of any battery-must invoke the fact that chemical reactions occur at each of the two electrode-electrolyte interfaces. The corresponding physical picture is that voltaic cells have two chemical-reaction-driven ''ion pumps'' and an internal resistance within the electrolyte. (These ion pumps can move electric charge; hence the historical terminology of ''electromotive force,'' or emf.) A correct physical picture for the ''seat of emf" of a voltaic cell gives, not a "volume pump" (represented by a linear rise in voltage, as in many introductory physics textbooks), but two "surface pumps" (represented by two steplike jumps in voltage). Within this framework, some basic properties of voltaic cells are considered: their emf, maximum current, internal resistance, and energy storage. We also discuss some diffusion effects within voltaic cells, whose manifestations-but not origins-are well known when batteries an charged and discharged. Because of these diffusion effects, treating the electrolyte as an internal resistance is an oversimplification. (C) 1999 American Association of Physics Teachers. [References: 21]
机译:对伏打电池(任何电池的基本元件)的适当讨论必须引起这样的事实,即化学反应发生在两个电极-电解质界面的每一个处。相应的物理图像是,伏打电池具有两个化学反应驱动的“离子泵”和电解质内部的内阻。 (这些离子泵可以移动电荷;因此,“电动势”或“电动势”的历史术语是正确的。)伏打电池“电动势”的正确物理图像给出了,而不是“体积泵”(如许多入门物理学教科书所述,它由电压的线性上升表示,但有两个“表面泵”(由两个阶梯状的电压跃变表示)在此框架内,考虑了伏打电池的一些基本特性:它们的电动势,最大电流,内部电阻和能量存储。我们还讨论了伏打电池内部的一些扩散效应,这些现象在电池充放电时是众所周知的,但其起源却不为人所知。 (C)1999美国物理教师协会[参考文献:21]

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