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用银 - 高氯酸电量计测定法拉第常数的值。

Determination of the Value of the Faraday With a Silver-Perchloric Acid Coulometer.

作者信息

Craig D Norman, Hoffman James I, Law Catherine A, Hamer Walter J

出版信息

J Res Natl Bur Stand A Phys Chem. 1960 Sep-Oct;64A(5):381-402. doi: 10.6028/jres.064A.040. Epub 1960 Oct 1.

Abstract

An accurate value of the faraday has been determined by the electrolytic dissolution of metallic silver in aqueous solutions of perchloric acid. Standards of electric current, mass, and time as maintained by the National Bureau of Standards were utilized in the determinations. The electric current was measured in terms of the standards of electromotive force and electrical resistance. Silver of high purity, freed from oxygen, was used. The value of the faraday was found to be These values were obtained using 107.9028±0.0013 and 107.8731±0.0013, for the atomic weight of silver on the physical and chemical scales, respectively. The electrochemical equivalent of silver was found to be This value may be used in an alternate method of defining the ampere in absolute value, namely, that steady current which will dissolve 1.117972 milligrams of silver per second and depends only on the standards of mass and time. The indicated uncertainties are overall limits of error based on 95 percent confidence limits for the mean and allowances for the effects of known sources of possible systematic error.

摘要

通过金属银在高氯酸水溶液中的电解溶解,已确定了法拉第常数的精确值。测定过程中采用了美国国家标准局所维持的电流、质量和时间标准。电流是根据电动势和电阻标准进行测量的。使用的是高纯度、无氧的银。发现法拉第常数的值为 这些值分别是在物理和化学量表上使用银的原子量107.9028±0.0013和107.8731±0.0013获得的。发现银的电化学当量为 该值可用于以绝对值定义安培的另一种方法,即每秒能溶解1.117972毫克银的稳定电流,且仅取决于质量和时间标准。所指出的不确定度是基于均值的95%置信限以及对已知可能系统误差源影响的余量的总体误差极限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeca/5287045/a61ca6177ed4/jresv64an5p381_a1bf1.jpg

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