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- W2013189861 abstract "With the production of certain types of highly resistant layers in some glasses, increases of current with time are observed, similar to those reported qualitatively by several earlier investigators. The nature of these current increases have been studied quantitatively and found to follow, for the cases here studied, the relationship, log (Im—It) =log a1—b1t, where Im is the maximum value of the current, It is the current at any time t after application of the field, and a1 and b1 are constants. The time T for the current to reach its maximum value seems related to the applied voltage by the equation T=K1/V—K2. The values of the constants K1 and K2 seem to decrease with increase in temperature. The time for the current to reach its maximum value decreases rapidly with increase in glass temperature. The possible importance of the phenomena observed in an explanation of the processes involved in the conductivity of glass is suggested, and the need for further investigation is emphasized. No theoretical explanation is given because of the apparent necessity for further investigations." @default.
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- W2013189861 date "1934-12-01" @default.
- W2013189861 modified "2023-09-27" @default.
- W2013189861 title "The Electrical Conductivity of Glass Part II. Current Increase Phenomena with Highly Resistant Layers" @default.
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- W2013189861 doi "https://doi.org/10.1063/1.1745222" @default.
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