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- W2024254768 startingPage "835" @default.
- W2024254768 abstract "The suggestion is made to use the characteristic electron dispersion frequencies or corresponding wavelengths (${ensuremath{lambda}}_{0}$) from molar refraction data for the prediction of influences of the chemical state on the stopping power of fast charged particles. Changes in ${ensuremath{lambda}}_{0}$ for atoms in different chemical states are transformed into changes in mean excitation potentials in the Bethe-Bloch theory and to changes in stopping power. Mass absorption data for ${mathrm{Bi}}^{210}$ beta rays by Fournier are corrected for the anomalous $frac{Z}{A}$-factor for hydrogen and then show the predicted effects for different groups of hydrocarbons. The very accurate data by T. J. Thompson on fast protons are compared with those from the ${ensuremath{lambda}}_{0}$ approach for a number of cases. Qualitative agreement is present for most of them but quantitatively the situation is less satisfactory. Certain favorable cases of large anomalies, not yet investigated, are predicted." @default.
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- W2024254768 date "1954-02-15" @default.
- W2024254768 modified "2023-10-03" @default.
- W2024254768 title "Influence of Chemical State on Stopping of Fast Charged Particles" @default.
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- W2024254768 doi "https://doi.org/10.1103/physrev.93.835" @default.
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