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- W2077348175 abstract "Measurements on the velocity and the absorption of sound by using ultrasonics have been made in light hydrogen, deuterium, helium and neon between room temperature and the boiling point of liquid oxygen As was observed by other investigators (Abello, Curtis), the values found for the absorption in hydrogen and helium are not in agreemen with theory. For hydrogen, we found for the absorption, coefficient a (cm−1) a value which is 20 times the classical theoretical value. For deuterium, the experimental value is a factor 10 too great, for helium and neon respectively a factor 4 and 3. From measurements made at the boiling point of liquid oxygen in hydrogen gas containing about 1.5% oxygen, an influence is found on the absorption of transitions occurring between even and odd rotational energy levels. At liquid hydrogen temperatures the absorption in hydrogen becomes very small and seems to agree at this temperature with the classical theoretical value. For the four gases in question, a decrease is found in the absorption coefficient as a function of temperature. For hydrogen and deuterium this decrease seems to be greater than for the two other gases." @default.
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- W2077348175 date "1938-10-01" @default.
- W2077348175 modified "2023-10-18" @default.
- W2077348175 title "Measurements on the absorption and the velocity of sound in hydrogen-, deuterium-, helium- and neon gas" @default.
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- W2077348175 doi "https://doi.org/10.1016/s0031-8914(38)90665-2" @default.
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