Younglove B A
Institute for Basic Standards, National Bureau of Standards, Boulder, Colorado 80302.
J Res Natl Bur Stand A Phys Chem. 1972 Jan-Feb;76A(1):37-40. doi: 10.6028/jres.076A.004.
The dielectric constants of compressed gaseous and liquid oxygen were measured on ten isotherms at temperatures between 100 and 300 K and on the saturated liquid boundary at temperatures between 55 and 154 K. Densities ranged from 0.06 to 1.30 g/cm at pressures up to 33 MN/m. The dielectric constant measurements were combined with accurate density data to compute the Clausius-Mossotti (CM) function, The CM function for oxygen decreases with density from a value of 0.1236 cm/g at the low density limit to 0.1219 cm/g near the triple point.
在100至300K的温度范围内,对十条等温线上的压缩气态氧和液态氧的介电常数进行了测量,并在55至154K的温度范围内对饱和液体边界进行了测量。在高达33MN/m的压力下,密度范围为0.06至1.30g/cm。将介电常数测量结果与精确的密度数据相结合,以计算克劳修斯-莫索蒂(CM)函数。氧气的CM函数随密度降低,从低密度极限处的0.1236cm³/g降至接近三相点时的0.1219cm³/g。