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Speed of Sound and Ideal-Gas Heat Capacity at Constant Pressure for HFC-125

机译:HFC-125恒定压力下的声速和理想气体热容量

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The gaseous speed of sound, the ideal-gas heat capacity at constant pressure, and the second Virial coefficient were determined for pentafluoroethane (HFC-125). A total of 49-data points of speed of sound for gaseous HFC-125 were measured for temperatures from 273 to 313 K and pressures from 32 to 479 kPa with a cylindrical, variable-path acoustic interferometer. The ideal-gas heat capacity at constant pressure and the second acoustic Virial coefficient were determined over the temperature range from the speed of sound measurements and were correlated as functions of temperature. An analytical expression for the second Virial coefficient derived using the square-well intermolecular potential model was compared with the data.
机译:对五氟乙烷(HFC-125)测定了恒定压力下的理想气体热容量和第二种病毒系数的气态速度。对于气态HFC-125的总共49个数据点,测量从273至313 k的温度测量,并且用圆柱形的可变路径声干涉仪压力为32至479kPa。在恒定压力和第二声学病毒系数下的理想气体热容量在声音测量速度范围内测定,并且与温度的功能相关。将使用方形阱分子间潜在模型进行的第二病毒系数的分析表达与数据进行了比较。

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