1) heat capacity at constant volume
定体热容
1.
Aim\ To calculate the heat capacity at constant volume of metal crystal at room temperature.
目的 计算室温下金属晶体的定体热容 。
2) thermal capacity at constant volume
定体摩尔热容量
1.
Based on the condensing vapor model,the expression of sound speed close to critical point is deduced,which shows the relationship between the sound speed and the density fluctuating index and thermal capacity at constant volume.
使用压缩蒸气模型,推导了超临界流体在超临界点附近区间的声速表达式,表达式揭示了声速和密度波动指数、等温压缩系数、定体摩尔热容量等参量的联系。
3) heat capacity at constant volume(CV)
定体热容量CV
4) specific heat capacity at constant volume
比定容热容
5) ideal-gas heat capacity at constant pressure
理想气体比定压热容
1.
The ideal-gas heat capacity at constant pressure and the second acoustic virial coefficients were determined over the temperature range from the speed of sound measurements and correlated the.
分析了气相声速与理想气体比定压热容的热力学关系 ,用超声变程干涉仪测定了HFC -12 5的 4 9组气相声速值 ,温度范围 2 73- 313K ,压力范围 32 - 4 79kPa。
2.
The ideal-gas heat capacity at constant pressure and the second acoustic vinal .
分析了气相声速与理想气体比定压热容的热力学关系,用超声变程干涉仪测定了1,1,1,2,3,3,3-七氟丙烷(HFC-227ea)的 72组气相声速值,温度范围 273-333 K,压力范围 26-315 kPa,测量不确定度小于 0。
6) theoretical equation of isobaric liquid heat capacity
液体定压热容理论方程
补充资料:定体
1.支配躯体。 2.确定性质。 3.固定不变的形态或性质。 4.固定的体例﹑体式。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条