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1)  critical molar volume
临界摩尔体积
2)  molar volume
摩尔体积
1.
Calculating the molar volume of alkyne using the quantitative structure-property relationship;
应用QSPR方法计算炔烃的摩尔体积
2.
Calculating the molar volume of monoolefins and diolefins using the quantitative structure property relationship;
应用QSPR方法计算单烯烃和二烯烃的摩尔体积
3.
It is found()~mX highly correlated with the molar volume and molar diopter of alkanes.
mX与烷烃的摩尔体积和摩尔折光率具有良好的线性关系,相关系数均在0。
3)  critical volume
临界体积
1.
Prediction of the critical volume of alkenes using a quantitative structure property relationship;
应用QSPR方法预测烯烃的临界体积
2.
The quantitative structure-property relationship(QSPR) of structurally diverse organic compounds and their critical volumes was studied using molecule modeling and the stepwise selection regression method.
采用分子模拟和多元线性回归方法,研究了有机物临界体积的定量结构-性质关系(QSPR)。
3.
A new method based on elements and chemical bonds was developed for estimating critical volume of organic compounds.
提出了一种基于元素和化学键的估算有机物临界体积的新方法。
4)  partial molar volume
偏摩尔体积
1.
Calculation of partial molar volume of components in supercritical ammonia synthesis system;
超临界氨合成体系的组分偏摩尔体积的计算
2.
15 K were determined and transfer partial molar volumes from water to aqueous urea were derived.
计算了三种氨基酸从水到尿素-水混合溶剂的迁移偏摩尔体积,结合前期的氨基酸从水到尿素-水混合溶剂的迁移焓,探讨尿素-水混合溶剂的结构特点及其对氨基酸与尿素相互作用的影响。
3.
The partial molar volumes of the solutes were calculated based on the relationship between the concentrations of the solutes and the densities of the mixtures.
在 313 5~ 32 3 5K、 7~ 14MPa范围内测定了CO2 及CO2 甲醇、CO2 乙醇、CO2 正丁醛、CO2 异丁醛二元混合流体的表观密度 ,讨论了压力、第 2组分的种类和加入量对CO2 表观密度的影响 ,在此基础上计算了溶质的偏摩尔体积 ,讨论了温度、压力和第 2组分的性质对溶质偏摩尔体积的影响规律 。
5)  molar [英]['məʊlə(r)]  [美]['molɚ]
(体积)摩尔的
6)  critical volume ratio
临界体积比
1.
The effective dielectric constants ( ff) of three structures , namely , face-centred-cubic (fcc ) , body-centred-tetragonal (bct ) and hexagonal close packed (hcp) were calculated , and the specific values of the effective dielectric constants over the critical volume ratios of these structures were compared.
计算了体心四方、六角密堆积、面心立方三种结构的有效介电常数,通过比较上述三种结构的有效介电常数与其临界体积比的比值,证明了电流变液由液相向固相转化后所形成的基态结构为体心四方。
补充资料:临界摩尔体积
分子式:
CAS号:

性质:在临界温度和临界压力下,每摩尔物质的体积

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