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1.
Synthesis of room-temperature ionic liquid [Bmim]PF_6 and study on excess molar volumes of [Bmim]PF_6 with acetonitrile
室温离子液体[Bmim]PF_6的合成及其与乙腈体系的过量摩尔体积的研究
2.
Studies on the Quantitative Relation between Molar Volume of Alkane and MOlecular Structure Using Topological Method;
烷烃摩尔体积与分子结构之间定量关系的探讨
3.
On the Discussion of Molar Heat Capacity in the Polytropic Process of Ideal Gas;
关于理想气体多方过程中摩尔热容量的讨论
4.
Studies on the Quantitative Relation Between Molar Volume of Silane and Its Molecular Structure by means of Chemical Topology;
硅烷摩尔体积与其分子结构定量关系的拓扑化学研究
5.
STUDY ON THE QUANTITATIVE RELATION BETWEEN MOLAR VOLUME AND MOLECULAR STRUCTURE OF ALKANES;
烷烃摩尔体积与其分子结构之间定量关系的研究
6.
Density and Molar Volume of Molten Ni-Based Commercial Alloys Measured by Modified Sessile Drop Method
用改良静滴法测量液态Ni基合金的密度和摩尔体积(英文)
7.
First, the volume is proportional to the number of moles.
第一,体积和摩尔数成正比。
8.
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
9.
On the Solution to the Problem of Molar Heat Capacity of Ideal Gas in Linear Quasi-Static Process;
关于理想气体在直线型准静态过程中的摩尔热容量的求解
10.
Understanding concepts of the molar volume of gas, then learning some easy exercises.
理解气体摩尔体积的概念,会做简单的计算。
11.
Densities and Apparent Molar Volumes of Amino Acids-Alcohol-Water System
氨基酸-醇-水体系的密度与表观摩尔体积
12.
A Method for Calculating the Molar Volume of alkyl Benzene,Alkyl Naphthalene and Diphenylalkane-the Group Bond Contribution Method;
烷基苯、烷基联苯和烷基萘摩尔体积的计算方法
13.
CALCULATE THE MOLAR HEAT OF VAPORIZATION OF THE PURE SUBSTANCE,APPLYING THE THEORY OF FREE VOLUME;
应用自由体积理论计算纯物质的摩尔汽化热
14.
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
15.
PEEDICTING AQUEOUS SOLUBILITY AND OCTANOL/ WATER PARTITION COEFFICIENTS OF ORGANIC CHEMICALS FROM MOLAR VOLUME
摩尔体积预测有机物水的溶解度和辛醇/水分配系数
16.
QSAR study of cinnamylphenol derivatives as EBV-EA inhibitors
运用线性和非线性的方法预测烷基苯的沸点和摩尔体积(英文)
17.
The low density graphite gets higher friction coefficient and bulk worn loss than the high density graphite.
低密度石墨的摩擦系数和体积磨损量比高密度石墨材料高。
18.
The Molar Heat Capacity of Redlich-Kwong gas in Arbitrary Quasi-static Process
雷德利克-邝气体在任意准静态过程中的摩尔热容