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1)  Thermodynamic graph
热力学性质图
2)  thermodynamics properties
热力学性质
1.
Study on thermodynamics properties of Van de Waals nitrogen gas in low temperature
范德瓦尔斯氮气的低温热力学性质研究
2.
The vibrational frequencies,the IR spectra and the thermodynamics properties in different temperatures of the system were obtained on the basis of vibrational analysis, the relations of the effects of temperatures on thermodynamics properties were also obtained.
用B3LYP法,在6-31G(d,p)基组水平上计算4,6-双-(5-氨基-3-硝基-1,2,4-三唑-1-基)-5-硝基嘧啶(DANTNP)的性能,得其稳定的几何构型和键级;在振动分析的基础上求得体系的振动频率、IR谱及不同温度的热力学性质及温度对热力学性能影响的关系式。
3.
The vibrational frequencies,the IR spectra and the thermodynamics properties in different temperatures of the system were obtained on the basis of vibrational analysis,the relations of the effects of temperatures on thermodynamics properties were also obtained.
用B3LYP法,在6-31G(d,p)基组水平上计算二硝基吡唑并吡唑(DNPP)的性能,得其稳定的几何构型、分子轨道及键级;在振动分析的基础上求得体系的振动频率、IR谱及不同温度下的热力学性质,并得温度对热力学性能影响的关系式;用Monte-Carlo方法从理论上计算密度,运用Kamlet公式预测爆速。
3)  thermodynamic properties
热力学性质
1.
QSPR research of thermodynamic properties of polychlorinated biphenyl;
多氯联苯热力学性质的构效关系
2.
Quantitative-structure property relationship between intrinsic frequencies with molecular structure vibrating and thermodynamic properties for alkannes;
分子结构振动固有频率与链烷烃热力学性质的定量关系
3.
First-principle lattice dynamics study on thermodynamic properties;
材料热力学性质的第一原理晶格振动计算研究
4)  thermodynamical properties
热力学性质
1.
New method of study on thermodynamical properties in Mn-Fe-P-C system;
研究Mn-Fe-P-C系热力学性质的新方法
2.
Relations between thermodynamical properties in Mn-Fe alloy melt and temperature;
Mn-Fe熔体热力学性质与温度的关系
3.
Study on relations between thermodynamical properties in Mn -based systems and temperature;
Mn基体系热力学性质与温度关系的研究
5)  thermodynamics [英][,θɜ:məʊdaɪ'næmɪks]  [美]['θɝmodaɪ'næmɪks]
热力学性质
1.
Thermodynamics of Mn-based Mn-Fe-P-C Systems;
锰基Mn-Fe-P-C系热力学性质
2.
Studying the thermodynamics of ZnCl_2 in mixed solvent (ethanol and water)
ZnCl_2在混合溶剂(乙醇-水)中的热力学性质
3.
The thermodynamics of electrolyte solution at high temperature and high pressure is important not only in the research of earth fluid, but also in the application of industrial process.
高温高压下电解质溶液热力学性质的研究不仅对探讨地球内部流体的作用具有重要意义 ,而且在很多实际工业过程中也都有广泛应用。
6)  thermodynamic property
热力学性质
1.
A computer simulation study on structure and thermodynamic property of KNO_3 electrolyte solution;
硝酸钾电解质溶液的结构和热力学性质的计算机分子模拟
2.
The mechanism and thermodynamic property of the p-tert-butylcalix[4]-arene acetate(hydrolisis of cup [4]) extraction of Cr3+ from nitric acid system were reported.
报道了以对叔丁基杯[4]芳烃乙酸(简称杯[4]水解)为萃取剂,从硝酸体系中萃取Cr3+的反应机理及反应热力学性质。
3.
All other thermodynamic property expressions are derived from helmholtz energy with respect to temperature or density or both of them.
在此基础上,推导了基于Helmholtz能形式基本状态方程的各热力学性质表达式。
补充资料:热力学:热力学第零定律
热力学第零定律:
热力学中以热平衡概念为基础对温度作出定义的定律。通常表述为﹕与第三个系统处於热平衡状态的两个系统之间﹐必定处於热平衡状态。图中A 热力学第零定律示意图 ﹑B 热力学第零定律示意图 ﹑C 热力学第零定律示意图 为 3个质量和组成固定﹐且与外界完全隔绝的热力系统。将其中的B ﹑C 用绝热壁隔开﹐同时使它们分别与A 发生热接触。待A 与B 和A 与C 都达到热平衡时﹐再使B 与C 发生热接触。这时B 和C 的热力状态不再变化﹐这表明它们之间在热性质方面也已达到平衡。第零定律表明﹐一切互为热平衡的系统具有一个数值上相等的共同的宏观性质──温度。温度计所以能够测定物体温度正是依据这个原理。
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