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1)  thermodynamics and kinetics
热力学及动力学
1.
This paper deals with the thermodynamics and kinetics of the reaction of B_2O_3 with Mg-Li alloy for the production of MgO particulates reinforced Mg-Li composites, which were examined with DTA and water quenching.
通过DTA及液淬试验,对B2O3与Mg-Li合金反应合成MgO颗粒增强Mg-Li基复合材料的热力学及动力学进行了研究。
2)  chemical kinetics and thermodynamics
化学动力学及热力学
3)  thermodynamic and kinetic studies
热力学及动力学性质
1.
The thermodynamic and kinetic studies have been carried out on the reaction of singlet CCl2 and ozone O3 at 200K- 2000K, using statistic thermodynamics and Eyring transition state theory with Wigner correction on the basis of quantum chemistry.
在量化计算的基础上运用统计热力学和Wigner校正的Eyring过渡态理论研究了不同温度下单重态CCl_2和臭氧O_3反应的热力学及动力学性质。
4)  thermodynamic and kinetic conditions
热力学及动力学条件
5)  Thermokinetics
热动力学
1.
Nonlinear thermokinetics in KI-H_2O_2 reaction system;
KI-H_2O_2封闭体系热动力学研究
2.
Thermokinetics of Activation of Metal Ions to Amylase Catalyzed Reaction;
钙、镁离子对淀粉酶催化激活作用的热动力学
3.
A study on the thermokinetics of the soid-liquid reaction of zinc nitrate with histidine;
硝酸锌与组氨酸固液反应的热动力学
6)  thermodynamics [英][,θɜ:məʊdaɪ'næmɪks]  [美]['θɝmodaɪ'næmɪks]
热动力学
1.
Thermal stability and thermodynamics of Lactobacillus acidophilus microcapsule;
嗜酸乳杆菌微胶囊的热稳定性及热动力学研究
2.
Based on the basic theory of thermodynamics, the studies on the method of dimensionless parameters for 1/2 order reactions bring about the dimensionless parammeter formula for 1/2 order reactions, establish the function table of dimensionless parameters; moreover a discussion about the function values of dimensionless parameter is conducted.
根据热动力学基础理论,研究了1/2级反应的无量纲参数法,导出了1/2级反应的无量纲参数法公式,建立了无量纲参数函数表,对无量纲参数函数性质进行了讨论
3.
Some theoretical defects of the traditional fundamental laws of thermodynamics for classical continuum field theories is briefly pointed out.
指出了经典连续统场论中惯用的热动力学基本定律的不完整性。
补充资料:化工动力学
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性质:广义地说,泛指研究化学生产过程中物理过程或(与)化学过程变化的速率问题。全称应为化工过程动力学(chemical process kinetics)。但习惯上通常专指化工反应动力学(chemical reaction kinetics)。研究内容是物理过程与化学过程相结合的化学反应速率问题,包括解少化学反应器的设计,以及如何掌握工业规模的化学反应等。与化学动力学的区别,在于须结合工程具体过程,特别是传质、传热对反应速率的影响。也常被称做宏观反应动力学。

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