统计热力学
- 网络Statistical thermodynamics;Statistic Thermodynamics;statistical mechanics
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利用统计热力学中的微扰理论推算实际气体p、v、T的新方法
Calculation of p , v , t of real fluid using the perturbation theory of statistical thermodynamics
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水泥石C-S-H凝胶的统计热力学基础
The Basis of Statistical Thermodynamics of C-S-H Gel in Hardened Cement Pastes
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本文以统计热力学中的微扰理论为基础,建立一种推算实际气体p、v、T的新方法。
Based on the perturbation theory , a new method to calculate the p , v , T of real fluid is introduced .
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利用基于经典热力学与统计热力学理论构建的模型,对聚合物中不同的CO2质量分数对应的玻璃化转变温度值进行了计算,得到的计算结果与实验结果较吻合。
The calculation results of T_g with different CO_2 content by using the theoretical model , which is based on classical and statistical thermodynamics agrees well with the experimental result .
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αFe-N体系的统计热力学分析
Statistical thermodynamics of α fe-n system
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借助统计热力学方法和正规溶液模型法估计了在αFe-N体系中氮原子与其周围最近邻氮原子之间的相互作用。
The interaction energy of N-N pairs in α Fe-N system was evaluated through statistical thermodynamics and regular solution model .
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在特征晶体模型下,结合合金统计热力学,研究了Au-Cu系的热力学性质。
Applying statistic thermodynamics based on the characteristic crystal model , the thermodynamic properties of Au-Cu system have been studied .
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基于统计热力学方法和Eyring的绝对反应速率理论求得该反应的热力学和动力学参数。
Finally , the thermodynamic and kinetic parameters have been investigated based on the statistical thermodynamics and transition state theory .
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从统计热力学出发,通过对Flory-Huggins高分子溶胀平衡模型添加-SO3H与水作用项,获得一个三参数质子交换膜&水汽吸收模型。
A three-parameter sorption model of water vapor uptake in the Proton Exchange Membrane ( PEM ) is discussed here , derived from the Flory-Huggins model of polymer solution swell-equilibrium .
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在一个大气压和298.15K的条件下用统计热力学的计算方法来计算负焓变,其结果显示整个包合是一个熵焓驱动过程。
The negative enthalpy changes calculated from the statistical thermodynamic calculations at 1 atm and 298.15K suggest that the inclusion complexes are favored enthalpy-driven processes .
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用统计热力学方法在200~1100K范围内计算了某些大里德伯(Rydberg)分子的热力学函数以及电离过程的热力学函数改变值;
He changes of thermodynamic functions for ionization process of some large Rydberg molecules are calculated with statistical thermodynamic method over the temperature range of 200 ~ 1100K .
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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CCl2和臭氧O3反应的热力学及动力学性质。
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 .
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纯液体表面张力的统计热力学模型
Statistical thermodynamic model for calculation of surface tension of pure liquids
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由改进的方阱位能模型径向分布函数的解析式,结合统计热力学的方法关联纯物质的表面张力。
A modified square well analytical radial distribution function was derived .
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统计热力学偶势超稳定性证明
Proof of the Superstability of pair potentials in statistical thermodynamics
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非电解质液体混合物表面张力的统计热力学模型
Statistical thermodynamic model of surface tension for nonelectrolyte liquid mixtures
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熔渣的化学统计热力学模型的应用
A molten slag model based on chemical statistical thermodynamics and Its Applications
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物理化学中统计热力学的教学探讨
The Teaching of " the statistical thermodynamics " in the Physical Chemistry
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介绍与宏观平衡现象相联系的统计热力学方面的知识。
Introduces aspects of statistical thermodynamics as they relate to macroscopic equilibrium phenomena .
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二元及三元离子交换体系的统计热力学
Statistical Thermodynamics of Binary and Ternary Ion Exchange Systems
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半刚性链分子的统计热力学(Ⅰ)
Statistical Thermodynamics of Semi - rigid Chain Molecules (ⅰ)
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那么今天,我仅仅想继续探讨,一些统计热力学问题。
So today , I just want to continue doing some statistical thermodynamics .
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加压下纯流体表面张力的统计热力学模型
A statistical thermodynamic model of surface tension for pure fluids at high pressure
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嵌入式化合物嵌锂电压的统计热力学
Statistic thermodynamics study on intercalation voltage of inserted compound
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液体的内压和内能的统计热力学理论
Inner Pressure and Inner Energy of the Liquid
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高分子平衡熔点的统计热力学及相关分子能量参数的估算
Statistical Thermodynamics of Equilibrium Melting Points of Polymers and Estimation of Related Interaction Parameters
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木材比热的统计热力学研究
On Specific Heat of Wood by Statistical Thermodynamics
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液体内聚能的统计热力学研究
Statistical Thermodynamic Study on Cohesive Energy of Liquids
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高分子混合体系相分离行为的统计热力学研究
Thermodynamics of Phase Behaviors for Polymer Fluids
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计算液态混合物内能和内压的统计热力学理论
Statistical Thermodynamic Theory of Calculating the Inner Pressure and Inner Energy of the Liquid Mixture