热力学性质

rè lì xué xìnɡ zhì
  • thermodynamic property
热力学性质热力学性质
  1. 利用螺旋点阵近似方法研究DNA振动的热力学性质

    Use Helical Lattice Approximation Method to Study of the Vibrational Thermodynamic Property of DNA

  2. 这些量对研究DNA解链的热力学性质是必不可少的。

    These parameters are necessary for the study of the thermodynamic property of DNA melting .

  3. 利用光吸收方法研究C(60)分子热力学性质

    Studies on the thermodynamic properties of c_ ( 60 ) by optical absorption method

  4. GaAs中空穴陷阱A,B能级的热力学性质

    Thermodynamic properties of hole traps a and B in GaAs

  5. 附碳(CA)澳矿流态化预还原的热力学性质

    The Thermodynamics Properties of Carbon-adhering Australia are during Fluidized Pre-reduction

  6. 非离子型微乳液的热力学性质&Ⅲ.盐类和pH值的影响

    Thermodynamics of Microemulsion on the Nonionic Microemulsion & ⅲ . Effects of Brine and pH

  7. 然后对葡萄糖酸钠的结晶热力学性质进行了研究。考察了温度、溶剂组成、pH、杂质等对葡萄糖酸钠溶解度的影响。

    The influences of temperature , solvent composition , pH and impurities on its solubility were studied .

  8. 非简谐振动对晶体Mo热力学性质的影响

    Influence of the Anharmonic Vibration on the Thermomechanics of Crystal Mo

  9. DyCl3在混合溶剂(DMF-H2O)中热力学性质的研究

    Study on Thermodynamics of DyCl_3 in DMF and H_2O Mixture Solvent

  10. 用MonteCarlo方法研究非电解质溶液的热力学性质

    Study of the thermodynamic properties of nonelectrolyte solution by Monte Carlo method

  11. 但由于CO2热力学性质稳定,如何将其活化成为了研究利用的难点。

    As it is thermodynamically stable how to active CO2 becomes so difficult .

  12. 用分子模拟和微扰理论研究超临界NaCl-H2O体系热力学性质

    Thermodynamic properties of supercritical nacl-h_2o system by molecular simulation and perturbation theory

  13. 配合物Zn(His)SO4·H2O(s)的低温热容和热力学性质

    Low-temperature heat capacities and thermodynamic properties of the complex Zn ( His ) SO_4 · H_2O

  14. NaCl在混合溶剂(1,2-丙二醇和水)中热力学性质的研究

    Study on Thermodynamics of NaCl in Mixed Solution of Water and 1,2-Propanediol

  15. 用Wilson方程预测三元液态合金的热力学性质

    Prediction about thermodynamic properties of ternary liquid alloys from Wilson Equation

  16. ~1HNMR化学位移研究缔合体系溶液热力学性质

    Studying Solution Thermodynamic Properties of Associating Systems by ~ 1H NMR Chemical Shift

  17. 负U哈伯德模型中η对超导体的热力学性质

    The thermodynamical properties of superconductivity basis on the η - pairing superconductivity in the negative-u Hubbard model

  18. Lewis酸&碱加合反应的热力学性质研究

    Study on the thermodynamic properties for adducts of Lewis A-B by GL chromatography

  19. q分布下二维玻色气体的热力学性质量子超化学中的类双缝干涉:玻色-爱因斯坦凝聚原子-三聚物相干转化

    The thermodynamic properties of two-dimensional Bose gas in the q distribution Coherent atom-trimer conversion in a repulsive Bose-Einstein condensate

  20. EMF和电导率法对SDS胶束体系热力学性质研究

    Investigation of thermodynamic properties of SDS micellar system by EMF and conductivity methods

  21. PEG浓度及温度对聚砜铸膜液流变学和热力学性质的影响

    Effects of PEG Concentration and Temperature on the Rheological and Thermodynamic Properties of PSF Casting Solution

  22. PAD在反相色谱法测定聚合物有关热力学性质的实验数据处理中的应用

    The Application of PAD in Processing Data of IGC Experiment to Determine Some Thermodynamic Properties of Polymers

  23. Wilson方程对二元铝基液态合金组元热力学性质的预测

    Prediction about Thermodynamic Properties of Components in Binary Aluminum - based Liquid Alloys with Wilson Equation

  24. 阳离子型Gemini表面活性剂胶束体系的热力学性质

    Thermodynamic Properties of the Micellization of Cationic Gemini Surfactants

  25. 用Collins模型研究液氙的热力学性质

    Investigating the thermodynamic properties of liquid Xe on the basis of Collins model

  26. KCl在混合溶剂(水和异丙醇)中的热力学性质的研究

    Studying the Thermodynamics of KCl in Water and 2 - propanol Mixture

  27. LiF-KF熔盐溶液热力学性质MonteCarlo法计算机模拟研究

    Thermodynamics of computerized simulation of molten LiF-KF solution by Monte Carlo method

  28. 含有微量O,S,C的Fe-Nb-Ce溶液热力学性质的研究

    Thermodynamics of fe-nb-ce liquid solutions containing trace o , s and C

  29. 1HNMR化学位移被广泛用于研究缔合体系溶液微观结构和溶液热力学性质。

    The ~ 1H NMR chemical shift is widely used to investigate the microstructure and thermodynamics of associated solution .

  30. 以Mg(0001)面为例,计算了HCP元素的表面声子谱与热力学性质,发现了表面原子热力学性质与体原子的不同点。

    For Mg ( 0001 ) surface , the surface phonon dispersion and thermodynamic properties are calculated .