结构与物性
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碱金属掺杂C(60)超导体的结构与物性
The Structures and Physical Properties of Alkali Doped C _ ( 60 ) Superconductors
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Fe的结构与物性及其压力效应的第一性原理计算
First-principles calculations of structures , properties and high pressures effects of Fe
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LiF-KCl熔盐溶液的MonteCarlo法计算机模拟研究&Ⅱ.熔体结构与物性的关系
Computerized Simulation Molten LiF-KCl Solution by Monte Carlo Method & II . Relation of Structure to Thermodynamic Properties
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低渗致密砂岩气藏岩石的孔隙结构与物性特征
Research on pore structure and character of tight sand gas reservoirs
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聚合物的分子拓扑结构与物性的关联
Correlation Between Molecular Topological Structure and Property of Polymer
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应用多层网络进行分子拓扑结构与物性的关联
Molecular Topology Structure Property Relationship Using Multilayer Neural Network
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根据毛细管束模型,在分形几何、表面与胶体化学和气体分子运动论的基础上研究了低渗砂岩气藏的孔隙结构与物性特征之间的定量关系。
Quantitative relationship between pore structure and physical property characteristic of low-permeability sandstone gas reservoir is studied on the bases of capillary bundle model , fractal geometry , surface and colloid chemistry and gas molecule motion theory .
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衰减层析成像研究:衰减层析成像研究,不仅可以完善井间地震波成像方法,而且可以扩大成像信息量,增强对研究区域地质结构与物性分布的认识,提高成像结果的分辨率和可靠性。
◇ Attenuation tomographic study . It could not only improve crosswell seismic tomography but also expend image information and boost up understand on geo-structure and physical characters distributing in studied area and improve image resolution and reliability .
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火箭发射初期双面排导型发射台瞬态承载特性研究同时指出燃气喷流流场结构与燃气物性密切相关,燃气物性不同的喷流流场之间不存在严格意义的流场分布相似及动力学相似关系。
As the combustion-gas flow field structure is closely to the properties of combustion-gas , there is no strictly similar distribution and characteristics of dynamics about the different properties of combustion-gas jet between subscale model test and prototype test .
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掺杂ZnO准一维超晶格纳米结构制备与物性研究
Synthesis and Physical Properties of Doped ZnO Quasi-one-dimensional Superlattice Nanostructures
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金属间化合物TiAl中的合金元素-结构缺陷复合体电子结构与材料物性
Electronic Structure of Alloying Element-Structure Defect Complexes and Relating Material Property for Intermetallic Compound TiAl
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利用NMRT2谱分布进行储层岩石分形结构研究,进而分析岩石物性,是一种分析、评价储层孔隙结构与物性的新方法。
It is a new method to analyze the fractal nature of pore structure and petrophysical property by using NMR T2 spectrum distribution .