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1)  crystal structure
晶格结构
1.
It was presented that there were different crystal mold and crystal structure of calcined calcium sulfate whiskers and the highest density crystal structure at 600 ℃.
不同温度下煅烧硫酸钙晶须,并用XRD测定煅烧产物的结构,发现其晶型和晶格结构均有变化,600℃左右煅烧的硫酸钙晶须晶格结构最为致密。
2.
The change of BNT crystal structure with that of parameter x was analyzed,and was compared with X-ray diffraction data of Ba6-3xSm8+2xTi18O54(BST) and Ba6-3xEu8+2xTi18O54(BET).
分析了BNT晶格结构随配比x的变化情况,与Ba6-3xSm8+2xTi18O54(BST)、Ba6-3xEu8+2xTi18O54(BET)进行比较,结果表明各离子在ab晶面内的分布对Ba6-3xR8+2xTi18O54(BRT)微波介电性能的影响较大。
3.
The variation in crystal structure and the transport properties of the sample were investigated through FTIR spectrum,Raman spectrum,ρ~T curves and ρ~T fitted curves.
通过样品的红外吸收光谱、Ramam光谱、ρ~T曲线以及ρ~T拟合曲线,研究了样品的晶格结构变化和输运性质。
2)  lattice structure
晶格结构
1.
Dielectric and ferroelectric properties of BaBi_4Ti_4O_(15) ceramics and their dependence on lattice structure;
钛酸铋钡陶瓷的介电性、铁电性及对晶格结构的依赖性
2.
Transmission electron microscope (TEM), Raman spectroscopy and X ray diffraction (XRD) were used to investigate the lattice structures, phonon properties of the samples.
通过透射电境、X光衍射和拉曼散射对纳米晶的晶格结构和声子特性进行了研究。
3.
The laws of the magnetic properties of granular films varying with the lattice structure have been studied.
采用射频溅射法制备了"纳米铁磁金属颗粒 半导体基体"Fe In2O3复合颗粒膜,研究了颗粒膜磁特性随晶格结构的变化规律。
3)  crystal lattice structure
晶格结构
1.
Effects of pretreatment of chrysotile by three compounds on the crystal lattice structure and the surface charge of chrysotile;
三种化合物浸泡处理对石棉晶格结构和表面电荷的影响
2.
This paper put forward the catalysis and transformation mechanism for the conversion of graphite in liquid crystal state into diamond layer by layer, and according to modem catalysis theory, analyzed the relationship of the electronic structure and crystal lattice structure to the activity of metal catalysts .
提出了液晶状态下石墨向金刚石逐层催化转变机理,并根据现代催化理论,分析了金属催化剂的电子结构和晶格结构与催化活性之间的关系。
4)  double-lattice structure
双晶格结构
5)  local lattice structure
晶格局域结构
6)  dielectric superlattice field structure
介电超晶格结构
补充资料:A和B交替生长的超晶格结构


A和B交替生长的超晶格结构


  A和B交替生长的超晶格结构层厚:黑2帆A 白30A B中周科学院十导体研究所供稿
  
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