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1.
Precipitation Behavior of Reinforced Phases in In-situ Crystallization of Hypereutectic Al-Mg-Si Melt Under Stirring Conditions
不同搅拌条件下过共晶Al-Mg-Si熔体中原位结晶强化相的析出行为
2.
Effects of Zn Atomic Location on Electronic Structure of ZnO
Zn原子位置对ZnO晶体电子结构的影响
3.
In-situ Synthesis of AlN/SiC Multiphase Ceramics from Kyanite
蓝晶石原位合成氮化铝结合碳化硅复相材料
4.
These atoms must migrate across the surface to find a crystalographically favorable site.
这些原子必须通过表面迁移以找到一个结晶学上合适的位置。
5.
Preparation nylon-6/multi-wall carbon nanotubes composites by in-situ polymerization and tis crystallization behaviors
原位聚合制备尼龙-6/多壁碳纳米管复合材料及其结晶行为
6.
Study on the Structure and Crystalline Transformation of Phenolphthalein Poly(Ether Sulfone)/Nylon 6 In-Situ Composite;
酞侧基聚芳醚砜/尼龙6原位复合材料结构与晶型转变的研究
7.
Mixed-Ligand Coordination Complexes with Phenyl Acetate and Dipyridyl Compounds: Hydrothermal Synthesis, in Situ Metal/Ligand Reactions of Phenyl Malonic Acid, and Crystal Structures;
基于苯乙酸离子和联吡啶的配合物:原位配体反应和晶体结构
8.
Effects of Cyclovirobuxine D on the Action Potential of Ventricular Myocytes in Guinea Pig
环维黄杨星D原料结晶体对豚鼠单个心室肌细胞动作电位的影响
9.
Crystal Structure of An Ion Coordination Compound with Tetrazolyl Ligand Through In-situ Reaction under Mild Condition
温和条件原位配体反应合成铁四氮唑配合物及其晶体结构
10.
In-situ synthesis of periclase-hercynite material:sintering process and properties
原位合成方镁石-铁铝尖晶石材料的烧结工艺及性能研究
11.
Nanostructured Bulk Polycrystal LaB_6 Cathode Prepared by in-Situ Spark Plasma Sintering
放电等离子烧结原位制备LaB_6多晶纳米块体阴极材料
12.
Non-isothermal crystallization kinetics of Silica /MC nylon6 In Situ Nanocomposites
纳米二氧化硅/MC尼龙6原位复合材料非等温结晶动力学
13.
Crystal structure, Space lattice & Unit cell
晶体结构,定向格子及单位晶格
14.
The crystal structure has each atom surrounded by eight nearest neighbors which lie at the corners of a cube.
其晶体结构是每个原子都被8个最邻近的原子所包围,它们分别位于立方体的各个角上。
15.
The diffusion mechanism wherein net atomic migration is from lattice site to an adjacent vacancy.
一种扩散机制,这时候原子的净迁移过程是从晶格结点位置移动到邻近的空位中。
16.
Properties of Ge-Te Based Amorphous/nano-crystal In-situ Thermoelectric Nanocomposites;
Ge-Te基非晶/纳米晶原位复合热电材料研究
17.
It will recrystallize into the original structure.
它将重新结晶为原来的结构。
18.
Observation of Banded Spherulites and Lamellar Structures by Atomic Force Microscopy;
原子力显微镜观察环带球晶的形貌和片晶结构