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1.
controlled surface porosity support
可控表面孔度支持体
2.
Evaluation and Control Method of the Shaft & Hole Surface Roughness on Grinding Surface
轴、孔磨削表面粗糙度的评定与质量控制
3.
Structure-controllable Fabrication and Surface Modification of Poly(Ether Sulfone) and Poly(Phthalazinone Ether Sulfone Ketone) Porous Membranes;
聚醚砜、聚醚砜酮多孔膜的结构可控制备及其表面改性
4.
Preparation of Porous Carbons and Control of Porosity and Surface Functional Groups;
多孔炭的制备及其孔结构、表面官能团的调控
5.
surface-controlled avalanche transistor
可控表面雪崩晶体管
6.
The objective or final temperature both of the center and superficial can arrive in the same time by depressing 1 ℃ more of the water bag.
因此,可通过降低表面水袋1℃的办法使得中心温度与表面温度在控温时保持一致;
7.
Study of Porous Silicon Modified by Surfactants and Temperature Dependence of Spectroscopy for Porous Silicon;
多孔硅的表面活性剂修饰及多孔硅光谱温度效应的研究
8.
Uncertianty Evaluation of Measurement of Specific Surface Area and Pore Size Distribution of Porous Material
多孔材料比表面积与孔径分布测量不确定度评价
9.
measuring apparatus for measuring expansion, porosity, surface tension, viscosity
测量膨胀、孔率、表面张力或粘度用测量仪
10.
ERPs Studies on the Process of Recognizing Facial Expression and the Difference between Familiar and Novel Face under Unattentional Circumstance;
非注意条件下面孔表情和熟悉度识别的ERP研究
11.
ζ Potentials and Pore Surface Charge Densities of the Porous Polymer Membranes (PMP-013MF Membrane);
高分子MF膜的微孔表面ζ电位和电荷密度
12.
The porous size of anodic aluminum can be controlled in nanometer, so anodic ox-idation porous aluminum can be wildly used for the fabrication of semiconductor nano-materials.
阳极氧化多孔铝由于孔径可以控制在纳米尺度,因而在半导体纳米线料的制备方面具有广泛的用途。
13.
Effect of Discriminability on Interference Between Facial Expression and Facial Identity Recognition;
区分度在面部表情与面孔身份识别交互中的作用
14.
When the pad area is greater than66 percent of the aperture wall surface area, the probability of achieving efficient paste transfer is increased.
当焊盘面积大于孔壁表面积的66%提高锡膏有效转移的可能性。
15.
Tailoring Pore Size and Surface Modification of Activated Carbon as Electrode Materials for Supercapacitor;
超级电容器活性炭电极材料的孔径调控和表面改性
16.
Effect of Magnetron Sputtering Aluminum Film Structure on Anodic Micro-Pores Formed on Surface of 316L Stainless Steel
磁控溅射铝镀层结构对316L不锈钢表面阳极氧化成孔的影响
17.
INVESTIGATION OF THE ACCURATE CONTROL ABOUTSURFACE CARBON CONCENTRATION OF CARBURISING PART
渗碳零件表面碳浓度精确控制的探讨
18.
Using Roughness Surface on Control of Supersonic Laminar Flow Boundary Layer
用表面粗糙度控制超声速层流边界层