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1.
APPLICATION OF WATER-SOLUBILITY POLYMER POWDERS IN THE MORTAR WITH SUPER MICRO-DOSAGE
超微掺量水溶性高分子粉末在砂浆中的应用
2.
Quantitative Analysis of the Concentration of Br-Doping in Micro-Shell Coating with XRF
ICF微球壳层掺溴含量的XRF表征
3.
Preparation of Rare Earth Doped Superfine Materials and Their Up-conversion Investigation;
稀土掺杂超微材料的制备与上转换发光研究
4.
The Preparation of Ultrafine Dy-doped TiO_2 and ZrO_2 Ceramic Powders;
掺杂稀土Dy元素的TiO_2和ZrO_2超微陶瓷粉末的制备
5.
Electrical properties of superhigh steel fiber content cement based composite
水泥基超高掺量钢纤维含量复合材料电性能
6.
Broadband Infrared Luminescence and Optical Amplification in PbS Doped Glasses;
PbS掺杂量子点玻璃的超宽带红外发光和光放大
7.
Study on the preparation of high early strength slag Portland cement with high dosage of finely ground slag
用矿渣微粉配制高掺量早强矿渣水泥的研究
8.
The Experimental Study of Anti-seawater Corrosion Concrete with a Lot of Slag at Ocean Environment
海洋环境下大掺量矿渣微粉混凝土的实验研究
9.
Infrared Quantum Cutting in Rare-Earth Doped Transparent Glass-Ceramics;
稀土掺杂透明微晶玻璃的红外量子剪裁
10.
Supported by the Educational Foundation of Civil Aviation Administration of China under Contract(99-3-01). Micro- flow- sensor of Si with deep impurities;
利用深掺杂Si所研制的微型流量传感器(英文)
11.
Effect of Volumetric Percentage of Rubber-Particles on Properties of Plastic Concrete
橡胶微粒掺量对塑性混凝土性能的影响
12.
Effects of Doping Micro Platinum on the Structures and Performances of TiO_2 Powders
微量铂掺杂对TiO_2粉末结构和性能的影响
13.
Sol-gel Preparation and Photocatalytic Activity of Zn-doped TiO_2 Nanoparticles
锌掺杂TiO_2超微粉的溶胶-凝胶法制备及光催化性能研究
14.
Determination of the Alkaloid in Food Added Opium Poppy Husk by Ultrasonic-microwave Synergistic Extraction-HPLC
超声-微波协同萃取-HPLC检测掺罂粟壳肉汤中的生物碱
15.
Preliminary Study on the High Volume Fly ash Concrete of Guangzhou Huangpu Bridge of Pearl River;
广州珠江黄埔大桥超大掺量粉煤灰混凝土的初步研究
16.
Influence of Superfine WC Powder Additive Quantity on Phase Struture and Mechanical Properties of Alloy Blades;
超细碳化钨粉末掺量对合金刀头相结构和力学性能的影响
17.
Specific-heat Measurement of Residual Superconductivity in the Normal State of Underdoped Cuprate Superconductors
欠掺杂氧化物超导体的比热测量发现正常态有电子配对
18.
Influence of steel fiber volume fraction and strain rate on spalling behavior of ultra-high performance cementitious composites
钢纤维掺量和应变率对超高性能水泥基复合材料层裂的影响