| 1. | Research on solid substrate in the whole world 国内外固体基质研究概况 |
| 2. | Effect of solid substrate fermentation of c . tropicalis zd - 3 on detoxification of cottonseed meal 3固体发酵对棉子饼脱毒的效果研究 |
| 3. | Determination of trace mercury by solid substrate - room temperature phosphorimetry for the ion association complex 离子缔合物固体基质室温磷光法测定痕量汞 |
| 4. | Surface acoustic wave is a elasticity wave on the solid substrate . its velocity has 105 lower than light ’ s 声表面波是在介质表面传播的弹性波,通常它具有比电磁波慢五个数量级的波速。 |
| 5. | Determination of trace cobalt by solid substrate room temperature phosphorescence quenching method on hydrogen peroxide oxidizing pyrogallol red 催化过氧化氢氧化邻苯三酚红固体基质室温?光猝灭法测定痕量钴 |
| 6. | The method of determining trace silver using luminescent fluorones molecules of solid substrate room temperature phosphorescence quenched by the metallic ion 利用金属离子使发光分子固体基质室温?光猝灭法测定痕量银 |
| 7. | Solid substrate - room temperature phosphorimentric determination of trace tin in calcein - potassium persulfate - tin system with 1 , 10 - phenanthroline as sensitizer 邻二氮菲增敏锡催化过硫酸钾氧化钙黄绿素固体基质室温?光法测定痕量锡 |
| 8. | Quantitative analysis procedure of lignocellulose solid substrate including hemicellulose , cellulose and lignin , ignition method , volumetric method and soak extract method were utilized to study the changes of chemical components in lawn - grass and weeds during hydrothermal degradation with different conditions 摘要运用木质纤维素固体基质半纤维素、纤维素和木质素定量分析程序等分析检测了不同湿解工况下草坪草和杂草主要组分的化学变化。 |
| 9. | Afm - based single molecule force spectroscopy and optical tweezers can be used to study the molecule - level mechanical problems of polymer materials , which include the strength and elastic properties of single polymer chain , force - induced conformation transition of polymer chain , interaction among polymer molecules , adsorption strength and conformation of polymer chain on solid substrates , nanometer - scale viscoelasticity measurement and nano - tribology of polymer surfaces 摘要基于原子力显微技术的单分子力谱法和光钳法可用于研究聚合物材料分子层次上存在的力学问题,包括聚合物分子链的强度、弹性性质及外力作用下的构象转变、分子间相互作用、聚合物分子的界面吸附以及聚合物表面的纳米粘弹性和纳米摩擦学等问题。 |