| 1. | Object lights and volume effects 物体灯光和体积光效 |
| 2. | Volume effects of isotope shift 同位素位移体积效应 |
| 3. | Numerical simulation on volume effect of rock specimens under uniaxial compression 单轴压缩下岩石材料体积效应的数值模拟 |
| 4. | Partial volume effect 部分容积效应 |
| 5. | The volume effect principle of transformer oil is introduced . its application to minipulse transformer is presented 摘要介绍了变压器油的体积效应理论及其在小型脉冲变压器中的应用。 |
| 6. | The empirical results show that deleted stocks mostly yield statistically significant negative price effects and positive trading volume effects while added stocks don ' t yield those 研究发现,调出指数的股票组合大多具有显著的负价格效应和正成交量效应,而调入指数的股票组合大多不具有显著的正价格效应和正成交量效应。 |
| 7. | Nano - matreials have a perfect perspective for their volume effects and surface effects , which could enhance biologic activity , adhesiveness and proliferation of cells 纳米材料因具有一些独特的效应,如体积效应和表面效应,有利于细胞黏附、增殖和功能表达,因而作为生物医用材料特别是组织工程支架材料具有良好的应用前景。 |
| 8. | In this article , four basic properties of nanometer particle are summarized : quantum size effect , surface effect , volume effect , macroscopical quantum tunnel effect , and several ways of preparation and evaluation of nanometer particle are introduced 摘要综述了纳米微粒的四个基本特性:量子尺寸效应、表面效应、体积效应及宏观量子隧道效应,并介绍了纳米微粒的制备方法及对纳米微粒评估的方法。 |
| 9. | But , because of the partial volume effect of the organism , directly processing of the gene microarray data will make that the characters extracted are not those of the biology genes , which will reduce the measurement sensitivity of the gene features 但是,机体组织所具有的部分体积效应,使得对基因微阵列数据的直接处理将造成所提取特征不是真正的生物基因特征本身,严重降低基因特征测量的灵敏度和指向性。 |
| 10. | The results show that the composites were more wear resistant than the matrix , contributing to the " volume effect " and " size effect " , the wear resistance increases with the particle content and size . the composite shows better wear resistance than high chromium cast iron material especially in low load and fine abrasive test condition . the results also indicate that the composite strengthened by ageing treatment was more wear resistant than as - cast composite 磨损试验结果表明,铸造碳化钨颗粒增强cu - ni - mn合金基复合材料具有比较高的抗磨料磨损能力,而且其耐磨性随着铸造碳化钨颗粒体积分数及尺寸的增大而提高,表现出了强烈的“体积效应”及“尺寸效应” ,尤其是在低载荷、细磨料磨损条件下,复合材料表现出更好的而寸磨性,即使与高铬铸铁( cr28 )相比也有很大程度的提高。 |