迁移率

qiān yí lǜ
  • mobility;migration rate
迁移率迁移率
  1. 雪兔LDH1同工酶相对迁移率为0.50;

    The relative migration rate of LDH isozymes is 0.50 ;

  2. Talc降低了PLA薄膜中增塑剂的迁移率,提高了薄膜的失重温度。

    Talc reduced the PLA film plasticizer migration rate , improved weight loss temperature of the films .

  3. 胞外高迁移率族蛋白B1与缺血/再灌注损伤的关系

    Research Progress on Effect of High Mobility Group Box 1 and the Relationship with Ischemia-reperfusion Injury

  4. 蛋白激酶C对高迁移率蛋白Ⅰ的磷酸化及其位点分析

    Phosphorylation of the High Mobility Group Protein I by protein Kinase C and Analysis of Phosphorylation Sites

  5. 用单能慢正电子束测量Si中的正电子迁移率

    Measurement of positron mobility in Si by slow positron beam

  6. 蛋白激酶C所致磷酸化对高迁移率蛋白Ⅰ与DNA结合活性的影响

    Effect of Phosphorylation by Protein Kinas C on the DNA Binding Activity of High Mobility Group Protein ⅰ

  7. 为了将迁移率的变化考虑到计算中,提出一个分段函数对n型硅的迁移率实验曲线进行拟合。

    A dividing function was set up to simulate the experimental curve of the n type silicon mobility .

  8. GaAs中的电子迁移率是Si中电子迁移率的6倍,其电子峰值漂移速度是Si的2倍,因此,GaAs器件具有比Si更优越的性能。

    The electronics mobility in GaAs is six times the mobility of electronics in Si .

  9. 用彗星试验检测骨髓细胞的DNA损伤,计算DNA迁移率和迁移度。

    DNA damage was assessed with comet array by calculating DNA migration and the lengths of DNA migration of bone marrow cells .

  10. 内皮细胞NF-κB的活性用电泳迁移率分析测定。

    The activation of NF - κ B in endothelial cells was investigated in a gel shift assay .

  11. 应变硅pMOS反型层中空穴迁移率k·p及蒙特卡罗模拟研究

    K · p and Monte Carlo Studies of Hole Mobility in Strained-Si pMOS Inversion Layers

  12. 靶向高迁移率族蛋白A1基因RNA干扰真核表达载体的构建

    Construction of RNA Interfering Eukaryotic Expression Vector Targeting High Mobility Group A 1 Gene

  13. 宽温区MOSFET的非常数表面迁移率效应

    The Unconstant Surface Mobility Effect of MOSFET in the Wide Temperature Range

  14. 关于GaAs的低迁移率问题

    On the low mobility of GaAs

  15. 由于二氧化钛纳米管具有p型传导特性,可以显著增大空穴传输层中载流子的迁移率。

    When titania nanotubes are doped into the hole-transport layer , the hole mobility of the device is greatly increased due to the good p-type conductibility of titania nanotubes .

  16. MOS反型层中迁移率的测试技术

    Measurement Method on Mobility in the MOS Inversion Layers

  17. 高迁移率族蛋白A2在子宫内膜癌中的表达及意义

    Expression and significance of high mobility group protein A2 in endometrial carcinoma

  18. 器件显示出良好的直流特性,其跨导和空穴迁移率比传统Si器件分别提高了30%和50%。

    The transconductance and hole mobility enhance 30 % and 50 % , respectively , compared with that of conventional bulk Si .

  19. 该电子迁移率解析模型对于GaN器件的数值模拟和器件仿真设计具有很强的实用意义。

    The analytic electron mobility model has a strong applicability for numerical simulation of GaN devices .

  20. LDL中FA含量与LDL电泳迁移率呈正相关。

    There was a positive correlation between electrophoretic mobility and FA content in LDL .

  21. N型4H-SiC中载流子密度和霍耳迁移率的模拟及研究

    Modeling and Analysis of Temperature Dependence of the Carrier Concentration and Hall Mobility in N-type 4H-SiC

  22. 高迁移率族蛋白B1的生物学效应及在几种疾病发病中的作用

    Physiological functions and pathological effects of high mobility group protein box 1

  23. 用凝胶迁移率变动分析法(EMSA)检测其与DNA的结合活性。

    The E2F1 DNA binding activities were measured by gel mobility shift assay ( EMSA ) .

  24. F钝化效应体现在:(1)降低了界面势垒高度(仅为~5meV),增加了载流子的迁移率;(2)淬灭了与缺陷相关的ZnO可见发射,提高了紫外发光效率。

    F passivation ( 1 ) significantly decreases the grain boundary potential barrier ( ~ 5 meV ), thus increasing carrier mobility ;

  25. 结果与结论:结果表明:在硫芥的作用下细胞DNA的迁移率和迁移长度增加,且呈显著剂量效应关系。

    Results and Conclusion : The results show that the length of DNA migration and the frequency of tailed cells increase , and the dose-effect relation is obvious .

  26. 方法:通过DNA结合溴乙锭后的荧光损失和DNA琼脂糖凝胶电泳的迁移率来测定DNA的损伤程度。

    Methods : DNA damage was measured by the loss of fluorescence after DNA binding to ethidium bromide and by the increased DNA mobility in agarose gel electrophoresis .

  27. 内毒素刺激大鼠腹腔巨噬细胞高迁移率族蛋白B1释放的研究

    Lipopolysaccharide induces high mobility group box-1 protein release in peritoneal macrophages in rats

  28. 高迁移率族蛋白B1对牙周膜成纤维细胞影响的研究

    High Mobility Group Protein Box 1 on the Impact of Periodontal Ligament Fibroblasts

  29. 离子效应使DNA聚合链的挠性增大,末端距与持久长度减小,从而使电泳迁移率随离子强度的增加而减小;

    The flexibility and persistence length of DNA chains have been changed after adding ions in solution , therefore , the electrophoretic mobility decreased with increasing of ionic strength ;

  30. 按电泳条带的迁移率不同,分为三个区域:A区,B区和C区。所有材料共展示了8种酶谱类型。

    According to the mobility , the electrophoresis bands can be divided into three sections : Section A , Section B and Section C. All the materials show eight zymogram types .