charge-mass ratio

英 [tʃɑːdʒ mæs ˈreɪʃiəʊ] 美 [tʃɑːrdʒ mæs ˈreɪʃioʊ]

荷质比

化学



双语例句

  1. Determining the helix starting point of determination of magnetic focusing electron charge-mass ratio electron-beam experiment
    磁聚焦法测定电子荷质比实验电子束螺旋线起点的确定
  2. Under normal circumstances the electronic Zeeman effect experiment for the charge-mass ratio measured.
    通常情况下该实验用以对电子的荷质比进行测量。
  3. Critical Magnetization Current in the Measurement of Charge-mass Ratio of Electron Using Ideal Diode
    用理想二极管测定电子荷质比中的临界磁化电流
  4. This found that if the reverse idea of the electron charge-mass ratio as a known quantity, it can re-theoretical derivation, and thus obtain the value of the vacuum in the speed of light.
    笔者发现,如果进行逆向构思,把电子的荷质比作为已知量时,可重新进行理论推导从而得到真空中的光速值。
  5. The charge-mass ratio can be measured expediently by multiple image averaging, fringe thinning and sample analyzing.
    通过多图像平均,图像细化,取样分析,快速方便地测量计算了电子的荷质比。
  6. Review on Measurement of Electrostatic Spraying Charge-mass Ratio
    静电喷雾雾滴荷质比测定研究综述
  7. Study on the Electronic Charge-mass Ratio Measurement Methods by Zeeman Effect Instrument
    采用塞曼效应仪测定电子荷质比方法研究
  8. Experimental Device of Electron Beam Measuring the Charge-Mass Ratio of Electron and Analysis on the Uncertainty of Result Surveyed
    电子束实验仪测荷质比及其测量结果的不确定度评定
  9. The theory and practice have shown that the high charge-mass ratio of the charged droplets which can be produced by the new process of induction-charged jet breaking up can purify flue gas.
    理论与实践表明:在静电洗涤器中采用射流感应破裂荷电技术能高效净化烟尘。
  10. A simple and new method of measuring the charge-mass ratio of electron
    电子荷质比(e/me)测量的简易新方法
  11. The highly charged droplets had high charge-mass ratio. Their migration velocity was about 30m/ s under electric field.
    高度荷电液滴具有很高的荷质比,在电场作用下驱进速度高达30米/秒。
  12. Measurement of the charge-mass ratio of electron using digital image processing ( DIP) technique
    利用DIP技术测定荷质比
  13. Under the force of electric field, the sample separate in the capillary due to the difference of charge-mass ratio.
    CE是基于样品在电场力的作用下,样品因荷质比的不同,在装有缓冲液的毛细管中迁移速度不同而进行分离。