氢原子光谱

  • 网络Hydrogen atomic spectrum;Hydrogen spectrum;atomic spectrum of hydrogen;Hydrogen spectral series;line spectra of hydrogen atom
氢原子光谱氢原子光谱
  1. 氢原子光谱理论

    Theory of Hydrogen Spectrum

  2. 阐述了氢原子光谱理论的发展过程,对氢光谱的精细结构及超精细结构进行了探讨。

    The development process of hydrogen spectrum theory is described and the fine structure and the hyperfine structure are discussed .

  3. 浅谈电的作用力线与氢原子光谱

    Talking about electric applied force line and hydrogen atomic spectrum

  4. 在均匀电场中氢原子光谱的分裂规律

    A law of spectra for hydrogen atom in a uniform electric field

  5. 波尔氢原子光谱理论的里德伯公式

    On Rydberg Formula in Bohr Model of the Hydrogen Atom

  6. 塞曼做了一个,磁场中的氢原子光谱实验。

    Who conducted the experiment of hydrogen emission spectrum in a magnetic field .

  7. 氢原子光谱中的线形分析

    The Analysis of Line Shape in Hydrogen Atomic Spectroscopy

  8. 对氢原子光谱实验的讨论

    A discussion on hydrogen atom spectrum experiments

  9. 从氢原子光谱的五步进展看量子物理的发展

    On quantum physics development from the perspective of the Five-step advancement of hydrogen atomic spectrum

  10. 氢原子光谱实验研究

    Laboratory ; on hydrogen atom spectrum experiment

  11. 本文介绍了如何利用折射率的洛伦茨色散关系拟合氢原子光谱实验的定标曲线的方法。

    This article demonstrates the method of simulating the calibration curve of hydrogen atomic spectrum using the Lorentz dispersion relation .

  12. 本文从理论上探讨了人们对氢原子光谱的认识过程,由此提出了现有实验中存在的问题。

    A discussion is made on the understanding process of hydrogen atom spectrum and problems existing in the experiment are put forward .

  13. 利用回归分析方法,对改进的小型摄谱仪测氢原子光谱实验的数据进行了处理。

    The regression analysis method is used to deal with the data of the hydrogen atom spectroscopy experiment measured by small spectrograph .

  14. 比较系统地阐述氢原子光谱理论的五步进展,并以此介绍量子物理学的发展。

    This paper systematically formulates the theory of the five step advancement of hydrogen atomic spectrum and introduces the development of quantum physics from this perspective .

  15. 光谱强度是量度光谱的重要宏观物理量,研究氢原子光谱相对强度的分布可以加深对量子跃迁几率的认识。

    The spectrum intensity is an important macro physical quantity for measuring spectrum . The understanding of quantum transition can be enhanced through studying the distribution of the relative intensity of the hydrogen spectrum .

  16. 实验表明放电形式对各种活性粒子的产率有明显的影响,而气体流量的大小直接决定放电形式的转变,其中氢原子发射光谱强度的变化可以直接表示这种转变。

    The transition form streamer discharge to spark discharge was directly dependent on the magnitude of oxygen gas flow rate and detected by the light intensity of H.

  17. 此后又发现了氢原子的其他光谱线系。

    Other series spectra for hydrogen have since been discovered .

  18. 测量了氢原子的线光谱。

    He measured the line spectra of atomic hydrogen .

  19. 研究了一种焙烧富集分离硒化氢发生原子荧光光谱法测定纯锑中微量硒的方法。

    A method for the determination of microamounts of selenium in pure antimony by HG-AFS after separation and preconcentration by the baking process was studied and reported in this paper .

  20. 与氢原子有关的原子光谱跃迁问题

    Probe into the transition in hydrogen atomic spectrum

  21. 本文讨论了一种利用残留在激光器中杂质氢原子的时间分辨光谱,来确定脉冲激光等离子体电子温度和电子密度的方法。

    A method to determine the electron temperature and density from the time resolved spectra of hydrogen atoms left in a pulsed laser plasma is described .

  22. 在玻尔理论基础上,以氢原子能级和氢原子光谱为主线,探讨了狄拉克理论、兰姆移位、氢原子光谱的超精细结构理论对氢原子理论的修正。

    Based on Bohr 's theory , atomic energy level and atomic spectra , the modification of the theory of hydrogen atom is introduced according to Dirac theory , Lamb shift and hyperfine structure of hydrogen atom .

  23. 介质阻挡放电氢等离子体中氢原子浓度的光谱诊断

    Spectroscopic Measurements of Atomic Hydrogen Concentrations in Dielectric Barrier Discharge Hydrogen Plasmas

  24. 用转镜式扫描光谱仪获得了微型环流器放电中不同时刻的氢等离子体的扫描光谱及氢原子光谱的Hα和Hβ谱线的瞬时轮廓。

    Using a rotating mirror scanning spectrometer the scanning spectra and the transient profiles of H α and H β lines of the hydrogen plasma in Mini-Torus during the discharge have been obtained .

  25. 本文以氢原子为例,阐述了玻尔的氢原子理论及引入相对论效应及量子理论后氢原子光谱的精细结构和超精细结构。

    This paper , with hydrogen atom as an example , illustrates the fine and super-fine structure of spectrum of hydrogen atom after introducing the theory of hydrogen atom , theory of relativity and theory of quantum .