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classical oscillator
相关语句
  经典振子
     Derivation of Dipole Oscillator Strengths from Classical Oscillator Model
     从经典振子模型出发推导偶极振子强度
短句来源
     Classical Oscillator Model of the Ground State of Hydrogen Atom
     氢原子的基态经典振子模型
短句来源
     The dielectric constant e is an important and complicated material constant,, In this paper, the physical meaning of it has been discussed thoroughly, on the basis of introducing classical oscillator model, and then the dispersion and tensor properties of e have been discussed soundly.
     介电常数ε是一个重要而又复杂的物质常量。 本文对介电常数ε的物理意义进行了详尽的论述,并在引进经典振子模型的基础上,对介电常数的色散特性和张量特性作了充分的讨论。
短句来源
     This paper reports on the method of derivation for electric dipole oscillator strengths and spontaneous transition probabilities from the classical oscillator model, gives the different expressions for oscillator strengths and spontaneous transition probabilities under the conditions with some related physical quantities in different units.
     本文报导了从经典振子模型推导偶极振子强度和自发跃迁几率的方法,给出当其中有关的物理量采用不同的单位时,振子强度和自发跃迁几率的不同表达形式。
短句来源
  经典谐振子
     Comparisons of quantum oscillator and classical oscillator
     量子谐振子与经典谐振子的比较
短句来源
  “classical oscillator”译为未确定词的双语例句
     According to the prophesy made by quantum mechanics that the angular momentum of ground state hydrogen atom is zero,in the paper,the ground state hydrogen atom is treated as a one-dimensional classical oscillator,and by using a potential function with phase factors and repulse force,the ground state energy of the hydrogen atom as well as an analytic expression of the vibrational orbit of electron are given.
     根据量子力学关于氢原子基态角动量为零的预言,将基态氢原子处理成经典一维振子模型,利用一种带相位因子和斥力项的势函数,给出了基态氢原子的能量及电子振动轨道的解析式。
短句来源
  相似匹配句对
     Classical Analogies of Quantum Oscillator
     量子谐振子的经典类比
短句来源
     Comparisons of quantum oscillator and classical oscillator
     量子谐振子与经典谐振子的比较
短句来源
     Classical Merger
     经典并购
短句来源
     CLASSICAL MELBOURNE
     经典墨尔本
短句来源
     Crystal Oscillator
     晶体振荡器
短句来源
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  classical oscillator
EPR and NMR detection by the nonlinear classical oscillator operating far from sinusoidal region
      
Two-phonon relaxation of a classical oscillator interacting with a condensed medium
      
The tomographic-probability distribution of the classical oscillator is studied.
      
The displaced wave packet for Caldirola-Kanai oscillator in coherent state oscillates back and forth with time about the center as for a classical oscillator.
      
The "classical" oscillator behavior is defined as type A.
      
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Data analysis is made by using classical oscillator fit method with preliminary data obtained from a Kramers-Kronig analysis which leads to a rapid convergence of the procedure. It has been found that the procedure can be used satisfactorily for the analysis of infrared reflection spectra of both the crystals (such as α-quartz) with separated bands, and LiNbO3 with overlapping bands having remarkably different intensities. Even those spectra with weak bands fading into strong ones can be processed satisfactorily....

Data analysis is made by using classical oscillator fit method with preliminary data obtained from a Kramers-Kronig analysis which leads to a rapid convergence of the procedure. It has been found that the procedure can be used satisfactorily for the analysis of infrared reflection spectra of both the crystals (such as α-quartz) with separated bands, and LiNbO3 with overlapping bands having remarkably different intensities. Even those spectra with weak bands fading into strong ones can be processed satisfactorily.

本文利用Kramers-Kronig分析法提供初始数据的振子拟合计算机程序分别对α-切石英,LiNbO_3等晶体程序不但对于各模可以分开的α-切石英晶体的多模谱线运用,而且对于LiNbO_3这样的各模重迭,大峰湮没小峰的复杂谱线也能得到满意的结果。

The dielectric constant e is an important and complicated material constant,, In this paper, the physical meaning of it has been discussed thoroughly, on the basis of introducing classical oscillator model, and then the dispersion and tensor properties of e have been discussed soundly.

介电常数ε是一个重要而又复杂的物质常量。本文对介电常数ε的物理意义进行了详尽的论述,并在引进经典振子模型的基础上,对介电常数的色散特性和张量特性作了充分的讨论。

This paper reports on the method of derivation for electric dipole oscillator strengths and spontaneous transition probabilities from the classical oscillator model, gives the different expressions for oscillator strengths and spontaneous transition probabilities under the conditions with some related physical quantities in different units.

本文报导了从经典振子模型推导偶极振子强度和自发跃迁几率的方法,给出当其中有关的物理量采用不同的单位时,振子强度和自发跃迁几率的不同表达形式。

 
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