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电子能级 meaning in Chinese

electron energy level
electron level
electronic energy level
electronic level

Examples

  1. In chapter 4 , we study the electronic effective masses of single - wall carbon nanotubes by using band structures of them
    在第四章中,基于单壁碳纳米管的电子能级结构,我们研究了单壁碳纳米管的电子有效质量特征。
  2. And the transmitting form of the stark split energy levels between the ground state and the two excited states has been clarified . ( 3 ) a concept of the electronic infr
    ( 3 )提出了电子红外光谱的概念,与普通的红外光谱即振动红外光谱不同的是,电子红外光谱来源于电子能级间的吸收跃迁。
  3. In chapter 3 , after introducing the curvature - modified electronic structures of single - wall carbon nanotubes , we study the density of electronic states . the relations between the electronic structures and tube - diameters and chiralities are discussed
    第三章介绍了考虑卷曲效应后的单壁碳纳米管的电子能级结构,并在此基础上研究了单壁碳纳米管的电子态密度,以及管径和螺旋度对其电子结构的影响。
  4. In addition , the behaviors of the ptcl exciton in an applying electrostatic field were numerically explored . we came to the results that electric field has strong and interesting effects on the ptcl exciton . no dramatic polarization of the exciton is seen in weak electric field
    进一步研究激子对静电场的响应,发现静电场对ptcl激子的结构、电荷密度、电子能级均有明显影响,即电场能够降低ptcl激子的稳定性使其解离,并导致体系发生结构相变以及发光猝灭。
  5. Based on the theoretical analysis and experimental researches , it is presented that the wider spectra are resulted from the many fluorophores with large numbers of vibrational energy levels on the ground level in the blood cells , and the reduction of the spectral intensity is due to the reabsorption of the blood cells and the energy transfer of the collisions between the fluorophore and another one or other macromolecule . on the other hand , when the concentration of the blood cells is increased , the reabsorption of the blood cells , the secondary fluorescence due to the reabsorption and the influence of the concentration on the energy levels of fluorophores are all the factors of the red - shifted spectral peaks
    在进行理论分析和研究的基础上,提出了因血细胞中存在多种荧光团,且这些荧光团的电子能级上又存在大量的不同的振动能级,从而导致被激发的荧光团发出较宽的荧光光谱;血细胞浓度的增大,荧光团以及其他大分子之间的距离变小,造成它们之间因碰撞的能量转移概率加大,因而易产生荧光猝灭,结果导致荧光强度的变小;血细胞溶液中重吸收所导致的荧光猝灭和二次荧光发射,以及血细胞浓度的变化对其中荧光团能级系统的影响都是导致荧光峰值波长“红移”的原因;进而研究了led光诱导血细胞产生荧光光谱的机理。
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Related Words

  1. 邻近能级
  2. 能级耗尽
  3. 初始能级
  4. 光谱能级
  5. 共振能级
  6. 占有能级
  7. 能级数
  8. k能级
  9. 三能级
  10. 能级移动
  11. 电子能带
  12. 电子能带隙理论
  13. 电子能阶
  14. 电子能阶层
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