The energy levels of alkaline metal atom spectrum are obtained and the influences of quantum number loss on atomic energy level are also discussed. 讨论了贯穿轨道对碱金属原子双层能级间隔的影响,得出一个双层能级间隔的波数公式;
The influence of quantum number loss on alkaline metal atomic energy level 量子数亏损对碱金属原子能级的影响
A method for measuring the Lande factor of atomic energy level by Zeeman effect experiment 由塞曼效应实验测量原子能级g因子的方法
Measurement of Experiment Design of Fine Structure and Hyperfine Structure of Atomic Energy Level 原子能级的精细结构与超精细结构实验设计研究
Molecular geometry, atomic net charge, constituents and energy of the frontier molecular orbital for eight alkylated arylamine anti-oxidant and anti-corrosive additives have been calculated by density functional theory ( DFT) at the 6-31G~ basis set level. The molecular structural characteristics are explored. 采用量子化学方法,在B3LYP/6-31G~水平上对8种烷基化芳胺抗氧抗腐添加剂的平衡几何构型、净电荷及前线轨道组成和能级等进行了理论计算研究,探讨了这些化合物的结构特征。
From the viewpoint of atomic economy, the atom effective utilization, namely AUe, in which the consumed energy in the chemical process is accounted in the form of equivalent carbon amount, was proposed to scale the atom economy level of the process more precisely. 根据原子经济观点提出以碳当量计入化学加工能耗后的有效原子利用率,能够更完整地描述过程的原子经济性。
Atomic energy level splitting is helpful to dipole squeezing generation under certain conditions. 在一定条件下能级劈裂有利于原子偶级压缩的产生。
On the basis of the improved averaged atomic model, the distribution of the free electrons is dealt with by the partial-wave method to improve the precision of determination of the energy level, electron populations and atomic inner energy. 在改进的平均原子模型的基础上,在中心场近似下用分波法处理自由电子密度分布函数,提高了电子波函数、电子占据数等原子参数的计算精度。
This article is aimed at introducing the generation principle of fine structure and hyperfine structure of atomic energy level, with its experimental result improved, designed and illustrated. 介绍了原子能级的精细结构与超精细结构的产生原理,对研究原子能级精细结构的两个实验作了改进、设计及说明。
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. 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。
In this paper, amended rules are suggested for determining the order of atomic and ionic outer-shell orbital energy level and for grouping the atomic orbital energy level. 本文提出了改进的判断原子及离子外层轨道能级高低次序和划分轨道能级组的规则。
Influence of atomic coherence on the absorption-dispersion relation in V-type energy-level scheme 在V型系统中原子相干对吸收-色散关系的影响
The Theory Calculation of the Atomic Energy Level for Fe-like, Co-like, Ni-like Ions Configuration 高离化态类铁、类钴、类镍等电子序列离子的能级结构
It has been proved that for determining the ground state electronic configurations and grouping the atomic orbital energy level, the results achieved by applying the amended rules are compatible with periodicity and the determinations of the ionic outer shell electronic configurations conform well to the experimental facts. 验证表明,本文改进规则在判断原子基态电子构型、离子外层电子构型和划分轨道能级组方面能符合实验事实。
Degeneration of Atomic Energy Level 原子能级的简并性
In this peper, the calculation formulas of fine struction are obtained in the model potential theory of atomic structure by the perturbation theory. This formulas are used as calcuation fine structure of energy level for the univalent atom or lom. 应用微扰理论导出了最弱受约束电子势模型理论中精细结构的计算公式,该公式可直接用于单价原子(离子)能级的精细结构的计算。
The Craft of the MIBK Solvent Pairs Separation System Produces the Atomic Energy Level Zirconium Oxide and the Oxidized Hafnium MIBK双溶剂萃取法制备原子能级氧化锆和氧化铪的工艺设计
The atomic spontaneous emission depends not only on the energy level structures of an atom but also on the nature of the surrounding environment to which the atom is coupled. 原子的自发辐射不仅依赖于其能级结构,而且强烈依赖于所处的环境。
Three models are used to explain the radiation-induced losses which are the absorption of low temperature plasma to electromagnetic waves, atomic energy level defects to photons and energy leakage of waveguide mode resulting from changes in the refractive index distribution. 三种模型可以用来解释辐射感生损耗:低温等离子体对光波的吸收、原子能级缺陷吸收及波导参数改变导致的模式能量泄漏。
Blackbody radiation ( BBR) at any nonzero temperature will cause small shifts of atomic energy level. 在任何非零温度下,黑体辐射(BBR)会引起原子能级小幅度的移动。