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1.
Research on Short-term Forecast of Railway Passenger Flow Based on the Passenger Flow Excited Levels Model;
基于客流激发能级模型的铁路客流短期预测研究
2.
Short-term Forecast of Railway Passenger Flow based on Atomic-model Excited Level
基于原子激发能级的铁路客流短期预测的研究
3.
ground-exicited level jump
基态-激发能级跃迁
4.
To raise(an atom, for example)to a higher energy level.
激发将(原子核)提高到更高的一个能级
5.
The Dunham Calculation of Highly-excited Vibrational Energy Levels for Triatomic Molecules;
三原子分子高激发振动能级Dunham计算
6.
Motivating Learning Potential of Gifted Students in Regular Classes;
普通班级中超常学生的学习潜能激发
7.
Such photons will excite the higher vibrational levels of the OH molecule.
这种光子会激发OH分子的较高振动能级。
8.
Response of a two-Level Atom to a Narrow Bandwidth Squeezed Vacuum Excitation
二能级原子对窄带压缩真空激发的响应
9.
Numerical Calculation and Experimental Observation for Stark Energy Levels of Atomic Cesium at High Rydberg States
铯原子高激发态Stark能级的数值计算和实验观察
10.
Features are the technology or other details that make up the structure of your product or service.
好处能够激发顾客采取行动,而功能只能短暂吸引大多数顾客的兴趣。
11.
Potential Energy Function and Vibrational Energy Levels for the Ground State X~3∑_g~- and the Excited State b~1∑_g~+ of O_2 Molecule;
氧分子基态和激发态的势能函数及振动能级研究
12.
At room temperature, thermal excitation can produce an unwanted current.
在温室下,热激发可能产生所不需要的电流。
13.
Study on Railway Passenger Flow Partaking Rates of Different Train Classes Based on Ticket Data
基于铁路客票数据的列车等级客流分担率研究
14.
For the moment, we shall only be interested in the levels that arise from excitations of the outer electrons.
就目前而言,我们将只对由外层电子的激发所形成的能级感兴趣。
15.
In this paper coherent excitation of two-photon resonance in three-level systems is discussed.
本文研究了双光子共振相干激发三能级系统的问题。
16.
Theoretical Research on the Energy Sturcure and Oscillator Strength of Excited States for Mn~(22+);
Mn~(22+)离子激发态的能级结构和振子强度的理论研究
17.
Theoretical Research on the Energy Structure and Oscillator Strength of Excited States for Cr~(21+) Ion;
Cr~(21+)离子激发态的能级结构和振子强度的理论研究
18.
Theoretical Research on the Energy Structure and Oscillator Strength of Excited States for Fe~(23+) Ion;
Fe~(23+)离子激发态的能级结构和振子强度的理论研究