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1.
Dynamics of relaxation oscillation caused by stimulated Brillouin scattering in optical fiber and its suppression
光纤中受激Brillouin散射动态弛豫振荡特性及其抑制方法
2.
Study on Double-clad Yb-doped Fiber Laser and Relaxation Oscillation in Solid-state Laser;
双包层掺镱光纤激光器及固体激光器弛豫振荡特性研究
3.
A new relaxation oscillation mode is found through the dynamic simulation.
通过模拟发现了新的弛豫振荡模式。
4.
~1H-NMR RELAXATION AND STATE EVOLVEMENT OF EVAPORABLE WATER IN CEMENT PASTES
水泥浆体中可蒸发水的~1H核磁共振弛豫特征及状态演变
5.
Research on Thulium-doped Fiber Lasers Cross-Relaxation Features
掺铥光纤激光器的交叉弛豫特性研究
6.
Non-linear In-plane Vibration of Cables Considering Cable Loosening
考虑松弛特性的斜拉索面内非线性振动分析
7.
Discussion on NMR Relaxation Time and Magnetic Field s Regularity;
核磁共振弛豫时间和磁场均匀性的研究
8.
Influence of Elastic Stretching on Screen Surface Dynamic Characters of Flip-flow Screen
筛面正拉伸对弛张筛动态特性的影响
9.
Research on hydrodynamic characteristics of forced oscillation heave damping plates of Spar platforms
Spar平台垂荡板受迫振荡水动力特性研究
10.
gas-tetrode relaxation oscillator
充气四极管张弛振荡器
11.
Study on the Characteristics of Magnetic Relaxation in High Tc Superconductivity YBCO and the Characteristics of Lower Temperature Liquid HeII;
高Tc超导体YBCO磁弛豫及低温液体HeII特性研究
12.
Research on the Microstructure and Dielectric Relaxation Behavior of Bi-based Pyrochlore Ceramics;
铋基焦绿石陶瓷的微结构及介电弛豫特性研究
13.
Stress relaxation characteristics of several kinds of rubber and their compounds used in tire tread
几种胎面用橡胶及其混炼胶的应力弛豫特性
14.
Dielectric relaxation properties of PMN-PT single crystals under hydrostatic pressure
等静压力诱导的PMN-PT单晶介电弛豫特性研究
15.
Measurement of hippocampal T_2 relaxation time on MRI in idiopathic temporal lobe epilepsy
特发性颞叶癫痫的MRI海马T_2弛豫时间测量
16.
THE NUMERICAL ANALYSIS ON THE RESPONSE OF INDUCED POLARIZATION RELAXATION TIME SPECTRA WELL LOGGING
激发极化弛豫时间谱测井仪探测特性理论分析
17.
The Ultrafast Vibrational Relaxation and Internal Conversion Dynamics of the Polyatomic Molecules in Liquids Studied in Femtosecond Laser Pulse;
飞秒强激光场中液相多原子分子的振动弛豫和内转换动力学研究
18.
Our analysis shows that the increase of the relaxation time originates from the dynamic degradate effect of the polarization relaxation of the domains.
分析表明:这种弛豫时间的增加来源于在畴区上极化弛豫的动态慢化效应.