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1.
Vibrational energy relaxation in condensed phases is an important dynamical process in chemistry, physics and biology.
凝聚相中的振动能量弛豫是化学、理学和生物学中一个非常重要的动力学过程。
2.
Analysis of strain energy and relaxation degree in different-shaped quantum dots using finite element method
有限元法分析不同形状量子点的应变能及弛豫度变化
3.
Electron-and Hole-spin Relaxations in InAs/GaAs Single Quantum Dots
InAs/GaAs单量子点中电子/空穴自旋弛豫
4.
Preparation and Characterization of PST-based Relaxor Ferroelectric Ceramics;
PST基弛豫铁电陶瓷的制备与性能研究
5.
Synthesis and Relaxivity of Multi-Nuclear Gadolinium Complexes as New MRI Contrast Agents;
多倍体钆(Ⅲ)配合物的合成与弛豫效能
6.
Research on Structure Relaxation, Crystallization and Magnetic Property of Fe-based Amorphous
Fe基非晶结构弛豫、晶化及磁性能研究
7.
Study of T2 Relaxometry in Evaluation of Epilepsy in Human;
磁共振T2弛豫时间测量在癫痫中的应用研究
8.
Interfacial Momentum Transfer During the Relaxation Process of High Speed Gas-droplet Two-phase Flow;
高速气雾两相流弛豫过程相间动量传递研究
9.
Growth and Characterization of Si-based Strain Relaxed SiGe Substrate and SiGe/Si Quantum Wells
Si基SiGe弛豫衬底及SiGe/Si量子阱生长与表征
10.
Preparation of SiGe Buffer Layer by Oxidation of SiGe/Si MQW Structure
氧化SiGe/Si多量子阱制备Si基SiGe弛豫衬底
11.
Observation of relaxation time for polarization clusters in BaTiO_3 near TC by photon correlation spectroscopy
光子相关谱法测量BaTiO_3中极化团簇的弛豫时间
12.
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
13.
The calculations or the distributions of the relaxation time and the activation energy show that they have a broad distribution.
计算了弛豫时间和激活能的分布,表明弛豫时间和激活能有宽的分布。
14.
Preparation and Dielectric Properties of Lead-based Relaxor Ferroelectric Ceramics;
铅系弛豫铁电陶瓷的制备和介电性能的研究
15.
Preparation and Properties Studies of Barium Magnesium Niobate
弛豫铁电陶瓷Ba(Mg,Nb)O_3的制备及性能研究
16.
Mechanical and Impedance Relaxations Study in Na_xCo_2O_4
Na_xCo_2O_4陶瓷的力学弛豫和阻抗弛豫研究
17.
Snoek Relaxational Peak in a Fe-Cr-Al Alloy;
Fe-Cr-Al合金中的Snoek弛豫
18.
A new method of studying the structure relaxation of amorphous materials by the measurement of Hall effect has been developed.
提出了利用霍耳效应测量研究非晶态材料结构弛豫的方法。