1) FEL
双势散射理论
1.
QUANTUM TWO-POTENTIAL SCATTERING THEORY FOR SPONTANEOUS EWISION OF FEL;
自由电子激光自发辐射的量子双势散射理论
2) scattering theory
散射理论
1.
Seismic wave scattering theory, scattering characteristics and its applications.;
地震波的散射理论和散射特征及其应用
2.
The view of seismic wave scattering theory and its applications;
地震波散射理论及应用研究综述
3.
In This paper,seismic attenuation mechanism based on physical rocks and scattering theory was reviewed.
本文综述了基于岩石物理和散射理论的地震波的衰减机理,重点概括了地震波衰减的影响因素,指出衰减与孔隙度、频率、温度、压力、岩性等因素有关,最后分类介绍了各种地震波衰减的能量补偿方法。
3) Inversion scattering theory
反散射理论
4) Mie theory
Mie散射理论
1.
On the basis of the light transmission through suspensions,another explanation of the light-blockage named extinction theory was developed and perfected according to the Mie theory.
在悬浮液透射定律的基础上,推导了对光阻法原理的另一种解释,并用Mie散射理论进行了修正,将之命名为消光原理。
2.
To better understand the characteristics of photonic jets which are generated at the shadow side surfaces of cylindrical or spherical scatterer with their diameters much larger than the wavelength, we used the rigorous Mie theory, with the software Matlab 7.
本文采用严格的Mie散射理论,借助计算机仿真软件Matlab 7。
5) light scattering theory
光散射理论
1.
,On the basis of the light scattering theory of inconductive spherical particles,the hardware layout parameters of a 3D LDV/APV system are studied,and the suitable sensitivity and dynamic range of the drop diameter measurement are chosen.
通过不导电球形粒子的光散射理论,对三维LDV/APV系统的硬件布局参数进行了探讨,选择了合适的粒径测量灵敏度及动态范围,可以有效测量三维大尺度雾场内液滴粒径分布、速度分布以及体积通量等重要特性参数,从而避免了短焦距发射探头和接收器不便有效测量三维大尺度雾场的缺点。
6) Mie scattering theory
Mie散射理论
1.
Analysis of the radius of microsphere particles based on Mie scattering theory;
基于Mie散射理论的微球体颗粒半径分析
2.
Analyze the relationship of spray quantity,water fog radius and extinction characteristics by the Mie scattering theory.
在分析两栖装甲车辆的毫米波暴露特征、常见毫米波干扰技术的基础上,利用Mie散射理论分析人工水雾干扰对抗毫米波制导的原理。
补充资料:势散射
分子式:
CAS号:
性质:在核反应中,靶核对入射粒子的散射可分为势散射与共振散射两部分。势散射又称为外部散射,它与靶核的内部状态无关。将散射分为势散射与共振散射只有理论上的意义,实际测量的是二者之和。
CAS号:
性质:在核反应中,靶核对入射粒子的散射可分为势散射与共振散射两部分。势散射又称为外部散射,它与靶核的内部状态无关。将散射分为势散射与共振散射只有理论上的意义,实际测量的是二者之和。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条