1) inelasic collision cross section
非弹性碰撞截面
2) elastic collision cross section
弹性碰撞截面
1.
By using first Born approximation of quantum mechanics and analytic wowe function of H and Heatom,their elastic and differential inelastic collision cross section is computed.
应用量子力学第一玻恩近似和氢原子与氦原子的解析波函数,计算了它们弹性碰撞和各种非弹性碰撞截面。
3) Non-elastic collision
非弹性碰撞
1.
The experiments of non-elastic collision between the Newton s balls are carried out with its results discussed,by which many problems of non-elastic collision in engineering could be guided.
对于牛顿球之间的非弹性碰撞实验进行分析和讨论 ,其结果既体现牛顿定理的应用 ,又对工程中许多非弹性碰撞问题的研究具有指导作用。
2.
This paper analyzes mainly the dynamic behaviors following the non-elastic collision with envi-ronment.
本文着重分析了与环境发生非弹性碰撞时腕力传感器的动态特性,研究表明,接触环境刚度不同,碰撞后的运动情形也不同。
4) inelastic collision
非弹性碰撞
1.
Kinetic modeling of dilute solid-liquid two-phase flows with inelastic collisions
考虑非弹性碰撞的低浓度固液两相流动理学模型
5) collision cross section
碰撞截面
1.
Ions can be distinguished by IMMS which depends on the conformation and sizes of ions whose collision cross sections(Ω) are different when they collide with the buffer gas as they fly through the drift tube.
离子淌度质谱是离子淌度分离与质谱联用的一种新型二维质谱分析技术 ,离子淌度分离原理是基于离子在飘移管中与缓冲气体碰撞时的碰撞截面不同 ,离子可按大小和形状进行分离。
2.
Based on the existing four-level model of laser-induced collisional energy transfer,the collision process in Ba-Sr system in both weak and strong fields is calculated by immediate integration of the equation of motion,and profiles of laser-induced transition probability and collision cross section under both conditions are obtained.
以现有的激光感生碰撞能量转移的四能级理论模型为基础,通过直接积分态振幅的运动方程,对弱场、强场两种情况下Ba-Sr系统的激光感生碰撞能量转移过程进行了数值计算,得到了两种情况下的激光感生碰撞跃迁概率和碰撞截面的谱线线型。
6) cross section
碰撞截面
1.
The effects of radial expansion energy on the mean field and nucleon-nucleon cross section are studied by using Skyrme interaction.
在Skyrme相互作用下讨论了径向膨胀能量对平均场、核子-核子碰撞截面的依赖关系,得到了有关状态方程的信息。
补充资料:非弹性碰撞
分子式:
CAS号:
性质:两物体(分子)发生不遵守动量守恒、动能守恒的一类碰撞。如动能和分子内部能量发生交换引起分子内部量子态的改变。
CAS号:
性质:两物体(分子)发生不遵守动量守恒、动能守恒的一类碰撞。如动能和分子内部能量发生交换引起分子内部量子态的改变。
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