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带电粒子

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In this paper, in order to better understand the molecular nitrogen and other gases in the discharge of space plasma discharge process mechanism, on the establishment of a nitrogen capacitive coupling of the RF glow discharge particle simulation combined with Monte Carlo and from the simulation of the N2 RF discharge electricity in the space distribution of the electric field and charged particles (e, N2 +, N +) acts.

本文为了更好的理解氮气以及其他分子气体放电在放电空间的等离子体过程机理,建立了一个关于N2电容耦合射频辉光放电的粒子模拟与蒙特卡罗相结合的自恰模拟,模拟了N2射频放电在放电空间的电场分布和带电粒子(e, N2+,N+)行为。

The use of charged particle in an electromagnetic field equations of motion and solve the differential equations.

把电磁作用力作用到一个粒子上得出了Lorentz力公式,利用带电粒子在电磁场中的运动方程并解这个微分方程。

It is demonstrated that the configurational entropy difference of anisotropic biomolecules of different sizes dominates the complex partitioning of these molecules over the nanofilter array.

该系统利用不同大小的非各向同性粒子处在两个平面组成的狭小空间时转动自由度受限制程度的不同来实现带电粒子的分离。

Energetic Particle and Plasma Spectrometer: Measurements of the acceleration of charged particles at the Venus bow shock, where the solar wind slams in to the atmosphere

高能粒子及离子光谱仪:测量金星弓形激波,也就是太阳风轰击大气的地方,处带电粒子的加速度

The space energetic particle environment inducing SEU includes galactic cosmic ray, solar cosmic ray and high-energy trapped protons and heavy ions.

引发单粒子翻转的空间高能带电粒子环境包括银河宇宙线,太阳宇宙线和地球辐射带中的高能质子及重离子。

The compression artifacts are particularly obvious when a particle (cosmic ray or solar energetic, charged particle) hits the CCD detector on the spacecraft head-on.

当某个粒子(宇宙射线或者太阳活跃的能量,带电粒子等)击打在太空船头部的在CCD探测器之上时,铁压缩物就特别显得明显。

The compression artifacts are particularly obvious when a particle (co**ic ray or solar energetic, charged particle) hits the CCD detector on the spacecraft head-on.

当某个粒子(宇宙射线或者太阳活跃的能量,带电粒子等)击打在太空船头部的在CCD探测器之上时,铁压缩物就特别显得明显。

In this paper, by using the method tO get the arithmetic solution and with the formula calcuatring the moving particle trace in magnetic field, corrected be computer, it is easy to get the arithmetic solution, in addition,the result of solving is giv...

本文用求数值解的方法,使用经过计算机修正后的计算磁场中粒子运动轨迹的公式,可以非常迅速、简单地得到带电粒子在磁场中运动轨迹的数值解,并以图像给出解的结果。

Since the neutron is uncharged, it is not affected by the charged electrons and protons of the target atom, and is therefore more likely to be captured than any other particle, provided that it is in resonance with an energy level of the nucleus.

由于中子不带电荷,所以不受带电粒子和靶原子的质子的影响。而且,如果中子同核的能级协调一致,就会更易于被其他任何粒子俘获。

This density is consistent with the Classical density distribution,thereby it is obtained that a wave function of a charged particle in a uniform electric and magnetic field does not describe a single particle but a uniform ensembl

由此得出结论:均匀电场和磁场中带电粒子的定态波函数不描述单粒子而描述系综。

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