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1)  time resolving power
时间分辨本领
2)  Spatial resolution
空间分辨本领
1.
Spatial resolution of small TCT;
小型TCT空间分辨本领的研究
3)  resolution [英][,rezə'lu:ʃn]  [美]['rɛzə'luʃən]
分辨本领
1.
cosine-shaped and elliptical diaphragms are adopted to achieve the apodization of the instrumental function curve,and their respective theoretical instrumental resolutions are calculated.
在采用面光源的单光栅等效双光栅型干涉选择调幅光谱仪中,采用菱形、梯形、余弦形、椭圆等特殊形状的光阑,来完成对其仪器函数的切趾,并求出相应的理论分辨本领。
2.
The resolution of optical microscope and electron microscope is discussed briefly first.
简述了光学显微镜与电子显微镜的分辨本领 。
4)  resolution power
分辨本领
1.
The effect of the nonlinear terms on the resolution power and measuring accuracy of the circular mass spectrometer is analyzed.
分析了环形质谱仪中的非线性效应 ,讨论了它们对质谱仪的分辨本领和测量精度的影响 ,并给出计算这些影响的公式 。
5)  Resolving power
分辨本领
1.
The irradiance that altemated by two different intensity point source at image plane of optical instrument were discussed in this article,shows simple change pattern of the resolving power.
通过对强度不同的两个点光源在光学仪器象面上辐照度的讨论 ,指出光学仪器分辨本领随两点源辐照度的差异而变化的一般规律 ,从而说明作为光学仪器分辨本领的 Rayliegh判据的适用范
2.
The discussion of the irradiance formed by two different intensity point source at image plane of optical instrument were discussed in this article,shows simple change pattern of the resolving power.
通过对强度不同的两个点光源在光学仪器象面上辐照度的讨论 ,指出光学仪器分辨本领随两点源照度的差异而变化的一般规律 ,从而说明作为光学仪器分辨本领的Rayleigh判据的适用条
3.
The resolving power of microscope and electronic microscope is discussed in brief.
本文简述了显微镜的分辨本领 。
6)  intrinsic time resolution
本征时间分辨
1.
Its main physics goal is to realize the 2σ π/k separation at momentum up to 1GeV/c, and to obtain TOF intrinsic time resolution of 80ps.
文章讨论了最小电离粒子击中闪烁体不同位置,以及闪烁体形状,闪烁体表面覆盖材料对本征时间分辨的影响,给出了详细的模拟结果,并与宇宙线测试结果进行了比较。
2.
It is found that proton has the best intrinsic time resolution.
基于GEANT4,完成了BESⅢ探测器单块飞行时间计数器的模拟,并对各类不同的带电粒子(e,μ,π,k,p),进行了仔细的时间刻度研究,发现质子的本征时间分辨最好。
3.
Its main physics goal is to reach the intrinsic time resolution of 80ps and to realize the 2σ π/k separation at momentum up to 1GeV/c.
研究了塑料闪烁体的包装材料、光电倍增管(PMT)的工作电压、电子束入射位置对单个TOF模块的本征时间分辨的影响,并给出了测量时间与信号幅度和粒子击中位置的修正方法。
补充资料:时间分辨
分子式:
CAS号:

性质:测量两个时间信号差值的本领。随着现代电子学的发展,现已可能达到的时间分辨为10-15量级。

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