photocathode [,fəutəu'kæθəud]
- photocathode的基本解释
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n.
光电阴极
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The principle, application value ,characteristic,and developing trend of TiO2 as photocathode protection material was introduced.
介绍了TiO2作为光阴极保护材料的原理、应用价值、特点以及今后发展的趋势。
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The performance of Au photocathode has been characterized for use with grazing incidence soft x-rays.
在超快诊断中,诊断设备分幅像管的阴极效率一直是一项工艺上需要提高的参数。
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With good light collection, about 30% of the luminescence quanta may reach the photocathode
在良好的光收集条件下,约30%的荧光量子可以到达光阴极。
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At last, preliminary research on the stability of NEA photocathode has been made.
第五章重点研究NEA光电阴极的激活工艺。
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The development of activation and evaluation system is necessary for NEA photocathode research.
激活评估系统的研制成功为进行NEA光电阴极评估工作做好了充足准备工作。
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nea photocathode:负电子亲合力光电阴极WHV中国学习动力网
ndt 非破坏性试验WHV中国学习动力网 | nea photocathode 负电子亲合力光电阴极WHV中国学习动力网 | near contact printer 接近式曝光机WHV中国学习动力网
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semitransparent photocathode:半透明光电阴极
"semitransmitting mirror","半透射镜" | "semitransparent photocathode","半透明光电阴极" | "semitransparent mirror","半透明镜"
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semitransparent photocathode:半透明光阴极
光[电]阴极 photocathode | 半透明光阴极 semitransparent photocathode | 不透明光阴极 opaque photocathode
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nea photocathode:负电子亲合力光电阴极
ndt ==> 非破坏性试验 | nea photocathode ==> 负电子亲合力光电阴极 | near by frequency ==> 邻近频率
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photocathode:光阴极
为了降低固定式铅栅的干扰,必须将注意点放再适当的选择铅栅,选择铅栅的重要因素有:利用萤光屏将X光转换为可见光,再由光阴极(photocathode)转换成低能量光电子.
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