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1)  Evaporation of cathode
阴极蒸发
2)  cathode material evaporation rate
阴极物质蒸发率
3)  cathodoluminescence
阴极发光
1.
The Application of Cathodoluminescence Technology in Studying Oil and Gas Reservoirs;
阴极发光技术在储层研究中的应用
2.
Characteristics and diagenetic environments of source rocks by cathodoluminescence;
应用阴极发光技术研究母岩性质及成岩环境
3.
The cathodoluminescence and trace elements in carbonate minerals;
碳酸盐矿物的阴极发光性与微量元素的关系
4)  cathode luminescence
阴极发光
1.
The common colour of jadeite jade which consists of jadeite, is green to yellow green with dark to middle bright under cathode luminescence.
在阴极发光下翡翠的主要矿物成分硬玉通常发暗—中亮绿—黄绿色光 ;当硬玉成分较纯时发亮紫红色光 ;当硬玉中不含铁而含钙和锰时往往发中—亮紫蓝色光和白色光。
2.
In this paper,the basic features of quartz and the theoretic basis for quartz to be taken as a tracer for material source are summarized,and the material source tracing methods to use scanning electron microscope,mass spectrometer,electron spin resonance(ESR) and cathode luminescence and the feasibility of these methods are introduced in detail.
综述了石英的性质和它作为有效指示剂来示踪物源的理论基础,进而详细介绍了使用扫描电镜、质谱、电子自旋共振和阴极发光等仪器对石英矿物的表面微结构、氧同位素比值、形成年龄和阴极发光颜色等特征进行研究来追踪物源的方法以及这些方法的可行性。
3.
Characteristics of cultured pearls and treated pearls are studied by cathode luminescence microscope.
通过阴极发光仪对养殖珍珠和处理养殖珍珠的阴极发光特征进行了研究,结果表明:在阴极射线激发下,淡水养殖和处理珍珠发黄绿或绿色光,而各色海水养殖和处理珍珠不发光;阴极显微观察可见部分处理珍珠层的表面微破损。
5)  cathodeluminescence ['kæθədlu:mi'nesns]
阴极发光
1.
Origin of Bedded Chert from Dingjiashan Formation in Jiangshan Region,Zhejiang Province:evidence from cathodeluminescence;
浙江江山丁家山组层状硅质岩阴极发光特征及成因探讨
2.
Controlling factors of cathodeluminescence of carbonate minerals
碳酸盐矿物阴极发光性的控制因素分析
3.
The diagenetic analysis of carbonate cements are based on the cathodeluminescence characteristics,carbon and oxygen isotope analysis.
根据碳酸盐矿物阴极发光的特征,结合其碳、氧同位素特征研究了该区碳酸盐矿物的形成环境和成岩特征,方解石是在相对较晚的成岩阶段沉淀的,而铁白云石的胶结作用是在较早的成岩阶段,菱铁矿也是早成岩阶段的产物。
6)  cathode emission
阴极发射
补充资料:多元素空心阴极灯
分子式:
CAS号:

性质:在同一支灯中用几种金属制成阴极,同时发射几种元素特征谱线的锐线光源。可用合金、金属间化合物或将多种金属粉末按一定比例混合,并压制和烧结,作成阴极。最多可达7种元素,如Al,Ca,Cu,Fe,Mg,Si,Zn灯。避免每测一种元素换一个灯,但发射强度低于单元素灯。如果几种金属组合不当,将产生光谱干扰。

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