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1)  Exciting Light Intensity
激发光强度
1.
The Study on the Relationship between Lamp Current of As Hollow Cathode Lamp and Exciting Light Intensity and Delay Time in Atomic Fluorescence Spectrometry;
应用于原子荧光光谱分析的空心阴极灯-As灯电流与激发光强度及延时关系的研究
2)  exciting laser intensity
激发光强
1.
After analyzed,the exciting laser intensity,the coverage rate and the numerical aperture of objectives are selected for experimental research.
经分析选取了激发光强、覆盖率和物镜的数值孔径作为实验研究对象。
3)  excitation intensity
激发强度
4)  laser intensity
激光强度
1.
The relation between the laser cavity s pressure of the Visx20/20B Excimer laser system and the laser intensity;
VISX20/20B准分子激光治疗仪激光腔压力与激光强度的关系
2.
The effect of the irradiation time,laser intensity and spot diameter on the mass ablative rate of carbon fiber reinforced silicone modified epoxy resin composite was analyzed respectively.
研究结果表明:激光辐照时间对该复合材料的质量烧蚀率的影响不大,而该复合材料的质量烧蚀率随入射激光强度和光斑直径的增大而增大。
3.
To analyze and to deduce the effect of laser intensity on ignition of energetic materials,according to the thermal mechanism of laser ignition,the relation between laser diode ignition time t i and laser power density I 0 is obtained by applying thermal transmission theory,simplified model as well as approximate method.
从激光点火的热作用机理出发,运用传热理论,采用简化模型和近似方法,分析推导激光强度对含能材料点火的影响,得出激光二极管点火时间 ti 与激光功率密度 I0 的关系,进而得到激光二级管点火能量 Ei 与 I0 的关系,并和实验结果作了比较。
5)  luminescent intensity
发光强度
1.
The effect of molten salt on particle size and luminescent intensity is also studied.
实验结果分析发现复合熔盐有利于Y2O3∶Eu3+发光强度的提高,在1300℃焙烧时其主峰强度比不加熔盐量时的高36%,且高出商用Y2O3∶Eu3+红粉的11%。
2.
Some questions about Ca_4Y_6(SiO_4)_6O∶Eu nanocrystal were studied, which include: luminescent properties, the relationship between luminescent intensity and temperature.
研究了纳米晶Ca4Y6(SiO4)6O∶Eu的发光特性,发光强度与灼烧温度的关系,灼烧温度及材料制备方法对Eu3+在Ca4Y6(SiO4)6O中的猝灭浓度的影响,并发现纳米晶的激发光谱中,Eu3+—O2-电荷迁移带蓝移的特性。
3.
The routes for enhancing luminescent intensity of Si quantum dots was discussed.
探讨了提高Si量子点发光强度的可能途径。
6)  luminous intensity
发光强度
1.
This paper describe the relations of photogenic bacteria's luminous intensity to bacteria's photogenic time and photogenic bacteria's luminous intensity to pH experiments.
本文通过发光菌发光强度与发光时间、发光菌发光强度与pH值的两个影响关系实验 ,确定了发光菌稳定发光时间和pH值范围。
2.
The luminous intensity,luminous flux and color coordinate of high-power white LED have relations with different place.
分析了大功率白色发光二极管的发光强度(即光强)、光通量和色坐标与测量位置的关系,提出了解决的方法。
3.
The uncertainty evaluation and data processing methods for the CCPR key comparisons of luminous intensity and luminous flux unit are introduced.
介绍了光度与辐射度咨询委员会发光强度和总光通量国际比对中的不确定度评定和数据处理的方法。
补充资料:表光合强度(见光合强度)


表光合强度(见光合强度)
forecast of sowing or transplanting time

b iaoguanghe qiangdu表光合强度见光合强度
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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