1.
Temperature Property of Er~(3+) Doped Y_2O_3 Based on the Fluorescence Intensity Ratio
基于荧光强度比掺铒氧化钇的温度特性
2.
Relationship between laser-induced chlorophyll fluorescence intensity and laser power
激光诱导式叶绿素荧光强度与激光强度关系
3.
Conclusion The rare earth ternary complexes have strong fluorescence intensity.
结论稀土配合物具有很强的荧光强度.
4.
The Research on the Relationship between Laser Strength and Excitated Chlorophyll Fluorescence Strength
激光强度与激发叶绿素荧光强度关系的研究
5.
Intensity Correlations and Coherence Effects in Resonance Fluorescence;
共振荧光强度关联和相干效应的研究
6.
Enhancement of fluorescence of terbium and transferrin-bound diterbium by HEPES
HEPES增强Tb~(3+)和Tb_2Tf的荧光发射峰强度(英文)
7.
At 1 month-, 3 month- and 6 month-time point post operation, fluorescence microscopy was used to determine the fluorescence.
术后1,3,6个月取材,荧光显微镜观察髓核组织内绿色荧光强度;
8.
Study on highly luminescent ZnS∶Cu,Al nano-phosphor powder synthesized by hydrothermal method
水热法合成高发光强度ZnS:Cu,Al纳米荧光粉研究
9.
Relationship between Fluorescence Intensity of Eu Complexes in Polymer and Europium Ion Concentration
铕高分子配合物荧光强度与铕离子浓度的关系
10.
A Highly Sensitive and Selective Colorimetric Fluorescent Zinc Sensor Based on Fluorescein
一种高灵敏度高选择性的荧光素基比色荧光锌传感器(英文)
11.
A Study on the Measurement of the Brightening Effect of Fluorescent Brightener on Paper
纸张染色测定荧光增白剂增白强度的方法研究
12.
general rules for fluorometric analysis
荧光光度分析法通则
13.
Fluorescence two-exponential decay which limits the optical gain of NdP_5O_(14) at high excitation intensity was observed.
观察到高泵浦强度下影响光学增益的荧光双指数衰减曲线。
14.
Up-conversion luminescence of CdTe and CdTe/CdS quantum dots excited by femtosecond laser of low intensity
低强度飞秒激光激发下CdTe和CdTe/CdS核壳量子点的荧光上转换研究
15.
A Study the Autofluorescence Spectrum of Tissues in Different Places of Rats after Mid-intensity Exercise
中等强度运动后大鼠不同部位组织的荧光光谱研究
16.
Study on Intracellular Ca~(2+) Concentration with Ratio Fluorescence Image Master;
比率荧光光谱仪测量细胞内游离钙离子浓度的研究
17.
Application and Comparison of RP-HPLC and Fluorophotometry to Measure Oxalic Acid Content in Beer
反相高效液相法和荧光光度法测定啤酒中草酸含量的应用和比较
18.
In a certain range of concentration, the energy of absorption are positive proportional to the concentration of FBA.
一定浓度范围内荧光物质的吸收与浓度成正比关系;