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1.
Water quality--Determination of fluoride--Fluor reagent spectrophotometric
GB/T7483-1987水质氟化物的测定氟试剂分光光度法
2.
Determination of the Fluoride in the Fluorine-Containing Waterproof Agent with DW-spectrophotometric Coefficient
双波长系数倍率分光光度法测定氟系防水剂中的氟离子
3.
Chrome azurol S-fleroxacin spectrophotometry for determining the contents of fleroxacin in powder for injection
铬天青S-氟罗沙星分光光度法测定粉针剂中氟罗沙星的含量
4.
Determination of fluoride in the wet precipitation-Fluor reagent spectrophotometry
GB/T13580.10-1992大气降水中氟化物的测定新氟试剂光度法
5.
Fluorescence spectrophotometry determination of norfloxacin in both capsule and human urine
荧光分光光度法测定制剂和人尿样中的诺氟沙星含量
6.
Water quality-Determination of silver-Spectrophotometry with cadion 2B
GB/T11908-1989水质银的测定镉试剂2B分光光度法
7.
Determination of copper content in cadmium--Neoluproinelead-base photometric method
GB/T2130-1980镉中铜量的测定(铜试剂铅盐分光光度法)
8.
Water quality--Determination of vanadium--BPHA extraction spectrophotometric method
GB/T15503-1995水质钒的测定钽试剂(BPHA)萃取分光光度法
9.
Quality Control of the MBTH Spectrophotometry for the Determination of Formaldehyde
甲醛酚试剂分光光度法检测的质量控制
10.
The Water Ammonia-nitrogen Analysis and Improvement Using The Natium Reagent Luminosity Law Determination
水中氨氮纳氏试剂分光光度法测定与改进
11.
Determination of Formaldehyde in Indoor Air by Spectrophotometry with Phenol Reagent
居室空气中甲醛含量的酚试剂分光光度测定法
12.
Spectrophotometric determination of glucose by using sodium 1,2-naphthoquinone-4-sulfonate as a chromogenic reagent
1,2-萘醌-4-磺酸钠试剂分光光度法测定葡萄糖
13.
Spectrophotometric determination with phenol reagent of trace formaldehyde in beer
酚试剂分光光度法测定啤酒中微量甲醛
14.
Determination of Protein by Nessler Reagent Spectrophotometry
食品中蛋白质的纳氏试剂分光光度快速测定法
15.
Determination of Norfloxacian by UV Spectrophotometry;
紫外分光光度法测定诺氟沙星的含量
16.
Spectrophotometric determination of pefloxacin mesylate based on the charge-transfer reaction
荷移分光光度法测定甲磺酸培氟沙星
17.
Chemical reagent--General rules for the molecular absorption spectrophotometry(ultraviolet and visible)
GB/T9721-1988化学试剂分子吸收分光光度法通则(紫外和可见光部分)
18.
A new method of beryllon Ⅲ spectrophotometric analysis was superior to curcumin spectrophotometric analysis that was mostly used to detect boron in soil sample with low stability.
对土壤样品石硼姜黄素分光光度分析,此法稳定性差,远不如铍试剂分光光度法。