1)  broth microdilution method
微量液基稀释法
2)  minim
微量
1.
The progress in determining the minim Gallium which includes absorptiometric analysis is introduced, and various analytical approaches are discussed such as spectrophotofluorimeter, atomic absorption spectrophotometry and polarographic method etc.
由于镓是稀散金属 ,且分布分散 ,因此对于微量镓的分析测定就极为重要 。
3)  trace
微量
1.
Study on Simultaneous Determination of Trace Fe~(2+) and Fe~(3+) in Rock Salt by Spectrophotometry;
分光光度法同时测定岩盐中微量Fe~(2+)和Fe~(3+)的研究
2.
Detecting the Content of Trace Methanol,Ethanol,Acetone,Methoxycarbonyl Acetate,Vinyl Acetate from Industrial Cooling Wastewater with Gas Phase Chromatography Method;
用气相色谱法测定工业冷却废水中微量甲醇、乙醇、丙酮、醋酸甲酯、醋酸乙烯的含量
3.
The determination of trace calcium in highly purity RE samples by the atomic absorption spectrophotometry combined with standard addition method;
标准加入原子吸收分光光度法测定高纯稀土产品中的微量钙
4)  microscale
微量
1.
Green Chemistry Should Be Made from the Chemical Experiment——On Preparatory Instrument of Semi-microscale Organic Experiment;
绿色化学应当从化学实验开始——谈半微量有机制备仪的设计思想
2.
Smallscale semimicro microscale organic experiments have been practised step by step.
本文介绍了小量—半微量—微量有机化学实验的教学内容和特点 ,及在教学中初步试用的效
5)  microamount
微量
1.
Determination of glutamate in microamount cerebrospinal fluid after acute brain injury in mice;
小鼠急性脑损伤后微量脑脊液谷氨酸浓度的测定
2.
This paper introuduced to use volumetric analysis to determine the microamount calcium and magnesium in sodium sulfate by diminishing the affect of iron(Ⅲ), and validated the reliability of this method.
提出采用沉淀分离法消除Fe3 + 等离子的干扰 ,用容量法来测定Na2 SO4中微量的钙、镁含量 ,并验证了该方法的可靠
6)  micro
微量
1.
Spectrophotometric determination of micro iron with the ternary complex system of FeⅢ-acetylpropanone-crystal violet;
FeⅢ-乙酰丙酮-结晶紫三元络合物分光光度法测定微量铁
2.
Study on Chromosome Aberrations Test determinated by Micro-whole Blood Culture in Vacuum Blood Collection Tube;
微量全血真空采血管培养法应用于染色体畸变分析的研究
参考词条
补充资料:无柄液滴法、躺滴法、座滴法等
分子式:
CAS号:

性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。