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- potentiometric microanalysis 电势差法微量分析
- Biochip technology was a kind of novel microanalysis technology. 摘要生物芯片检测技术是一种全新的微量分析技术。
- Biochip technique is a fire-new microanalysis method. 生物芯片技术是一种全新的微量分析技术。
- Methods Potentiometric titration method was used in this assay. 方法采用电位滴定法。
- Design of a software system under windows for electron probe microanalysis. Windows下电子探针软件系统的设计
- Urine-Determination of cadmium-Differential potentiometric stripping method. 尿中镉的微分电位溶出测定方法.
- The voltammetric and the potentiometric techniques are two main test methods. 电位法和伏安法是两类主要的传感方法;
- Blood-Determination of lead-Differential potentiometric stripping method. 血中铅的微分电位溶出测定方法.
- Many of the determinations used fall into the realm of microanalysis because of the small amounts of contaminants present in the samples. 因为存在于样品中的沾染物含量很少,所以许多测定方法属于微量分析范畴。
- Study on X-ray energy spectrum microanalysis chemical element of root tuber tissue in Potentilla anserina L. X-射线能谱微区分析法对鹅绒委陵菜块根组织的化学元素分析研究
- Quantitative analysis of powdered glass samples by electron probe microanalysis. 用电子探针定量测定玻璃粉末样品。
- This indicates a hydrodynamic condition with a very marked potentiometric gradient. 这说明水动力条件具有很明显的位能梯度。
- The marked immunoassay technique gives the changes from macroanalysis to microanalysis. 标记免疫分析技术的出现使临床生化分析由常量分析向微量分析转变。
- Electron probe microanalysis (EPMA) shows that silicon is only substituted for phosphorus. 电子探针分析结果表明;硅只取代磷进入SAPO-5分子筛骨架.
- Localization of activity of immobilized penicillin G acylase was studied by X ray microanalysis. 利用X射线微区分析,对固定化青霉素G酰化酶的活性进行了定位分析。
- The localization of the activity of immobilized urease on chitosan membrane was studied by X-ray microanalysis. 利用X射线微区分析方法,对壳聚糖固定化脲酶活性进行了定位分析。
- In recent years, capillary electrochromatography(CEC) has becoming a new microseparation and microanalysis tool. 毛细管电色谱是近年来发展起来的微分离技术。
- Introduction to the theory of x-ray microanalysis through the electron microprobe including ZAF matrix corrections. 利用包含ZAF基体修正的电子探针,介绍X射线显微分析的理论。
- Research Interests: Our research mainly involves microanalysis and chemical kinetics. 研究兴趣本实验室之研究范围主要是微量分析和化学动力学。
- It is very important for microanalysis to select the suitable methods of sample preparation. 因此,在制备样品时要选择恰当制样方法。