最终确定最佳样品制备的方法。
Finally, the best method was determined in sample preparation.
第二章介绍了样品制备装置和测试仪器。
In the second chapter, experimental set-up and measurement instrument were introduced.
溶出试验已被描述为复杂的样品制备过程。
Thedissolution step has been described as an involved sample preparation.
研究了样品制备方法及常见共存元素干扰。
The method of sample preparation and the interferences of common coexisting elements have been studied.
然而,样品制备过程中可能带入人为的物质。
However, it may arise from an artifact during sample preparation.
并研究了样品制备方法及其共存元素的干扰。
The method of sample preparation and the interference elements was also studied.
我们有能力从样品制备微波灰湿地消化消化。
We have the capabilities of preparing samples from ashing to wet digestion to microwave digestions.
微波消解技术是一种快速而有效的样品制备方法。
Microwave digestion technique is a quick and effective sample preparing method in recent twenty years, and is continously developed and perfected.
其次,自动化的氨基酸样品制备仪器已经得到优化。
Secondly, a robotic sample preparation instrument has been optimized for the amino acid derivatization.
阐述了它与其它传统样品制备方法相比较的诸多优点。
Compared to other conventional sample extraction techniques, its advantages were explained.
该托盘可用于液体处理站或细胞收割机等样品制备仪器。
The trays can be used in sample preparation instruments such as liquid handling stations or cell harvesters.
研究了碳纤维和碳-碳复合材料透射电镜样品制备技术。
A technique of preparing TEM Samples of Carbon fibres and C-C Composites has been investigated.
介绍了一种全新的电子显微镜下超薄切片样品制备方法。
A new method of the preparing ultra thin section specimen using mini vibrator is described in this paper.
从而大幅度地降低了样品制备时间并且提高了消解品质。
This drastically shortens the time required for sample preparation while improving the decomposition quality.
目的:探讨非生物标本的电镜样品制备及超薄切片技术。
Objective: to investigate the technology in preparation and ultramicrotomy of non-biological specimens for electron microscopy.
微波技术的引进,使样品制备的技术进入了新的生命性的阶段。
The introduction of microwave technique makes the sample preparation to step into a new stage.
综述了超临界萃取作为样品制备技术在痕量药检分析中的应用。
Supercritical fluid extraction as a sample preparation tool for harmful chemical residue analysis in analytical toxicology are reviewed.
考察了不同的样品制备方法和检测方式对植物中多糖分析的影响。
The influence of sample preparation method and detection mode on the analysis of polysaccharide was investigated.
着重叙述和讨论了样品制备的主要环节和倾斜照明法的成象条件。
The main steps of specimen preparation and the imaging conditions of beam tilt method were given.
根据消毒剂和消毒产物的性质,研究了不同消毒液样品制备方法。
According to the property of detoxication agents and the detoxicated products, sample preparation methods were studied.
介绍样品制备、均匀性及稳定性检验、核素定值方法和定值结果。
The sample preparation, homogeneity test, stability inspection and the methods and results for radionuclide certification are described.
介绍了一种新型样品制备法——固相做萃取(SPME)的原理及其应用。
The principle and application of a new sample preparation method-solid-phase micro-extraction (SPME) are introduced in this paper.
另外,样品制备时,随着相对湿度的增加,测得的碳纤维拉伸强度逐渐降低。
In addition, CF tensile strength decreased with relative humidity during preparation of specimens.
方法应该迅速(在数分钟或数小时内可以得到结果),样品制备需要量最低,和较低成本。
Methods should be fast (giving results in minutes or hours), require minimal sample preparation before analysis, and be low in cost.
在用SIMS分析各种性质的环境样品和擦拭样品时,样品制备是关键性的技术。
Sample preparation is a key technical issue for analyzing swipe samples and environmental samples with various characteristics by SIMS.
【目的】探索体外培养星形胶质细胞双向电泳样品制备方法,提高电泳分辨率和重复性。
To explore the methods of sample preparation of two-dimensional electrophoresis of astrocyte cultured in vitro, for improving its resolution and reproducibility.
方法制首乌样品制备分别采用传统笼屉蒸法和流通蒸汽锅蒸法,并设定不同的蒸制时间。
Methods Drugs were processed by traditional bamboo utensil for steaming or circulation steamer for different hours.
目的:建立食品接触材料用胶粘剂样品制备方法和可溶性重金属钡、镉、铬、铅检测方法。
Objective:Graphite furnace atomic absorption spectrometry was established to determine soluble Ba, Cd, Cr and Pb in adhesive for food contact materials.
对X射线衍射在测定淀粉结构中应用的原理、仪器、样品制备以及测定结果进行了简单的介绍。
The principle, instrument , sample preparation and results of X-ray diffraction at the starch structure are presented.
作为全球样品制备和分析技术的领先者,凯杰一直走在将先进的便携技术应用于基因检测的前列。
As the global leader in sample and assay technologies, QIAGEN is on the forefront of applying advanced portable devices for gene-based testing.
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