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161.
均方根值——平均值检波器——一种脉冲干扰抑制效果更佳的新型CISPR加权检波器 总被引:1,自引:0,他引:1
Jens Medler 《安全与电磁兼容》2008,(2):89-91
阐述了加权的目的,给出了新型均方根值(RMS)——平均值(AV)检波器的加权特性评估和加权函数的定义。同时对使用准峰值和平均值检波方式所得到的测量结果与使用均方根值—平均值检波方式所得到的测量结果进行了比较。根据比较结果,提出了均方根值——平均值检波方式所对应的发射类测试限值的建议。 相似文献
162.
A laboratory system for the on-line monitoring of important lactic acid fermentation variables is described. The system contains flow-injection analysers for glucose, lactose, galactose, lactate and protein and a continuous-flow analyser for the biomass concentration. The sugar and lactate analysers are based on enzymatic reactions involving oxidases followed by chemiluminescence detection of the hydrogen peroxide formed. The protein analyser is based on the biuret reaction. The system has been used to monitor many fermentation experiments, and some results are presented as examples. 相似文献
163.
Wang T Sha R Birktoft J Zheng J Mao C Seeman NC 《Journal of the American Chemical Society》2010,132(44):15471-15473
We describe the self-assembly of a DNA crystal that contains two tensegrity triangle molecules per asymmetric unit. We have used X-ray crystallography to determine its crystal structure. In addition, we have demonstrated control over the colors of the crystals by attaching either Cy3 dye (pink) or Cy5 dye (blue-green) to the components of the crystal, yielding crystals of corresponding colors. Attaching the pair of dyes to the pair of molecules yields a purple crystal. 相似文献
164.
Dr. Andreas A. Bastian Dr. Maria Bastian Dr. Manuel Jäger Mark Loznik Dr. Eliza M. Warszawik Xintong Yang Dr. Nabil Tahiri Dr. Peter Fodran Prof. Dr. Martin D. Witte Anne Thoma Dr. Jens Köhler Prof. Dr. Adriaan J. Minnaard Prof. Dr. Andreas Herrmann 《Chemistry (Weinheim an der Bergstrasse, Germany)》2022,28(36):e202200883
The continuous emergence of antimicrobial resistance is causing a threat to patients infected by multidrug-resistant pathogens. In particular, the clinical use of aminoglycoside antibiotics, broad-spectrum antibacterials of last resort, is limited due to rising bacterial resistance. One of the major resistance mechanisms in Gram-positive and Gram-negative bacteria is phosphorylation of these amino sugars at the 3’-position by O-phosphotransferases [APH(3’)s]. Structural alteration of these antibiotics at the 3’-position would be an obvious strategy to tackle this resistance mechanism. However, the access to such derivatives requires cumbersome multi-step synthesis, which is not appealing for pharma industry in this low-return-on-investment market. To overcome this obstacle and combat bacterial resistance mediated by APH(3’)s, we introduce a novel regioselective modification of aminoglycosides in the 3’-position via palladium-catalyzed oxidation. To underline the effectiveness of our method for structural modification of aminoglycosides, we have developed two novel antibiotic candidates overcoming APH(3’)s-mediated resistance employing only four synthetic steps. 相似文献
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Jens Hellmers Thomas Wriedt 《Journal of Quantitative Spectroscopy & Radiative Transfer》2009,110(14-16):1511-1517
Light scattering is important in a number of scientific fields and thus the efficient collation and exchange of this information becomes essential. The Internet allows information to be easily shared but the required content may be distributed over a number of web pages and thus may be difficult to locate using standard search engines.In this paper the current state of the development of a new light scattering Internet information portal is described. The upcoming technical realization for the web pages as well as the benefits for the users is outlined. One of the key features of the portal will be the comprehensive list of light scattering programs. For this also approaches to categorize light scattering software are investigated. This can help to develop search tools enabling scientists to find the best fitting program to their scattering problem. 相似文献
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Stephan Christgau Jette Odderhede Kenny Stahl Jens E. T. Andersen 《Acta Crystallographica. Section C, Structural Chemistry》2005,61(6):m259-m262
[Sr(C5H7NO4)]·6H2O, (I), and [Sr(C5H8NO4)2]·5H2O, (II), both crystallize with similar strontium–glutamate–water layers. In (I), the neutral layers are connected through hydrogen bonds by water molecules, while in (II), the positively charged layers are connected through hydrogen bonds and electrostatic interactions by interleaving layers of hydrogen glutamate anions and water molecules. 相似文献