Showing 12,481 - 12,500 results of 104,217 for search '(( 2 step decrease ) OR ( 5 ((we decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 2.01s Refine Results
  1. 12481

    Intestinal parasitic infections and associated factors in children of three rural schools in Colombia. A cross-sectional study by Paula C. Hernández (6940505)

    Published 2019
    “…This cross-sectional study was conducted to determine the frequency of intestinal parasite infections among rural schoolchildren in the municipality of Apulo, Colombia. A total of 97 stool samples from children aged between 5 and 15 years were collected and examined via direct light microscopy. …”
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    Two Polymorphic Polyoxometalate-Based Metal–Organic Frameworks for the Efficient Synthesis of Functionalized Sulfoxides and Detoxification of Mustard Gas Simulants by Yanhong Chen (304926)

    Published 2021
    “…Simultaneously, both <b>1-α</b> and <b>1-β</b> showed an extraordinary degradation efficiency of 2-chloroethyl ethyl sulfide and have a half lifetime (<i>t</i><sub>1/2</sub>) approximately 2.5 or 3 min, respectively, with 100% selectivity toward the nontoxic product 2-chloroethyl ethyl sulfoxide and an abnormally high oxidant utilization efficiency (94.5% for <b>1-α</b> and 94.3% for <b>1-β</b>) at room temperature. …”
  4. 12484

    Shell-Protective Secondary Silicon Nanostructures as Pressure-Resistant High-Volumetric-Capacity Anodes for Lithium-Ion Batteries by Jiangyan Wang (459195)

    Published 2018
    “…However, challenges with weak mechanical stability during the calendering process of electrode fabrication and poor volumetric energy density remain to be solved. Here we fabricated a pressure-resistant silicon structure by designing a dense silicon shell coating on secondary micrometer particles, each consisting of many silicon nanoparticles. …”
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    Shell-Protective Secondary Silicon Nanostructures as Pressure-Resistant High-Volumetric-Capacity Anodes for Lithium-Ion Batteries by Jiangyan Wang (459195)

    Published 2018
    “…However, challenges with weak mechanical stability during the calendering process of electrode fabrication and poor volumetric energy density remain to be solved. Here we fabricated a pressure-resistant silicon structure by designing a dense silicon shell coating on secondary micrometer particles, each consisting of many silicon nanoparticles. …”
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    Spike number as a function of <i>C</i><sub>5</sub>. by Elif Köksal Ersöz (8720205)

    Published 2020
    “…<p>(a) Solution of (<a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1008430#pcbi.1008430.e018" target="_blank">4</a>) with 3 spikes for <i>C</i><sub>5</sub> = 500 projected on the bifurcation diagram of the fast system (<a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1008430#pcbi.1008430.e020" target="_blank">5</a>) as a function of <i>v</i><sub>2</sub>. …”
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    Table_5_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.XLSX by Hye-Jee Park (3594245)

    Published 2021
    “…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”
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    Image_5_A Novel Chloroplast Protein RNA Processing 8 Is Required for the Expression of Chloroplast Genes and Chloroplast Development in Arabidopsis thaliana.TIF by Mengmeng Kong (11815760)

    Published 2021
    “…The abundance of the chloroplast rRNA, including 23S, 16S, 4.5S, and 5S rRNA, were reduced in the rp8 mutant, respectively, and the amounts of chloroplast ribosome proteins, such as, PRPS1(uS1c), PRPS5(uS5c), PRPL2 (uL2c), and PRPL4 (uL4c), were substantially decreased in the rp8 mutant, which indicated that knockout of RP8 seriously affected chloroplast translational machinery. …”
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    UV-Vis data. by Shuai Li (65944)

    Published 2022
    Subjects:
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