Showing 701 - 717 results of 717 for search '(( 50 ((mean decrease) OR (a decrease)) ) OR ((( a systematic decrease ) OR ( 2 n decrease ))))*', query time: 0.28s Refine Results
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    A computational method to characterize the missense mutations in the catalytic domain of GAA protein causing Pompe disease. by Thirumal Kumar, D

    Published 2019
    “…Further molecular dynamic analysis for the two mutations demonstrated that the G478R mutation was acquired higher deviation, fluctuation, and lower compactness with decreased intramolecular hydrogen bonds compared to the mutant R437C. …”
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    PREPARATION OF WS2/TIO2 NANOSTRUCTURES FOR PHOTOCATALYTIC APPLICATIONS by THIEHMED, ZEINEB

    Published 2022
    “…The energy from fossil fuels has been recognized as a main factor of global warming and environmental pollution. …”
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  15. 715

    Channel Network Control on Seasonal Lake Area Dynamics in Arctic Deltas by Tejedor, Alejandro

    Published 2020
    “…We find that monthly shrinkage rates have a pronounced structured variability around the channel network with the shrinkage rate systematically decreasing farther away from the channels. …”
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    Tailoring the deposition of MoSe2 on TiO2 nanorods arrays via radiofrequency magnetron sputtering for enhanced photoelectrochemical water splitting by Ahmad, Yahia H.

    Published 2023
    “…Compared to pure TiO2 NRs, the heterojunction nanostructured assembly displayed excellent spectral and photoelectrochemical properties, including more surface oxygen vacancies, enhanced visible-light absorption, higher photocurrent response, and decreased charge transfer resistance. In particular, the sample synthesized by sputtering of MoSe2 for 90 s, i.e., MoSe2@TiO2-90 s, depicted the highest current density (1.86 mA cm−2 at 0.5 V vs. …”
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  17. 717

    Abnormal brain structure and behavior in MyD88-deficient mice. by Schroeder, Patricia

    Published 2020
    “…Taken together, MyD88 deficiency results in morphologic and cellular changes in the mouse brain, as well as in altered natural and specific behaviors. Our data indicate a pathophysiological significance of MyD88 for mammalian CNS development, structure, and function.…”
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