Showing 1 - 20 results of 41,891 for search '(( significant diets based ) OR ( significant ((new decrease) OR (we decrease)) ))', query time: 1.79s Refine Results
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    Characteristic of decreased bacterial diversity in psoriasis by Tong Su (425712)

    Published 2022
    “…After treated with ATB, we found substantial increase of Lactobacillales but significant decrease of Clostridiales and Coriobacteriales. …”
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    Table_1_CRISPR/Cas9-mediated targeted mutation of the E1 decreases photoperiod sensitivity, alters stem growth habits, and decreases branch number in soybean.docx by Zhao Wan (12698318)

    Published 2022
    “…The expression of shoot identity gene Dt1 was significantly decreased, while Dt2 was significantly upregulated. …”
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    Table_2_CRISPR/Cas9-mediated targeted mutation of the E1 decreases photoperiod sensitivity, alters stem growth habits, and decreases branch number in soybean.xlsx by Zhao Wan (12698318)

    Published 2022
    “…The expression of shoot identity gene Dt1 was significantly decreased, while Dt2 was significantly upregulated. …”
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    Si-Doped Fe Catalyst for Ammonia Synthesis at Dramatically Decreased Pressures and Temperatures by Qi An (331241)

    Published 2020
    “…To accelerate the development of improved HB catalysts, we developed a hierarchical high-throughput catalyst screening (HHTCS) approach based on the recently developed complete reaction mechanism to identify non-transition-metal (NTM) elements from a total set of 18 candidates that can significantly improve the efficiency of the most active Fe surface, Fe-bcc(111), through surface and subsurface doping. …”
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    Si-Doped Fe Catalyst for Ammonia Synthesis at Dramatically Decreased Pressures and Temperatures by Qi An (331241)

    Published 2020
    “…To accelerate the development of improved HB catalysts, we developed a hierarchical high-throughput catalyst screening (HHTCS) approach based on the recently developed complete reaction mechanism to identify non-transition-metal (NTM) elements from a total set of 18 candidates that can significantly improve the efficiency of the most active Fe surface, Fe-bcc(111), through surface and subsurface doping. …”
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