Showing 1,001 - 1,020 results of 97,398 for search '(( 2 c decrease ) OR ( 5 ((step decrease) OR (((we decrease) OR (nn decrease)))) ))', query time: 1.65s Refine Results
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    Inorganic Nutrients Increase Humification Efficiency and C-Sequestration in an Annually Cropped Soil by Clive A. Kirkby (2657614)

    Published 2016
    “…An improvement in the humification efficiency of the soil microbiome as a whole, and thereby C-sequestration, was predicted. In a field study over 5 years, soil organic-C (SOC) stocks to 1.6 m soil depth were increased by 5.5 t C ha<sup>-1</sup> where supplementary nutrients were applied with incorporated crop residues, but were reduced by 3.2 t C ha<sup>-1</sup> without nutrient addition, with 2.9 t C ha<sup>-1</sup> being lost from the 0–10 cm layer. …”
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    Astrocytic AQP4 is decreased in aged cortical astrocytes. by Ileana Soto (531878)

    Published 2015
    “…Scale Bars: 50 μm (A and C) and 2 μm (D). DP = degenerated pericyte, EC = endothelial cell and BV = blood vessel. …”
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    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…Four donor−acceptor [2]catenanes with cyclobis(paraquat-<i>p</i>-phenylene) (CBPQT<sup>4+</sup>) as the π-electron-accepting cyclophane and 1,5-dioxynaphthalene (DNP)-containing macrocyclic polyethers as π-electron donor rings have been synthesized under mild conditions, employing Cu<sup>+</sup>-catalyzed Huisgen 1,3-dipolar cycloaddition and Cu<sup>2+</sup>-mediated Eglinton coupling in the final steps of their syntheses. …”
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    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…Four donor−acceptor [2]catenanes with cyclobis(paraquat-<i>p</i>-phenylene) (CBPQT<sup>4+</sup>) as the π-electron-accepting cyclophane and 1,5-dioxynaphthalene (DNP)-containing macrocyclic polyethers as π-electron donor rings have been synthesized under mild conditions, employing Cu<sup>+</sup>-catalyzed Huisgen 1,3-dipolar cycloaddition and Cu<sup>2+</sup>-mediated Eglinton coupling in the final steps of their syntheses. …”