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6 we » 16 we (Expand Search), _ we (Expand Search), 6 e (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
we decrease » _ decrease (Expand Search), mean decrease (Expand Search), teer decrease (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
6 we » 16 we (Expand Search), _ we (Expand Search), 6 e (Expand Search)
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1001
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1002
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1003
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1004
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1005
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1006
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1007
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1008
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1009
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1010
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1011
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1012
Fine-Tuning the Pore Environment of the Microporous Cu-MOF for High Propylene Storage and Efficient Separation of Light Hydrocarbons
Published 2019“…Moreover, <b>iso-MOF-4</b> shows excellent repeatability, and only 3.5% of C<sub>3</sub>H<sub>6</sub> storage capacities decrease after nine cycles. …”
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1013
Top 5 templates of CNN1 isoform 2 by PHYRE2 tool.
Published 2023“…Further, molecular docking experimentation of CNN1 showed the significant interactions at S102, L105, A106, K123, Y124 with five selected PTB-drugs, Allylestrenol (-7.56 kcal/mol), Hydroxyprogesterone caproate (-8.19 kcal/mol), Retosiban (-9.43 kcal/mol), Ritodrine (-7.39 kcal/mol) and Terbutaline (-6.87 kcal/mol). …”
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1014
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1015
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1016
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1017
Decreased activity of FASII favors the cold growth of the <i>ΔcshA</i> strain.
Published 2020“…<i>fapR</i> mRNA levels were quantified by RT-qPCR using 16S rRNA as reference gene on total RNAs extracted from <i>wt</i> strain (PR01), <i>ΔcshA</i> strain (PR01-ΔcshA), and suppressor strains <i>ΔcshA/accC</i><sup><i>M385V</i></sup> (C51), <i>ΔcshA/accC</i><sup><i>T183I</i></sup> (sup30), <i>ΔcshA/accD</i><sup><i>F253V</i></sup> (sup17), <i>ΔcshA/accD</i><sup><i>A164V</i></sup> (sup16), <i>ΔcshA/birA</i><sup><i>D320F-FsX28</i></sup> (C58), <i>ΔcshA/birA</i><sup><i>R280stop</i></sup> (sup1) and <i>ΔcshA/bioY</i><sup><i>P123R-FsX1</i></sup> (C66), all at exponential growth phase in MH medium at 25°C. n = 5 for <i>ΔcshA</i>, <i>4 for wt</i> and 3 for all others. …”
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1018
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1019
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1020