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ms decrease » _ decrease (Expand Search), nn decrease (Expand Search), use decreased (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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18121
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18122
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18123
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18124
<em>In Vitro</em> and <em>Ex Vivo</em> Analysis of <em>CHRNA3</em> and <em>CHRNA5</em> Haplotype Expression
Published 2011“…We investigated whether <em>CHRNA5</em> or <em>CHRNA3</em> promoter haplotypes, associated previously with NA, might influence allelic expression levels. …”
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18125
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18126
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18127
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18128
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18129
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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18130
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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18131
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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18132
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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18133
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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18134
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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18135
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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18136
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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18137
<i>NAB3</i> reduces the level of <i>IMD2</i> CUT terminator readthrough product from a reporter and native <i>IMD2</i> CUT and readthrough RNA, but <i>NAB3</i> does not significant...
Published 2015“…Anti-Pol II ChIP was performed on <i>air1-C178R air2</i>Δ cells containing vector, <i>AIR1</i> or <i>NAB3</i> and relative Pol II occupancy was measured across <i>IMD2</i> gene by qPCR with <i>IMD2</i> Primer Pair 1–5 as described in Material and Methods. Mean RNA Pol II occupancy values from three independent experiments normalized to Primer Pair 1 within <i>IMD2</i> CUT are shown with error bars that represent standard error of the mean. …”
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18138
The energy shift from Bragg's law predicted by Mosplate, including peak and profile shifts as used in the computation, with an estimated uncertainty of 1.5 ppm
Published 2013“…The peak energy of the titanium Kβ spectral profile is found to be 4931.966 ± 0.022 eV prior to instrumental broadening. This 4.5 ppm result decreases the uncertainty over the past literature by a factor of 2.6 and is 2.4 standard deviations from the previous standard. …”
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18139
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18140