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5 cm » 5 mm (Expand Search), 5 c (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
cm decrease » _ decrease (Expand Search), nn decrease (Expand Search), c decreased (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 cm » 5 mm (Expand Search), 5 c (Expand Search)
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1801
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1802
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1803
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1804
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1805
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1806
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1807
Charge Distribution in Cationic Molybdenum Imido Alkylidene <i>N</i>‑Heterocyclic Carbene Complexes: A Combined X‑ray, XAS, XES, DFT, Mössbauer, and Catalysis Approach
Published 2020“…However, charge delocalization is more pronounced in <b>1</b> and <b>2</b> compared to <b>5</b>. This is supported by quantum chemical (QC) calculations, which reveal that all NHCs compensate to a very similar extent for the cationic charge at molybdenum, leading to charge model 5 (CM5) partial charges at Mo between +1.292 and +1.298. …”
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1808
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1809
DataSheet_1_Inherited Tolerance in Cattle to the Apicomplexan Protozoan Theileria parva is Associated with Decreased Proliferation of Parasite-Infected Lymphocytes.docx
Published 2021“…We reveal here that first- and second-generation descendants of a single Bos indicus bull survived severe challenge with T. parva, (overall survival rate 57.3% compared to 8.7% for unrelated animals) in a series of five field studies. …”
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1810
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1811
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1812
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1813
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1814
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1815
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1816
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1817
Anomalous Non-Prussian Blue Structures and Magnetic Ordering of K<sub>2</sub>Mn<sup>II</sup>[Mn<sup>II</sup>(CN)<sub>6</sub>] and Rb<sub>2</sub>Mn<sup>II</sup>[Mn<sup>II</sup>(CN)<...
Published 2010“…The magnetic ordering temperature, <i>T</i><sub>c</sub>, increases as K<sup>+</sup> (41 K) > Rb<sup>+</sup> (34.6 K) > Cs<sup>+</sup> (21 K) for A<sub>2</sub>Mn[Mn(CN)<sub>6</sub>] in accord with the increasing deviation for linearity of the Mn−N−C linkages [148.8 (K<sup>+</sup>) > 153.3 (Rb<sup>+</sup>) > 180° (Cs<sup>+</sup>)], decreasing Mn(II)···Mn(II) separations [5.09 (K<sup>+</sup>) < 5.19 (Rb<sup>+</sup>) < 5.30 Å (Cs<sup>+</sup>)], and decreasing size of the cation (increasing electrostatic interactions). …”
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1818
Comparison of the three attention steps.
Published 2024“…Through comparative evaluations with heatmap and regression-based models such as HRNet, HigherHRNet, DEKR, DEKRv2, and YOLOv5-pose, our method improves AP<sub>0.5</sub> by at least 0.4%, reduces the number of parameters by at least 0.4%, and decreases the amount of computation by at least 1.0 GFLOPs, achieving a harmonious balance between accuracy and efficiency. …”
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1819
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1820