Search alternatives:
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)
wt decrease » _ decrease (Expand Search), awd decreased (Expand Search), step decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 wt » _ wt (Expand Search), 5 ht (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)
wt decrease » _ decrease (Expand Search), awd decreased (Expand Search), step decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 wt » _ wt (Expand Search), 5 ht (Expand Search)
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13601
Table 5_Immunological reference intervals in pregnancy: longitudinal analysis of adaptive lymphocyte subsets.xlsx
Published 2025“…</p>Methods<p>A total of 50 pregnant and 30 age-matched non-pregnant women were recruited in a prospective cohort study. …”
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Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…The effect of platinum particle size on the kinetics and mechanism of ethane dehydrogenation (EDH) and hydrogenolysis (EH) is elucidated using first-principles and multiscale modeling. A particle-based microkinetic modeling (PB-MKM) approach is used to couple the MKMs for individual facets, i.e., Pt(111), Pt(100), and Pt(211), into a variable-size Pt nanoparticle catalyst model. …”
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13609
Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…The effect of platinum particle size on the kinetics and mechanism of ethane dehydrogenation (EDH) and hydrogenolysis (EH) is elucidated using first-principles and multiscale modeling. A particle-based microkinetic modeling (PB-MKM) approach is used to couple the MKMs for individual facets, i.e., Pt(111), Pt(100), and Pt(211), into a variable-size Pt nanoparticle catalyst model. …”
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13610
Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…The effect of platinum particle size on the kinetics and mechanism of ethane dehydrogenation (EDH) and hydrogenolysis (EH) is elucidated using first-principles and multiscale modeling. A particle-based microkinetic modeling (PB-MKM) approach is used to couple the MKMs for individual facets, i.e., Pt(111), Pt(100), and Pt(211), into a variable-size Pt nanoparticle catalyst model. …”
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13611
Understanding the Effect of Platinum Particle Size on Ethane Dehydrogenation and Hydrogenolysis: Particle-Based Microkinetic Modeling at Finite Conversion
Published 2025“…The effect of platinum particle size on the kinetics and mechanism of ethane dehydrogenation (EDH) and hydrogenolysis (EH) is elucidated using first-principles and multiscale modeling. A particle-based microkinetic modeling (PB-MKM) approach is used to couple the MKMs for individual facets, i.e., Pt(111), Pt(100), and Pt(211), into a variable-size Pt nanoparticle catalyst model. …”
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