Showing 101 - 120 results of 20,892 for search '(((( 5 wt decrease ) OR ( 10 nm decrease ))) OR ( 50 ((mean decrease) OR (a decrease)) ))', query time: 0.69s Refine Results
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    Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries by Yuan Liu (88411)

    Published 2023
    “…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
  3. 103

    Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries by Yuan Liu (88411)

    Published 2023
    “…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
  4. 104

    Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries by Yuan Liu (88411)

    Published 2023
    “…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
  5. 105

    Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries by Yuan Liu (88411)

    Published 2023
    “…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
  6. 106

    Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries by Yuan Liu (88411)

    Published 2023
    “…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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  12. 112

    Means for STEM competence for pre- and post-test. by Esther Kim (2996622)

    Published 2024
    “…After the Challenge, participants increased in awareness of global issues, and engagement with others, but also showed a small but significant decrease in respect for people from other cultural backgrounds. …”
  13. 113
  14. 114

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
  15. 115

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
  16. 116

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
  17. 117

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
  18. 118

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
  19. 119

    Discovery of a Trifluoromethoxy Cyclopentanone Benzothiazole Receptor-Interacting Protein Kinase 1 Inhibitor as the Treatment for Alzheimer’s Disease by Yi Sun (118759)

    Published 2022
    “…<b>SZM679</b>, a highly specific RIPK1 inhibitor (<i>K</i><sub>d,RIPK1</sub> = 8.6 nM, <i>K</i><sub>d,RIPK3</sub> > 5000 nM), was developed by our group with superior high antinecroptotic activity (EC<sub>50</sub> = 2 nM), and investigated to completely reverse the tumor necrosis factor-induced systemic inflammatory response syndrome. …”
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