Showing 41 - 60 results of 116 for search '(((( apoptotic larger decrease ) OR ( apoptosis largest decrease ))) OR ( atomic volume decrease ))', query time: 0.45s Refine Results
  1. 41

    Polyethylene Glycol Impacts Conformation and Dynamics of Escherichia coli Prolyl-tRNA Synthetase Via Crowding and Confinement Effects by Jessica Liebau (18359653)

    Published 2024
    “…A recent study with PEG crowders revealed decreased catalytic activity of Escherichia coli prolyl-tRNA synthetase (Ec ProRS), where the smaller molecular weight PEGs had the maximum impact. …”
  2. 42

    Polyethylene Glycol Impacts Conformation and Dynamics of Escherichia coli Prolyl-tRNA Synthetase Via Crowding and Confinement Effects by Jessica Liebau (18359653)

    Published 2024
    “…A recent study with PEG crowders revealed decreased catalytic activity of Escherichia coli prolyl-tRNA synthetase (Ec ProRS), where the smaller molecular weight PEGs had the maximum impact. …”
  3. 43

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  4. 44

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  5. 45

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  6. 46

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  7. 47

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  8. 48

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  9. 49

    Compressibility, Phase Transition, and Argon Insertion in the Siliceous Zeolite Mobil-Twelve at High Pressure by Damian Paliwoda (1303656)

    Published 2022
    “…A phase transition from the space group <i>C</i>2/<i>c</i> to <i>P</i>2/<i>n</i> is observed in the nonpenetrating medium at close to 1.5 GPa with a 4% volume decrease and a strong increase in compressibility in the <i>ac</i> plane corresponding to partial collapse of the pores. …”
  10. 50

    In situ AFM Observation of the Movements of Isolated Isotactic Poly(methyl methacrylate) Chains in a Precursor Film of an Oligo(methyl methacrylate) Droplet Spreading on Mica by Yasuhiro Watanabe (376317)

    Published 2020
    “…The spreading rate of it-PMMA chains under 72% relative humidity was ∼1/30 of the spreading rate of the oligo­(MMA) matrix, which was estimated based on the decrease in the volume of the macroscopic droplet. …”
  11. 51

    In situ AFM Observation of the Movements of Isolated Isotactic Poly(methyl methacrylate) Chains in a Precursor Film of an Oligo(methyl methacrylate) Droplet Spreading on Mica by Yasuhiro Watanabe (376317)

    Published 2020
    “…The spreading rate of it-PMMA chains under 72% relative humidity was ∼1/30 of the spreading rate of the oligo­(MMA) matrix, which was estimated based on the decrease in the volume of the macroscopic droplet. …”
  12. 52

    In situ AFM Observation of the Movements of Isolated Isotactic Poly(methyl methacrylate) Chains in a Precursor Film of an Oligo(methyl methacrylate) Droplet Spreading on Mica by Yasuhiro Watanabe (376317)

    Published 2020
    “…The spreading rate of it-PMMA chains under 72% relative humidity was ∼1/30 of the spreading rate of the oligo­(MMA) matrix, which was estimated based on the decrease in the volume of the macroscopic droplet. …”
  13. 53

    In situ AFM Observation of the Movements of Isolated Isotactic Poly(methyl methacrylate) Chains in a Precursor Film of an Oligo(methyl methacrylate) Droplet Spreading on Mica by Yasuhiro Watanabe (376317)

    Published 2020
    “…The spreading rate of it-PMMA chains under 72% relative humidity was ∼1/30 of the spreading rate of the oligo­(MMA) matrix, which was estimated based on the decrease in the volume of the macroscopic droplet. …”
  14. 54

    Accurate Deep Learning-Aided Density-Free Strategy for Many-Body Dispersion-Corrected Density Functional Theory by Pier Paolo Poier (6576242)

    Published 2022
    “…The DNN strategy bypasses the explicit Hirshfeld partitioning of the Kohn–Sham electron density required by MBD models to obtain the atom-in-molecules volumes used by the Tkatchenko–Scheffler polarizability rescaling. …”
  15. 55

    Accurate Deep Learning-Aided Density-Free Strategy for Many-Body Dispersion-Corrected Density Functional Theory by Pier Paolo Poier (6576242)

    Published 2022
    “…The DNN strategy bypasses the explicit Hirshfeld partitioning of the Kohn–Sham electron density required by MBD models to obtain the atom-in-molecules volumes used by the Tkatchenko–Scheffler polarizability rescaling. …”
  16. 56

    DataSheet_2_Isoliquiritigenin Derivative Regulates miR-374a/BAX Axis to Suppress Triple-Negative Breast Cancer Tumorigenesis and Development.pdf by Fu Peng (1426402)

    Published 2020
    “…<p>Triple-negative breast cancer (TNBC) is a subtype of breast cancer that accounts for the largest proportion of breast cancer-related deaths. …”
  17. 57

    DataSheet_1_Isoliquiritigenin Derivative Regulates miR-374a/BAX Axis to Suppress Triple-Negative Breast Cancer Tumorigenesis and Development.zip by Fu Peng (1426402)

    Published 2020
    “…<p>Triple-negative breast cancer (TNBC) is a subtype of breast cancer that accounts for the largest proportion of breast cancer-related deaths. …”
  18. 58

    Figures. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  19. 59

    Summary of solver settings. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  20. 60

    Simulation parameters. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”