Showing 12,341 - 12,360 results of 100,619 for search '(( 2 step decrease ) OR ( 5 ((teer decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.37s Refine Results
  1. 12341
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  3. 12343

    (A) FACS analysis of cell surface markers on untreated or 5 nM Bortezomib treated mature dendritic cells. by Daniela Grabher (383863)

    Published 2013
    “…<p>Maturation marker expression (CD80, CD83 and CD86, MHC class I and MHC class II) on mature dendritic cells and mature dendritic cells treated with 5 nM Bortezomib were measured. Maturation markers show no difference when treated with 5 nM Bortezomib. …”
  4. 12344

    SYSTEMIZATION OF LAPAROSCOPIC INGUINAL HERNIA REPAIR (TAPP) BASED ON A NEW ANATOMICAL CONCEPT: INVERTED Y AND FIVE TRIANGLES by Marcelo FURTADO (6072245)

    Published 2019
    “…Method: To offer a systematization of TAPP repair based on well defined anatomic landmarks, describing the concept of “inverted Y”, identification of five triangles and three zones of dissection, to achieve the “critical view of safety” for laparoscopic inguinal hernia repair. …”
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  7. 12347

    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  8. 12348

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  9. 12349
  10. 12350

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  11. 12351

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  12. 12352

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
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  15. 12355
  16. 12356

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  17. 12357

    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  18. 12358

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
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