Showing 39,941 - 39,960 results of 100,543 for search '(( 5 point decrease ) OR ( 5 ((((ng decrease) OR (a decrease))) OR (we decrease)) ))', query time: 1.70s Refine Results
  1. 39941

    Skin-Integrated Wireless Odor Message Delivery Electronics for the Deaf-blind by Wooyoung Park (17327466)

    Published 2023
    “…By adopting the olfactory interface message delivery system, the recognition rates for the messages have been improved 1.5 times that of the touch-based method, while the response times were immensely decreased 4 times. …”
  2. 39942

    Skin-Integrated Wireless Odor Message Delivery Electronics for the Deaf-blind by Wooyoung Park (17327466)

    Published 2023
    “…By adopting the olfactory interface message delivery system, the recognition rates for the messages have been improved 1.5 times that of the touch-based method, while the response times were immensely decreased 4 times. …”
  3. 39943
  4. 39944
  5. 39945
  6. 39946

    Schematic diagram showing Nrf2 induction and consequences during <i>de novo</i> KSHV infection of endothelial cells. by Olsi Gjyshi (641713)

    Published 2014
    “…As latency initiates, vFLIP expression further fuels the COX-2/PGE2 axis, and likely other pathways, to augment Nrf2 activity. …”
  7. 39947

    Northern blot analysis of riRNA. by Hiraku Takada (3599702)

    Published 2016
    “…The level of rRNA markedly decreased in the stationary phase. [C] <i>E</i>. <i>coli</i> BW25113 was grown in M9-glucose medium, and in the middle of exponential phase, total RNA was prepared using Isogen and subjected to Northern blot analysis using a series of Northern probes (<a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0163057#pone.0163057.t001" target="_blank">Table 1</a>, probes N01 to N10). riRNA was detected using two specific probes, probe-N3 and probe-N4 (for probes see <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0163057#pone.0163057.t001" target="_blank">Table 1</a>; and for primers used for amplification of these probes, see <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0163057#pone.0163057.s005" target="_blank">S2 Table</a>). …”
  8. 39948

    The system under study. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  9. 39949

    TS2 parameters. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  10. 39950

    TS1 parameters. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  11. 39951

    TS3 parameters. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  12. 39952
  13. 39953

    Image_1_Oat polar lipids and sunflower lecithin similarly improve cardiometabolic risk markers and appetite controlling hormone responses after breakfast and a subsequent lunch. A... by Mohammad Mukul Hossain (20128593)

    Published 2024
    “…The meals were served as breakfast followed by a standardised lunch (white wheat bread and meat balls) after 3.5 h. …”
  14. 39954

    HBF design results minimize <i>P</i><sub><i>LOSS</i></sub> in TS2. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  15. 39955

    HBF design results to minimize <i>P<sub>LOSS</sub></i> in TS1. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  16. 39956

    HBF design parameters for TS3. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  17. 39957

    HBF design parameters for TS1. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  18. 39958

    HBF design parameters for TS2. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  19. 39959

    HBF design results minimize P<sub>LOSS</sub> in TS3. by Abdallah Aldosary (21370131)

    Published 2025
    “…In TS3, the SFS-optimized HBF decreases <i>THD</i><sub><i>V</i></sub> by 45.71%, <i>TDD</i><sub><i>I</i></sub> by 99.96%, and <i>P</i><sub><i>LOSS</i></sub> by 33.26% compared to the uncompensated case. …”
  20. 39960