Showing 1,121 - 1,140 results of 29,412 for search '(( 50 ((teer decrease) OR (a decrease)) ) OR ( 5 ((step decrease) OR (nn decrease)) ))', query time: 1.05s Refine Results
  1. 1121
  2. 1122
  3. 1123

    Likelihood of a decrease in runoff (a), an increase in runoff (b) and a severe change in ecosystems (c) for selected Δ<em>T</em><sub>g</sub> levels by Dieter Gerten (557088)

    Published 2013
    “…</strong> Likelihood of a decrease in runoff (a), an increase in runoff (b) and a severe change in ecosystems (c) for selected Δ<em>T</em><sub>g</sub> levels. …”
  4. 1124

    Decreased remyelination initiation is observed in Scribble cKO mice following focal demyelination in corpus callosum. by Andrew A. Jarjour (343100)

    Published 2015
    “…<i>n</i> = 3 mice per genotype. * <i>p</i> < 0.05, ** <i>p</i> < 0.01, *** <i>p</i> < 0.001 versus Scrib WT CL. Scale bars: A,B,D,E: 2 μm. J,K: 50 μm.</p>…”
  5. 1125
  6. 1126

    Inhibitory dose of CAP (ID<sub>50</sub>). by Alan Siu (756300)

    Published 2015
    “…<p>Duration of CAP treatment necessary to decrease viability by 50%, termed the inhibitory duration (ID<sub><b>50</b></sub>). …”
  7. 1127
  8. 1128
  9. 1129
  10. 1130

    Typical structure of a centrifugal nozzle [25]. by Yanyu Cui (19173181)

    Published 2025
    “…As temperature rises from 0°C to 50°C, liquid film thickness decreases, with a reduction of 14.6% for low-blending fuel and 52.8% for high-blending fuel.…”
  11. 1131
  12. 1132
  13. 1133
  14. 1134
  15. 1135

    Proliferative tissue degeneration is accompanied by a sustained decrease in proliferation, acute apoptotic responses, and progressive accumulation of DDR foci. by Catarina M. Henriques (102294)

    Published 2013
    “…Proliferative tissues such as A) testes, B) head kidney and C) gut sections show sustained significant decrease in proliferation in <i>tert<sup>−/−</sup></i> as compared to <i>tert<sup>+/+</sup></i> siblings (panels b, d and e) (p<0.001) and an acute apoptotic response at 3 months of age (p<0.001), which clears by c. 12 months (panels g, i and j). …”
  16. 1136
  17. 1137
  18. 1138

    A simple stochastic step model explains Reactive Oxygen Species production in cell populations undergoing senescence and in immortal cells. by Conor Lawless (183686)

    Published 2012
    “…<p>A) Hypothesis: Schematic representation of a step increase in phenotype for 100 cells. Each coloured trace represents one cell as it undergoes transition from proliferation-competence to senescence. …”
  19. 1139
  20. 1140