Search alternatives:
significantly increased » significant increase (Expand Search)
significant decrease » significant increase (Expand Search)
increased decrease » increased release (Expand Search), increased crash (Expand Search)
significantly increased » significant increase (Expand Search)
significant decrease » significant increase (Expand Search)
increased decrease » increased release (Expand Search), increased crash (Expand Search)
-
2681
Regression model summary outputs: Skilled delivery with MAMA kit (Continuous exposure).
Published 2025Subjects: -
2682
-
2683
-
2684
-
2685
-
2686
-
2687
-
2688
-
2689
-
2690
-
2691
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020) for the two hemispheres.
Published 2025“…<p>Percentages (%) of increases or decreases (%) based on the Mann-Kendall test and statistically significance (<i>p</i> < 0.05) and non-significant (<i>p</i> > 0.05) values. …”
-
2692
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020).
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for DJF (December-February), MAM (March-May), JJA (June-August) and SON (September-November). …”
-
2693
Seasonal spatial-temporal trend of NDVI in burned areas across Africa (2001–2020).
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for DJF (December-February), MAM (March-May), JJA (June-August), and SON (September-November). …”
-
2694
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020) by countries and territories.
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for December-February (DJF), March-May (MAM), June-August (JJA) and September-November (SON). …”
-
2695
Mineral component content.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
-
2696
Micro-parameters of the numerical model.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
-
2697
Microcracks on the surface of the coal sample.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
-
2698
Flowchart of the test.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
-
2699
Distribution of thermal cracks.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
-
2700