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Figure 4: Root Length of Maize in 0–20 Cm (A), 20–40 Cm (B) and 40–60 Cm (C) Soil Layer at Anthesis of Two Hybrid Variety Under Various Nitrogen (N) Application Rates in 2014 and 2015.
doi 10.7717/peerj.7294/fig-4
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Figure 5: Root Active Absorption Area of Maize in 0–20 Cm (A), 20–40 Cm (B) and 40–60 Cm (C) Soil Layer at Anthesis of Two Hybrid Variety Under Various Nitrogen (N) Application Rates in 2014 and 2015.
Figure 1: Total Organic Carbon (G/Kg) Present in the (A) 0–30 Cm, (B) 0–10 Cm, (C) 10–20 Cm, (D) 20–30 Cm Soil Layer.
Figure 2: Shoot Dry Matter (SDM) at Anthesis (A) and Maturity (B), Root Dry Matter (RDM, C) and Root/Shoot at Anthesis (D) of Maize Under Various Nitrogen Rates in 2014 and 2015.
Figure 6: Specific Leaf Nitrogen (SLN, A), Net Photosynthetic Rate (Pn, B) and Photosynthesitic Nitrogen Use Efficiency (PNUE, C) of Two Maize Hybrid Varieties Under Four Nitrogen Rates at Anthesis in 2014 and 2015.
Figure 4: Distribution of Soil P Content in Tested Agricultural Plots in the 0–30 Cm Layer.
Table 4: Shoot Nitrogen Uptake and Nitrogen Use Efficiency of Two Maize Hybrid Varieties Under Four Nitrogen Application Rates in 2014 and 2015.
ATCA 13 and 20 Cm Observations of A3556
Symposium - International Astronomical Union
Figure 6: (A) Depth (Cm) vs. 40K Activity (Bq Cm−1) and (B) Depth (Cm) vs. 226Ra Activity (Bq Cm−1) in Average Soil Profiles From the Ambient (Open Circles) and Elevated-Co2 (Filled Circles) Plots at the Oak Ridge FACE Site.
Figure 8: Long-Term Simulations of Soil C Stocks (0–20 Cm) Over 87 Years Projection for Burned System and Unburned System With Different Dosages of Vinasse.