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Hornaday, C
Scharf, P.C
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Authors
Hornaday, C
Camberato, J
Nielsen, R
Lory, J.A
Scharf, P.C
Roberts, D.F
Kitchen, N.R
Scharf, P.C
Sudduth, K.A
Kitchen, N.R
Roberts, D.F
Sudduth, K.A
Drummond, S.T
Scharf, P.C
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Type
Oral
Year
2016
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1. Response of Continuous Corn to Varying Rates and Placements of Starter Fertilizer

Previous research has shown that starter fertilizer, a small amount of fertilizer placed with or near the seed at planting, often accelerates early season growth and increases biomass production, but does not always increase grain yield in corn (Zea mays L.). Our objective was to evaluate the effects of starter fertilizer on crop growth and development, as well as grain yield and moisture in continuous corn cropping systems. Treatments consisted of no fertilizer applied at planting (Control),... C. Hornaday, J. Camberato, R. Nielsen

2. Yield Goal Versus Delta Yield to Predict Nitrogen Need in Corn

Fertilizer nitrogen (N) needs of corn can vary widely both among and within fields. Many states use a yield goal to identi@ differences in fertilizer N need combined with an N credit system to adjust for N provided by the soil from sources such as soil organic matter, residual inorganic N and crop residues. Some have questioned yield-goal derived fertilizer N recommendations because of its poor correlation with fertilizer N need, leading some states to eliminate yield goal from their N recommendation...

3. An Environmental Assessment of Sensor-Based Variable-Rate Nitrogen Management in Corn

In order to address the problem of nitrate contamination of surface and ground waters, various methods have been used to try to account for spatial variability of N within agricultural fields. One approach to account for this variability and thereby reduce nitrate pollution is in-season site- specific N application according to economic optimal N rate (EONR). Recently, active crop canopy sensors have been tested for mid-season, on-the-go N fertilizer application in corn. This 2004 and 2005 study...

4. What are the Benefits of Canopy Sensing for Variable-Rate Nitrogen Corn Fertilization?

Canopy reflectance sensing for assessing crop N health has been proposed as a technology on which to base top-dress variable-rate N applicat ion. The objective of this research in Missouri was to evaluate the economic a nd environmental benefit of activ e-light crop-canopy reflectance sensors for corn N rate decisions. A total of 16 field-scale experiments were conducted over four seasons (2004-2007) in three major soil areas. Mu ltiple blocks of randomized N rate response plots traversed the length...