Proceedings

Find matching any: Reset
Sawyer, J
Stienstra, W.C
Spicka, S
Sanchez, J.E
Stevens, W.B
Add filter to result:
Authors
Miller, J.J
Giesler, L.J
Shapiro, C.A
Schepers, J.S
Glewen, K
Arneson, N.J
Spicka, S
Laboski, C
Camberato, J
Sawyer, J
Rehm, G.W
Stienstra, W.C
Hoeft, R.G
Stevens, W.B
Sanchez, J.E
Harwood, R.R
Smeenk, J
Topics
Type
Oral
Year
2015
2014
1991
1994
2001
Home » Authors » Results

Authors

Filter results5 paper(s) found.

1. Evaluation of Crop Canopy Sensors as a Tool for Soybean Research and Production

Determining the variables that consistently increase yields in soybean  [Glycine max (L.) Merr.] continues to challenge researchers, agronomists and growers alike. Crop canopy sensors have emerged as a technology used in other cropping systems to monitor and manage agricultural inputs. The sensors measure reflectance in selected wavebands that are used to calculate vegetation indices that relate to unique leaf or canopy characteristics. The objectives of this study were to determine if a commercially...

2. Evaluation of Adapt-N in the Corn Belt

Nitrogen is the plant nutrient required in the largest quantity, the most likely to be deficient, and the most impactful on corn yield as well as grower profit. Providing N to a corn crop in the right amount while minimizing loss is difficult because of complex biological and chemical reactions that result in the loss of N from the crop root zone via deep percolation to ground water, lateral flow, runoff and erosion to surface waters, and volatile losses to the atmosphere as ammonia, nitrogen gas,...

3. Reducing the Severity of Phyophthora Root Rot Damage in Soybeans with Selected Management Options

Phytophthora root rot of soybeans (PRR) is a major concern for soybean growers in south-central and southeastern Minnesota, where it can be responsible for major yield reductions. In these regions, PRR is generally a serious problem when soybeans are grown on poorly drained soils and/or there is a moderate amount of rainfall within 2 to 3 days of planting. Previous research has shown that PRR causes a reduction in the number of harvestable plants per acre and this is the major contributing factor...

4. N Loss Under Excessive Water Conditions

The impact of excessive soil moisture on N availability was reasonably well understood at the end of the 19th century when Wiley (1896) commented " Even in the case of rainfall. which may carry the soluble plant food below the arable soil, there may not be any notable loss. especially if such a downpour be followed by dry weather. But in case of heavy rains, producing a thorough saturation and leaching of the soil. the losses in a field lying fallow during the summer will be very great and it is...

5. Enhancing Soil Nitrogen Availability in Corn-Based Cropping Systems

The development of sustainable N management systems requires a better understanding of the contribution of on-farm resources to the active N pool size and its mineralization. This study explores the effect of substrate diversity and living corn roots on improving N supply through mineralization. A "diverse system", consisting of a corn (Zea mays L.)-corn-soybean (Glycine mar L.)-wheat (Triticum aesiiwrm L.) rotation with cover crops and fertilized with composted manure was compared with a corn monoculture...