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Mieno, T
Reinbott, T.M
Snapp, S.S
McVay, K.A
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Authors
Krienke, B
Ferguson, R
Luck, J
Thompson, L
Parrish, J
Mueller, N
Mieno, T
Crowther, J
Shaver, T
Ingram, T
Krull, D
Glewen, K
Buchholz, D.D
Tracy, P.W
McVay, K.A
Boring, T.J
Snapp, S.S
Leep, R
Gehl, R.J
Nathan, M
Reinbott, T.M
Nelson, K.A
Kremer, R.J
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Type
Oral
Year
2016
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2011
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1. Nitrogen Management for Winter Wheat in Missouri

Eight site years of data have been collected to evaluate nitrogen rate and timing for intensively managed winter wheat in Missouri. Variables have included rates up 160 lbs N per acre applied as all fall, all spring, or split in a fall and spring or fall plus two spring applications. Results have pointed to the split applications of rates at 80 to 120 lbs N per acre as providing greatest consistency and economic return to the grower. Maximum yield has generally been obtained with the 3 way split...

2. Corn Yield Response to Residual Forage Crop Rotation and Manure Amendment Effect in Potato Rotations

Accurate prediction of multiple-year N availability froin organic sources is difficult and can complicate nitrogen management for producers using these sources. The objective of this study was to use corn yield and soil N monitoring to evaluate long-term nutrient availability from rotational systems on an irrigated Alfisol in central Michigan. Over a 5-year period, multiple crop sequences were grown with either annual liquid dairy manure at 12,260 L ha-' or conventional mineral fertilizer application...

3. Nutrient Management Studies in Bio-Fuel Cropping Systems

Research was conducted to determine the effect of nutrient management practices on bio-fuel crop production, and to evaluate long term effects of bio-fuel crop production on selected chemical, physical and microbiologi cal properties. Experimental plots for research on bio-fuel crops production were established in 2008 at two sites in Missouri. The experimental design was an 8x3 factorial laid out in a sp lit plot design. The main plots were eight bio-fuel cropping systems including: 1) continuous...

4. Project Sense: Sensors for the Efficient Use of Nitrogen and Stewardship of the Environment. An On-Farm Research Effort to Increase Adoption of Sensor Based N Management

Low nitrogen use efficiency (NUE) has been attributed to several factors including asynchrony between nitrogen (N) fertilizer application, crop demand, and spatial variability (Shanahan et al., 2008). Sidedress applied N synchronizes crop uptake demand for N, but does not address the spatial and temporal variability that exists in a field year to year. Active crop canopy sensors provide an ability to monitor and respond to spatial and temporal N variability for a given field. A three-year project,... B. Krienke, R. Ferguson, J. Luck, L. Thompson, J. Parrish, N. Mueller, T. Mieno, J. Crowther, T. Shaver, T. Ingram, D. Krull, K. Glewen