Showing 921 - 940 results of 22,559 for search '"Agriculture"', query time: 0.06s Refine Results
  1. 921

    Evapotranspiration-Based Irrigation for Agriculture: Crop Coefficients of Some Commercial Crops in Florida by Isaya Kisekka, Kati W. Migliaccio, Michael D. Dukes, Jonathan H. Crane, Bruce Schaffer, Sandra M. Guzman, Haimanote K. Bayabil

    Published 2019-06-01
    “…Part of a series on ET-based irrigation scheduling for agriculture, this article identifies typical Kc values for some of the crops commonly grown in Florida. …”
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    Article
  2. 922

    Food Safety on the Farm: Good Agricultural Practices and Good Handling Practices—Water by Keith R. Schneider, Renée M. Goodrich-Schneider, Douglas L. Archer

    Published 2010-05-01
    “…FSHN06-02/FS136: Food Safety on the Farm: Good Agricultural Practices and Good Handling Practices—Water (ufl.edu) …”
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  3. 923

    Agricultural Management Options for Climate Variability and Change: High-Residue Cover Crops by Joel Love, Jed Dillard, Kirk Brock, Daniel Dourte, Clyde Fraisse

    Published 2012-09-01
    “…While decision making in agriculture involves many aspects beyond climate, including economics, social factors, and policy considerations, climate-related risks are a primary source of yield and income variability. …”
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  4. 924

    Food Safety on the Farm: Good Agricultural Practices and Good Handling Practices – Traceback by Alexandra Chang, Alina Balaguero, Renée M. Goodrich-Schneider, Keith R. Schneider

    Published 2010-08-01
    “…FSHN10-04/FS152: Food Safety on the Farm: Good Agricultural Practices and Good Handling Practices—Traceback (ufl.edu) …”
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  5. 925
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    Novel Framework for Secure Data Aggregation in Precision Agriculture with Extensive Energy Efficiency by G. S. Nagaraja, K. Vanishree, Farooque Azam

    Published 2023-01-01
    “…Precision agriculture (PA) is the next generation of a technological revolution in smart farming, where sensing technology is the core technological player. …”
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  7. 927
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    Influence of flow on phosphorus-dynamics and particle size in agricultural drainage ditch sediments. by Jay Capasso, Jehangir H Bhadha, Allan Bacon, Lilit Vardanyan, Raju Khatiwada, Julio Pachon, Mark Clark, Timothy Lang

    Published 2020-01-01
    “…This study investigated how flow facilitated by hydraulic pumps and aquatic vegetation species water lettuce (Pistia stratiotes) and water hyacinth (Eichhornia crassipes) affected particle size and P-dynamics in organic sediments in agricultural drainage ditches. Sediments with finer particle size (>0.002 mm) were hypothesized to contain greater total P (TP) and less labile P than sediments with coarser particle size. …”
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  9. 929

    Providing Water Quality Index for Water use in Agriculture: A Case Study by Sosan Rezaei, Ebrahim Fataei

    Published 2024-11-01
    “…Therefore, the use of wastewater in agricultural practices should be implemented with appropriate safeguards.…”
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  10. 930
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  14. 934

    Evapotranspiration-Based Irrigation for Agriculture: Sources of Evapotranspiration Data for Irrigation Scheduling in Florida by Isaya Kisekka, Kati W. Migliaccio, Michael D. Dukes, Bruce Schaffer, Jonathan Crane, Kelly Morgan, Haimanote K. Bayabil, Sandra Guzman

    Published 2020-04-01
    “… This article is part of a series on ET-based irrigation scheduling for agriculture. The rest of the series can be found at http://edis.ifas.ufl.edu/topic_series_ET-based_irrigation_scheduling_for_agriculture.   …”
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  15. 935
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  17. 937

    Application of the Flux-Variance Technique for Evapotranspiration Estimates in Three Types of Agricultural Structures by Ori Ahiman, Yonatan Mekhmandarov, Moran Pirkner, Josef Tanny

    Published 2018-01-01
    “…The subject of this paper is the evaluation of a turbulent transport technique, the flux variance (FV), whose instrumentation needs and operational demands are not as elaborate as the EC, to estimate evapotranspiration within large agricultural structures. Measurements were carried out in three types of agricultural structures: (i) a banana plantation in a light-shading (8%) screenhouse (S1), (ii) a pepper crop in an insect-proof (50-mesh) screenhouse (S2), and (iii) a tomato crop in a naturally ventilated greenhouse with a plastic roof and 50-mesh screened sidewalls (S3). …”
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  18. 938

    Global Trends in Conservation Agriculture and Climate Change Research: A Bibliometric Analysis by Julio Román-Vázquez, Rosa M. Carbonell-Bojollo, Óscar Veroz-González, Ligia Maria Maraschi da Silva Piletti, Francisco Márquez-García, L. Javier Cabeza-Ramírez, Emilio J. González-Sánchez

    Published 2025-01-01
    “…This study provides a bibliometric analysis of global scientific production on Conservation Agriculture (CA) and its relationship with climate change mitigation. …”
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  19. 939
  20. 940

    Groundwater nitrate response to hydrogeological conditions and socioeconomic load in an agriculture dominated area by Hui Jia, Hui Qian

    Published 2025-01-01
    “…The pollution risk assessment combined with anthropogenic loads explains the occurrence of nitrate more precisely. Agricultural inputs and release of sewage-effluents are the major contributions of nitrate from hydrogeochemical evidence. …”
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