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Course Criteria
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Credits
Problems in the design, construction, or application of machinery or power in agriculture, structures, modern conveniences, and rural electrification.
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1.00 - 3.00 Credits
A continuation of BAE 536. Completion of a team-oriented design project, with emphasis on construction, evaluation, documentation, and presentation of the design.
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3.00 Credits
Fundamentals of instrumentation and control engineering applied in biological and agricultural systems and processes. Time-domain analysis and frequency response methods. Sensors and actuators in feedback control systems. Control system design. Case studies.
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3.00 Credits
Energy use and production in agriculture and related industries. Energetics of primary production, including crop energy conversion. Energy and material balances of biomass energy production and processing systems, including energy embodied in fertilizers and pesticides. Review of the role of fossil fuels in agricultural and forestry operations, including opportunities for energy conservation. Impact of alternative fuels on internal combustion engine emissions.
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3.00 Credits
Air pollution legislation, standards, measurement, and terminology. Design and economics of particulate pollution control systems including cyclones, fabric filters, wet scrubbers, and electrostatic precipitators. Abatement of gas and vapor pollution using VOC incineration, gas adsorption and gas absorption. Meteorology and atmospheric dispersion modeling.
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3.00 Credits
Design and operative problems on the fundamentals of irrigation/water application system design and management. Field water balances; sources of water and water quality; pipeline, pump, and system hydraulic design; design of irrigation/water application systems; filtration systems and water treatment.
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3.00 Credits
Definition, classification, and practice of ecological engineering. Course describes ecological systems, ecosystem restoration, and the utilization of natural processes to provide societal services and benefits to nature.
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3.00 Credits
Study and evaluation of process equations used in watershed-scale, water-quality models. Use and application of watershed models.
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3.00 Credits
Technologies of bio-based material processing including starch extraction (wet milling), plant oil extraction and refining, plant protein extraction and processing, cellulose processing, biofuel production, chemicals bioconversion, and drying technologies or biomaterials.
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3.00 Credits
Analytical study of design, testing, construction, and operating characteristics of off-highway vehicles and machinery. Includes human factors, mobility, and precision agriculture.
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