| Accessibility Statement

Name:
Area of Specialty:

Water quality of natural water systems

Bioenergy

Administrative

Onsite wastewater treatment systems

Poultry house environment control and energy conservation

Biomass Conversion - Thermal and Biological; Bioenergy; Anaerobic digestion; Carbon Cycling

Fermentation and metabolic engineering

Biomechanics: a research and education program dedicated to discovering and disseminating knowledge related the biomechanics of human and animal movement

S.T.E.M./Engineering Education Outreach: a research and service program dedicated to the improvement of education

Sustainable agriculture

Environmental and natural resources engineering

Biodiesel; biofuels

Biosensing and bioimaging; instrumentation

Sensors and controls

Irrigation, water management and policy

Conservation tillage; alternative energy - solar and anaerobic digestion

Crop modeling and agrometerology

Multimodel VH interfaces

Biochemical engineering

Ecological and biochemical networks

Engineering education and complex systems

Water, Wastewater, Food Processing Waste Minimization

Tissue engineering and in particular cell-surface interactions with applications in the development of cell-based biosensors and/or assays for high throughput screening (HTS). Renewable energy utilization at the bottom of the economic pyramid with emphasis on biogas-powered cooling. Global service learning with emphasis on long term effects, well after graduation.

Bio-imaging

Geospatial technologies, environmental and natural resource planning and management

Sustainable buildings and processes; Energy efficiency in existing and new buildings; Water efficiency, water capture and reuse

Sensors and controls; postharvest engineering; heuristic search and optimization

Organic thin films, polymers, soft materials, interfacial characterization, organic electronics

Biomass and Bioenergy

Micro-electro-mechanical systems

Functional nanomaterials

Crop modeling and decision support tools

Precision agriculture

Sensors, security, safety

Non-point sources pollution management, water resources policy, stormwater management and erosion control, animal waste and nutrient management. Development of policy and techniques to conserve soil and water resources, work to preserve and protect agricultural systems through improved management and pollution preventionWater quality, waste management, Agricultural Pollution preventions

Environmental anthropology, climate adaptation and agricultural decision support

Systems and engineering ecology, Energy systems, Ecosystem energetics, Thermodynamics, Theoretical ecology, Complex network analysis, Ecological network theory

Water, energy, finance

Mechanical systems and materials, biomaterials, biomechanics, MEMS, multi-physics modeling, mechanical systems, FEA, fluid mechanics

Bioimaging, quantum computing

Agricultural pollution prevention, Environmental Management Systems EMS in Agriculture, Partnership for a Sustainable Georgia-AgTrack

Climate, coastal systems, wind/solar resources

Watershed Monitoring, Assessment, and Protection for Cities and Counties in Georgia

Spectroscopy and Spectral Imaging for Biosystems
Computer Mediated Learning Technologies

Structural design, storage of grain

Leadership for all University of Georgia engineering teaching, research, and extension programs statewide; irrigation systems and management: soil and water conservation; soil-plant-water relations; chemical application systems including chemigation; crop production systems; soil tillage systems.

Natural resources engineering; Watershed assessment; postharvest

Administrative

Water quality; precision agriculture

Engineering education

Urban water quality and environmental management

Animal waste management; water quality

Animal waste management, structures, electrical applications, energy conservation in agriculture

Nanoscience and engineering; nanobioelectronics

Undergraduate instruction