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Execució del pla de gestió ambiental

6. Pla de Gestió Ambiental

6.4 Execució del pla de gestió ambiental

Department Head: Michael R. Grimaila, PhD, CISM, CISSP 2950 Hobson Way, Building 640, Room 101

Wright-Patterson AFB, OH 45433-7765 Phone: (937) 255-2998 (DSN 785-2998) Fax: (937) 656-4699 (DSN 986-4699)

E-mail address: [email protected] Website: http:// www.afit.edu/en/env/

The Department of Systems Engineering and Management provides defense-focused graduate education through interdisciplinary research projects developing integrated solutions for the U.S. Air Force, the Department of Defense, and various national agencies. The department has three primary thrust areas: Engineering and Technology Management, Environmental Engineering and Science, and Systems Engineering. The department offers a Doctor of Philosophy (PhD) degree in Systems Engineering and Master of Science degrees in five major multi-disciplinary fields: Cost Analysis, Engineering Management, Environmental Engineering and Science, Industrial Hygiene, and Systems Engineering.

Facilities

The Department of Systems Engineering and Management maintains several laboratory facilities in support of its academic and research programs. The laboratory facilities include the following dedicated areas:

 Analytical Chemistry Laboratory  Environmental Microbiology Laboratory  Environmental Remediation Laboratory  Human Systems Laboratory

 Industrial Hygiene Laboratory  Quantum Information Laboratory

 Unmanned Aerial System (UAS) Laboratory  Human Systems Laboratory

 Outdoor Unmanned Air Vehicle Test Facility

Programs

Master of Science

 Cost Analysis

 Engineering Management

 Environmental Engineering & Science

 Industrial Hygiene

 Systems Engineering Master of Engineering

 Applied Systems Engineering Doctoral Programs

 Systems Engineering with several available specializations

 Specializations in autonomous systems, environmental systems, information/cyber systems, industrial hygiene, infrastructure systems, quantum information, space systems, and unmanned aerial systems

112 Certificates

 Systems Engineering Certificate

 Human Systems Certificate

Faculty

Professor

Adedeji B. Badiru project systems modeling and control, economic analysis, computer simulation, mathematical modeling, industrial technology transfer

Michael R. Grimaila computer and electrical engineering, information/network security, mission assurance, modeling and simulation, quantum cryptography, systems engineering

Willie F. Harper, Jr. water quality, biological processes, advanced oxidation, infrastructure security, biosensing, biofuels, unit process modeling, quantum chemical computations, sustainability

David R. Jacques systems engineering, architecture, system and system-of-system level design for mission effectiveness, autonomous and/or cooperative multi-agent systems, small UAS development and flight test Associate Professor

John M. Colombi model-based systems engineering, system of systems (SoS) engineering, executable architecture, design optimization, complex systems science, human-systems, optimal design, defense acquisition analysis, unmanned air vehicle (UAV) design and integration, DoD acquisition research, modeling & simulation Michael E. Miller human systems integration (HSI), human factors, human machine interface design, lighting and

display design

Alfred E. Thal, Jr. facility/infrastructure management, engineering management, project management, risk management, economic analysis, innovation, sustainability

Assistant Professor

Amy M. Cox systems engineering, user innovation, design, flexibility, system architecture, flight test Scott T. Drylie cost analysis, cost growth, economic analysis, acquisition reform, profit analysis, incentives

John J. Elshaw leadership, human-technology interaction (virtual teams, electronic monitoring, distance leadership), workgroup and team processes within organizations, social networks, organizational climate and culture, cross-cultural leadership and communication, cognition and emotions, motivation (self-regulation, intrinsic versus extrinsic control), human performance, learning curve analysis, organizational trust, performance, commitment project management

Robert M. Eninger exposure assessment, aerosol science, environmental risk analysis, toxicology, ionizing radiation Robert D. Fass cost analysis, risk analysis, decision analysis and optimization, leadership, organizational performance,

research methods, government acquisition system, strategic alliances, project management

Thomas C. Ford systems architecture, interoperability, resiliency, model-based systems engineering, systems modeling and simulation, space systems, systems integration

Jason K. Freels applied statistics, lifecycle management, maintainability, optimization, reliability, reliability modeling and analysis, response surface methods, statistical data analysis, stochastic modeling and analysis, stochastic systems analysis, structural mechanics, structures and materials, survival/reliability analysis, systems engineering

Christopher A. Gay project management

Andrew J. Hoisington infrastructure asset management, environmental engineering, built environment, indoor air quality, microbiome of built environment, microbiome influencing human performance

Clay M. Koschnick economic analysis, dynamic programming, econometrics, decision analysis, systems engineering Brent T. Langhals data management and analysis, data analytics, human computer interaction, systems engineering,

resource management, knowledge management,

David S. Long systems architecture, complex systems, systems of systems, human systems integration, project management, organizational development

Eric G. Mbonimpa sustainability and life, environmental sustainability, life cycle assessment, surface water quality modeling, disinfection of water using solar radiation, water quality and treatment

Jonathan D. Ritschel cost analysis, economic institutional analysis, acquisition reform, public choice Steven Schuldt civil engineering, project management, construction management, optimal resource utilization, multi-objective optimization, genetic algorithms, risk management, installation resiliency, sustainability Jeremy M. Slagley industrial hygiene, environmental management, waste to energy

John E. Stubbs environmental engineering and science, water treatment and remediation

Torrey J. Wagner systems engineering, renewable energy systems, electro-optics, agile software development Adjunct Faculty

Juan Leon infectious disease, epidemiology, outbreak response David R. Mattie inhalation toxicology, toxicokinetics

Joseph Pellettiere biomechanics, crash dynamics and passenger safety

Leeann Racz environmental engineering, environmental microbiology, environmental health and science Christina F. Rusnock human factors, human performance modeling, simulation of cognitive workload, project

management

Terry A. Wilson systems engineering, data analytics, information and knowledge management

Professor Emeritus

Charles A. Bleckmann environmental remediation, environmental microbiology Anthony P. D'Angelo logistics management, federal financial management

Mark N. Goltz environmental engineering, environmental modeling, environmental technology transfer, fate and transport of contaminants

Jan P. Muczyk leadership, business strategy, implementation, streamlining bureaucracy Freda F. Stohrer communications

David K. Vaughan scientific and technical communication, Air Force history

Applied Systems Engineering (M.E.)

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