212
505
May be repeated to a maximum of 6 hours. Molecular excitation and de-excitation.
Analysis of intake, exhaust and fuel system.
4 graduate hours. Applications.
3 or 4 hours.
261
Course Information: 3 undergraduate hours. Analysis of intake, exhaust and fuel system. 3 or 4 hours. Propulsion Theory. Prerequisite(s): Consent of the instructor.
Internal and external flows and heat transfer. Prerequisite(s): ME 321 or consent of the instructor. Special Topics in Mechanical Engineering3 OR 4 hours. Particle and energy balance in plasmas. Prerequisite(s): Junior standing or above.
Non-equilibrium statistical mechanics. Particular topics vary from term to term depending on the interests of the students and the specialties of the instructor. 4 hours. Fluid properties.
4 undergraduate hours. 541
533
Mathematical description of turbulence field; kinematics of homogeneous turbulence; correlation and spectrum tensor, dynamic behavior of isotropic turbulence, universal equilibrium theory; nonisotropic turbulence. Satisfactory/Unsatisfactory grading only. Nonequilibrium states; chemical thermodynamics and kinetics. Prerequisite(s): ME 325. Particular topics vary from term to term depending on the interests of the students and the specialties of the instructor. 468
Intermediate Fluid Mechanics.
409
Course Information: Same as IE 412.
318
0-8 hours. Lagrangian dynamics, matrix, approximate and numerical methods. ME 441.
Prerequisite(s): ME 321. Satisfactory/Unsatisfactory grading only. iii.
4 graduate hours. Analysis and design of computer-integrated systems for process planning, production planning and control of discrete part manufacturing activities. ME 445 fulfills the Senior Design requirements (ME 396 and ME 397); ME 444 is a prerequisite for ME 445. Current Topics in Mechanical Engineering. Finite element method. Satisfactory/Unsatisfactory grading only. Performance specification and evaluation.
Prerequisite(s): IE 444 or ME 444; and senior standing or above; and consent of the instructor. Prerequisite(s): Consent of the instructor. Analyses utilizing various operators for closure; dualization; branching, rotatability; differential kinematics; numerical solutions. Numerical methods. Prerequisite(s): CS 107 or CS 108. 3 undergraduate hours. Prerequisite(s): ECE 347; or consent of the instructor.
535
Prerequisite(s): Consent of the instructor. Advanced Thermodynamics4 hours. ME 569. 411
Surface processes. Department deadlines for graduate college awards, Alumnus cruises to dream job at Harley-Davidson, Adding faculty expertise in traumatic brain injury, advanced manufacturing systems, MIE receives $8M Army Research Laboratory grant for drone fuel sensor research, Researchers creating personalized robotic limb to reduce work intensity, Engineering breakthrough can mitigate COVID-19 contamination in dental clinics, 2039 Engineering Research Facility, 842 W. Taylor St., Chicago, IL 60607, © 2020 The Board of Trustees of the University of Illinois, Department of Mechanical and Industrial Engineering. Microfluidic sensors, including optical and electrochemical sensors. Same as IE 445. 4 hours. Boundary layer flows with surface and gas-phase reactions.
Combustion in homogeneous charged and compression ignition engines. Skip to Main Content . 3 undergraduate hours. Interdisciplinary and interdepartmental work is encouraged with other engineering departments such as, bioengineering, chemical engineering, electrical engineering, and computer science as well as various departments in the College of Medicine.
Fundamentals of fluid mechanics. Dynamic Systems Analysis I3 OR 4 hours. Courses listed here are subject to change without advance notice. Applications; solar geometry and intensities; applied heat transfer topics; flat plate and concentrating collectors; energy storage; analysis of heating and cooling systems. In-depth study of thermodynamic principles, thermodynamics of state, vapor and gas power cycles, refrigeration cycles, thermodynamics of nonreacting and reacting mixtures, internal combustion engines, and thermodynamics of equilibrium.
508
Classification; heat transfer and pressure drop analysis, flow distribution, transient performance, surface selection and geometrical properties, codes and standards. Multi-phase Heat Transfer.
Experimental Methods in Mechanical Engineering3 hours. The UIC College of Engineering offers undergraduate and graduate students opportunities to join faculty in cutting-edge research. 3 or 4 hours. Prerequisite(s): CME 203. Numerical methods for solving conduction, convection and radiation problems in heat transfer.
Extensive use of Microsoft Excel.
5 graduate hours. Prerequisite(s): CME 203. ME 419.
Applications to spur, helical, worm and bevel gear drives. Course Information: Prerequisite(s): CS 108 and ME 421 or consent of instructor. Digital microfluidics. Design with finite-element analysis. Intermediate Vibration Theory3 OR 4 hours. Having problems accessing this site?
Introduces analytical and computational methods used for the computer aided dynamic and stability analysis of railroad vehicle systems. 415
Remaining 12 hours at the 400- or 500-level, C. All students must enroll in ME 595 every fall and spring semester, B.
Elementary processes-collisions. Design, Modeling, and Fabrication of Microsystems4 hours. Internal and external combustion engines; pollutant formation. Cross-functional teams (w/students from AD 420/423 and MKTG 594) research and develop new product concepts.
Boundary layer theories. Advanced Concepts in Computer-Aided Engineering4 hours. Kinetic theory of gases. Extensive computer use required. Transport Phenomena in Nanotechnology3 OR 4 hours. Course Information: Prerequisite(s): Consent of the instructor. 397
To earn a Bachelor of Science in Mechanical Engineering degree from UIC, students need to complete university, college, and department degree requirements.
Emission formation. Similarity solutions, integral methods, and other techniques for treating laminar and turbulent flows. 464
the site home page.
May be repeated. Field trips required at a nominal fee. Course Information: Satisfactory/Unsatisfactory grading only. Course Information: Prerequisite(s): ME 205 and ME 211; or consent of the instructor. Optical Methods in Mechanical Engineering. Prerequisite(s): Senior standing or consent of the instructor. Classification of gear drives. Featured News.
the main menu, ME 445.
Analyses utilizing various operators for closure; dualization; branching, rotatability; differential kinematics; numerical solutions.
Environmental aspects of combustion processes, pollutant formation. Prerequisite(s): Senior standing or above; or approval of the department.
Prerequisite(s): PHYS 141; and MATH 220. Some examples of specific research focus areas within these emphasis areas include micro/nanoelectromechanical systems (MEMS/NEMS), micro/nanomanipulation, nanoparticles, nanofluidics, microtransducers and micromechanisms, electrospinning, acoustics, dynamics and vibration, medical imaging and diagnostics, biomechanics and computational mechanics, product design, mechatronics and automatic control, multi-body systems and vehicle dynamics, IC engines, combustors, plasma, combustion, heat transfer, turbulence, multi-phase flows, and molecular dynamics and air pollution control.
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