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Course Criteria
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ME 2330 . Rigid-body kinematics, plane and three-dimensional rigid-body kinetics, Lagrangian mechanics, orbital motions, and variable mass rockets.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ECE 3810 , ECE 3860 ; ME 3050 and ME 3060 . Robotic concepts and subsystems; mechanics of robots; sensors and intelligence; actuators; and trajectory planning and control.
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3.00 Credits
Lec. 2. Lab. 2. Credit 3. Prerequisite: CEE 3110 and MATH 2120 . Introduction to theory of elasticity; photoelasticity; theory and application of strain gages and rosettes; brittle coatings; holographic interferometry; and moire’ analysis.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: CEE 3110 . Fundamental concepts; displacement-based finite element formulation using energy methods; one-dimensional and two-dimensional finite elements; modeling considerations and convergence; programming and an introduction to a commercial program.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: CEE 3110 , MATH 2120 or consent of instructor. Advanced topics; fracture mechanics, elastic support, noncircular shafts, curved beams, thick-walled cylinders, introduction to plates, and thin shells of revolution.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ME 3220 , ME 3710 , and ME 3720 . Refrigeration systems with emphasis on the vapor-compression cycle, air-conditioning systems, principles of psychrometrics, human comfort, and principles for building load calculations.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ME 4210 . Design of heating, cooling and ventilation systems for buildings. Duct system design, pipe system layout, and equipment selection.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ME 3220 , ME 3710 , or equivalent. Energy conversion and conservation techniques used in industrial applications; energy audits, heat loss considerations, and energy measurements.
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3.00 Credits
Lec. 3. Credit 3. Prerequisite: ME 3220 and ME 3720 . Fundamental motions, shock waves, flow through ducts and nozzles, unsteady wave motion, linearized flows, and method of characteristics.
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3.00 Credits
Lec. 2. Lab. 2. Credit 3. Prerequisite: ECE 3810 , and ECE 3860 ; ME 3050 and ME 3060 . Mechatronics; number systems; microcontroller technology and architecture of 8-bit microcontrollers (e.g. Motorola MC68H110), assembly language programming, A/D and D/A conversion, parallel I/O; programmable timer operation, interfacing sensors and actuators, applications, and team project on design and implementation of a mechatronic system.
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