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Course Criteria
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1.00 Credits
Description: Experiments related to vibrations, controls, fluid mechanics and thermodynamics. Computer data acquisition and data analysis. 1.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ME 3802 and ( ME 3950 or HON 2239)
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3.00 - 4.00 Credits
Description: (Technical Elective) Individual study of a selected topic with an ME faculty; requires exams/homework/projects similar to a regular course. Consent of department chair required. 3.00 TO 4.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate
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3.00 Credits
Description: (Technical Elective) Individual participation in modern computational, analytical or experimental research activities under faculty supervision; requires technical report and presentation at end of semester. Consent of department chair required. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate
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3.00 Credits
Description: The standard atmosphere, two-dimensional incompressible flow, Reynolds and Mach number, generation of lift based on airfoil and wing platform characteristics, drag force, propulsive force, overall airplane performance, static stability and control. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ( ME 3600 or CEE 3500) and ( ME 3100 or HON 2231)
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3.00 Credits
Description: Foundations of fluid dynamics, isentropic flow, normal shock waves, flow in constant-area ducts and friction, flow with heat exchange, unsteady flow. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ( ME 3100 or HON 2231) and ( ME 3600 or CEE 3500)
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3.00 Credits
Description: The engineering principles underlying the current practices of heating, ventilating, air conditioning, and refrigeration systems design. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ME 3100 or HON 2231
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3.00 Credits
Description: Fundamentals of Computational Fluid Dynamics (CFD), concepts and methods for numerically solving the differential equations of fluid dynamics, solution to complex flow problems in the aerospace, automotive, electronics, environmental, and biomedical industries, use of the commercial CFD code, Fluent. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Must be enrolled in one of the following Colleges: Engineering Must be enrolled in one of the following Majors: Mechanical Engineering Prerequisites: Undergraduate level ME 3600 Minimum Grade of D- or Undergraduate level CEE 3500 Minimum Grade of D-
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3.00 Credits
Description: Review of stress analysis fundamentals,intro to finite elements using ANSYS. Correct and incorrect solution methods of stress analysis boundary value problems, modeling pitfalls, and solution methods using finite elements. Practical applications. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ME 2505 or ME 3402
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3.00 Credits
Description: Basic concepts of finite-element method, method of weighted residuals, 1-D axial and beam elements, 2-D stress and thermal elements, design projects via commercial codes. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ME 3402 and ( ME 3950 or HON 2239)
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3.00 Credits
Description: Modeling of dynamic systems, transfer functions, block diagrams, state vector concepts, feedback control, transient and frequency response, stability and root locus, controller design with output feedback. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: ME 4102
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