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Course Criteria
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3.00 Credits
Applies energy, continuity, and momentum principles to compressible flow. Topics include normal and oblique shocks; Prandtl-Meyer expansion; methods of characteristics; and one-, two-, and three-dimensional subsonic, supersonic, and hypersonic flows. Prereq., MCEN 5021 or equivalent.
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3.00 Credits
Same as MCEN 4122.
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3.00 Credits
Same as MCEN 4123.
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3.00 Credits
Applies linear and nonlinear optimization methods to the design of mechanical components and systems. Examines unconstrained and constrained optimization as well as formulation of objective functions, including cost, weight, response time, and deflection. Applies knowledge to gears, springs, cams, and linkages. Prereq., MCEN 3025 and 4030 or equivalent.
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3.00 Credits
Discusses the concepts and techniques of applied statistics essential to quality control and product/process improvement. Includes computer control (SQC/SPC), sampling methods and time series analysis, and methods of experimental design. Prereq., MCEN 4120. Same as CHEN 5127 and CVEN 5127.
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3.00 Credits
Same as MCEN 4131.
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3.00 Credits
Same as MCEN 4141.
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3.00 Credits
Finite difference, finite volume, finite element, and spectral methods, consistency, stability and convergence of numerical schemes, governing equations for reacting flows, convection, diffusion, convection-diffusion problems, matrix solution methods-cyclic reduction, Fourier, Jacobin, Gauss Siedel, SOR, ADI, Chebschev acceleration, Lax-Wendroff scheme, McCormack scheme, transonic small disturbance equation solution, staggered grids, simple scheme, discrete Fourier transform. Students work on two substantial projects using commercial software.
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3.00 Credits
Same as CHEN 5128.
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3.00 Credits
Same as MCEN 4152.
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