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ME 544: Theory of Elasticity
3.00 Credits
Southern Illinois University Edwardsville
Elastic equations and boundary conditions. Variational development of equations. Solutions for stress around a hole and beams on an elastic foundation. Prerequisite: Consent of instructor. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 544 - Theory of Elasticity
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ME 546: Plates and Shells
3.00 Credits
Southern Illinois University Edwardsville
Membrane theory of shells. Bending of shells, as well as, circular and rectangular plates. Indeterminate shell problems. Prerequisites: CE 445, ME 470 or consent of instructor. Same as CE 546. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 546 - Plates and Shells
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ME 547: Elastic Stability
3.00 Credits
Southern Illinois University Edwardsville
Elastic stability of columns and simple frames. Laternal and torsional buckling of beams. Buckling of plates. Design code considerations of buckling. Prerequisites: CE 445, ME 470 or consent of instructor. Same as CE 547. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 547 - Elastic Stability
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ME 548: Finite Elements
3.00 Credits
Southern Illinois University Edwardsville
Rayleigh-Ritz method; piecewise approximation; modal load calculation; derivation of two- and three-dimensional elements; bending elements. Finite element computer programs. Practice with actual programs. Prerequisites: CE 445, ME 470 or consent of instructor. Same as CE 548. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 548 - Finite Elements
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ME 550: Modern Control
3.00 Credits
Southern Illinois University Edwardsville
Analysis and design of control systems; state-variable description; controllability, observability, non-linearity and perturbation theory; stability, state feedback design, robust control. Prerequisite: ME 450 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 550 - Modern Control
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ME 560: Advanced Vibration With Applications
3.00 Credits
Southern Illinois University Edwardsville
Lagrange equations; vibration of continuous systems; finite elements; component-mode synthesis and other approximation methods; introduction to random and nonlinear vibration. Prerequisites: ME 452 or equavalent 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 560 - Advanced Vibration With Applications
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ME 563: Optimal Control
3.00 Credits
Southern Illinois University Edwardsville
Description of system and evaluation of its performance; dynamic programming; calculus of variations and Pontryagin''s Minimum Principle; interactive numerical techniques. Prerequisite: ME 450 or ECE 365 Same as ECE 563. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 563 - Optimal Control
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ME 573: Advanced Thermodynamics
3.00 Credits
Southern Illinois University Edwardsville
Fundamental concepts; thermodynamic relations; topics from statistical thermodynamics including Bose-Einstein and Fermi-Dirac quantum statistics; partition functions. Prerequisite: Consent of instructor. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 573 - Advanced Thermodynamics
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ME 575: Advanced Fluid Mechanics
3.00 Credits
Southern Illinois University Edwardsville
Imcompressible fluids; potential flows; solution of Navier-Stokes equations; low and high reynolds number flows; laminar and turbulent boundary layers. Prerequisite: ME 315 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 575 - Advanced Fluid Mechanics
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ME 580: Computational Fluid Dynamics
3.00 Credits
Southern Illinois University Edwardsville
Model equations, finite differences an finite volume methods, diffusion problems, convection-diffusion problems, solution algorithm, unsteady flows, turbulence modeling. Prerequisites: ME 410; CS 145 or equivalent. 3.000 Credit Hours 3.000 Lecture hours Levels: Graduate Schedule Types: Lecture School of Engineering College Mechanical/Industrial Engineer Department
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ME 580 - Computational Fluid Dynamics
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