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Course Criteria
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0.00 Credits
Continuation of EGPP-101.
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3.00 Credits
Presents basic concepts of stress and strain of deformable bodies, state of stress and strain, Mohr's circle, and bending of prismatic bars, among other topics. Prereq.: CIEG-202; coreq.: MATH-159.
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1.00 Credits
Emphasizes measurements of stress, strain, and displacements for solid beams in tension, compression, flexure and torsion. Coreq.: MEEG-204.
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3.00 Credits
Lumped parameter mathematical modeling of physical systems, analysis using analytical and computer means. Introduction to feedback control and simple control schemes such as position, derivative, etc. Prereqs.: CIEG-302, MATH-159.
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3.00 Credits
Transfer function and state variable representation of physical systems open loop and closed loop control concepts. Time domain and frequency domain analysis. Stability analysis - Routh Hurwitz, Nyquist criteria, root locus method, system specifications, system design with state variable feedback (time domain) and series compensation (frequency domain). Prereqs.: MEEG-301, MEEG-303.
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3.00 Credits
Includes mathematical methods of engineering, vector operations and field theory, matrix analysis, orthogonal curvilinear coordinates, Fourier Series and Fourier Integrals. Prereqs.: MATH-159, MATH-158.
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3.00 Credits
Study of mixtures, combustion, power cycles, gas turbines, and compressors; reciprocating engines, refrigeration, and reactive systems. Introduction to Onsager's relations and direct energy conversion. Laboratory work included. Prereq.: MEEG-305, MEEG-307.
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3.00 Credits
Includes properties and mechanics of fluids; kinematics; and control volume continuity, momentum, and moment of momentum equations. Prereqs.: MATH-159 and CIEG-302.
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3.00 Credits
Potential flow theory and compressible flow; circulation, vorticity and wing theory, shock waves, expansion waves and nozzles; introduction to boundary layer theory and applications. Prereqs.: MEEG-305, MEEG-307.
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3.00 Credits
Correlation of the structure of metals, ceramics, and organic materials with their mechanical and physical properties; control of the properties by modifying the microstructure, and stability of materials in service environments. Prereqs. CHEM-003, PHYS-014, MATH-158.
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