9 courses with the subject MEE, each shown exactly as we captured it from the college's catalog, with every element we hold. Where the wording looks broken, that is our reading of the catalog, not the college's text.
MEE 321Mechanics of Deformable Bodies3
A review and continuation of the deformable body topics in EGR 211. Bending, torsion, direct stress and transverse shear in beams; curved members; thin- walled members; combined stresses; experimental stress analysis using strain gauges; theories of failure; deflection of beams; statically indeterminate problems; elastic stability of columns; energy methods; introduction to plasticity. Fall semester. Geneva College 2
Displacement, velocity, and acceleration analysis of linkage and cam mechanisms by graphical and analytical methods. Synthesis of mechanisms. Gears and gear trains. Fall semester.
A survey of sensors and their applications. Dynamic characteristics of sensors and of the analog and digital electronics involved in making measurements. Interpretation of signals based on appropriate first and second order models of system performance. Applications include measurement of strain, velocity, pressure, flow rate, acceleration, and temperature, and others as determined by the instructor and by student project needs. Fall semester, odd years.
Statistical concepts, reliability, factor of safety, fatigue, and wear failure. Applications to the design of shafting, bearings, gears, springs, and fasteners. Design optimization. Fall semester.
Formulation of discrete elements for structural and stress analysis. Variational theorems. Isoparametric elements. Heat conduction, elastic stability, vibration, fluid flow, magnetics, and optimization problems solved using professional software. Spring semester.
Steady state and transient analysis of systems with single or multiple degrees of freedom. Modal analysis and dynamic response of structures and machines. 026-2027 129
Applications of thermodynamics, fluid dynamics, and heat transfer to the design of thermal systems such as power plants, solar energy systems, and HVAC systems. Extension to complex cycles, heat exchangers, and radiation heat transfer. Includes individual and team design problems as a major component. Spring semester.
Cross-listed as CHE 401. Equilibrium and kinetics of reacting flows. Techniques involved in choosing a reactor to produce a desired product. Possible applications include chemical synthesis, combustion systems, incineration, and pollution control systems. Fall semester. MEE 199, 491, 493, 494, 495, 499 (See page 14)