9 courses with the subject EGME, 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.
EGME 321ENGINEERING MATERIALS
First semester 3 hours An introduction to the science of engineering materials. Engineering properties of materials - mechanical, electrical, and chemical - are closely linked to the underlying solid state and molecular structure. Chemistry relating to various aspects of design including phase change, solution theory, acid-base solutions, and chemical equilibrium is presented. The processes by which these materials are produced and manufactured is also presented. Other topics include atomic bonding, crystal lattices, dislocation theory, phase diagrams, heat treatment, ferrous and non-ferrous alloys, ceramics and glasses, polymers and composites. Prerequisite: CHEM 131 and EGR 226. Engineering Course fee.
First semester 3 hours Introduction to both traditional and modern manufacturing engineering. Traditional manufacturing topics include machining, stamping, forming (plastics and metal), casting, metrology, etc. Modern manufacturing topics include Computer Numerical Control, Flexible Manufacturing Systems, robotics, CAD/CAM/CIM, nano- fabrication, etc. Hands-on projects/labs and/or plant tours included.
First semester 3 hours Introduction to the modeling, analysis and design of mechanical vibrating systems. Study of damping and its effects on vibration. Topics include steady state and transient analysis of systems with a single or multiple degrees of freedom, free, harmonic and forced responses of such systems, Laplace transform, and stability. Prerequisite: EGR 224 and MATH 326 (or concurrent enrollment). Engineering Course fee.
Second semester 3 hours A study of displacement, velocity, and acceleration analysis of linkage and cam mechanisms by graphical and analytical methods. Topics include synthesis of mechanisms such as the slider-crank and four-bar linkage, gears and gear trains, and the kinematics and inverse kinematics of robotics. Prerequisite: EGR 224 and MATH 326. Engineering Course fee.
First semester 3 hours Introduction to traditional quality engineering topics such as statistical quality control (control charts, acceptance sampling, 157
Second semester 3 hours Application of statistical concepts, reliability, factor of safet fatigue, and wear failure to machine designs. Applications to the design of shafting, bearings, gears, springs, and fasteners. Design optimization. Prerequisite: EGR 226. Engineering Course fee.
Either semester 3 hours Advanced study of the failure and fracture of materials under applied stress: yield and fracture criteria under combined loading; an introduction to linear-elastic fracture mechanics; stress- and strain-based fatigue analysis; creep failure mechanisms and life estimates; and environmentally assisted cracking. Prerequisite: EGR 226 and MATH 222. Engineering Course fee.
Either semester 3 hours Analysis and design of feedback control systems for physical processes. Study includes transient and steady state frequency response, stability analysis, control modes, simulation of control systems, and survey of common measurement systems such as displacement, velocity, acceleration, pressure, flow, temperature, force, torque, and strain. Engineering Course fee. Prerequisites: MATH 326
Second semester 3 hours Introduction to heat transfer by conduction, convection, and radiation. Applications to heat exchanges, ducts & pipes, surfaces, phase exchanges, and mass transfer. Application of dimensional analysis and numerical methods for solving heat transfer problems. Design of equipment involving heat-transfer processes. Prerequisite: EGR 323 and MATH 326. Engineering Course fee. ENGINEERING TECHNOLOGY MANAGEMENT