Drag polars. Department of Electrical & Computer Engineering. Governing equations for mass, momentum and energy. History of unmanned systems. Incorporation of stress and deformation analyses and applicable material failure theories literatively until all design needs and constraints are satisfied. MAE 5923 Guidance and Control of Aerospace Vehicles. Description: Two-semester design project with team format. Description: Exploration of the major engineering processes for airworthiness certification of manned and unmanned aircraft. Inverse kinematics, motion planning and trajectory generation. Propeller theory. Prerequisites: MAE 4053 or ECEN 4413 or consent of instructor. MAE 5973 Unmanned Aerial Systems Propulsion. Same course as ECEN 5523. Description: This course will cover propulsion topics used on Unmanned Aerial Systems (UAS). MAE 4354 Aerospace Systems Design for Mechanical Engineers. (3 credit hours). MAE 5963 Unmanned Aerial Systems Design and Analysis. Description: Basics of tensor calculus, field equations (strain-displacement, compatibility, equilibrium, and constitutive relation), solution of plane elastrostatics problems in cartesian and polar coordinates, potential function formulation, introduction to 3D problems. There will be an emphasis on practical understanding of components, system integration, and system design. As a helpful resource, every major in the College of Engineering publishes curriculum sheets each year. Satellite orbital and attitude dynamics. Progression from fundamentals to design and analysis of complete rocket systems, including design case studies. Prerequisites: A grade of "C" or higher in MAE 3724 or ECEN 3723. MAE 4283 Aerospace Vehicle Stability and Control. Description: Setup and solution of equations which govern mechanical engineering systems.Application and solution of the governing equations to describe the steady state or transient behavior of dynamics, mechanics and circuit problems. Description: Setup and solution of equations which govern mechanical engineering systems. The undergraduate minor in nuclear engineering requires four core courses and three additional courses selected from a list of options. Minor Sheet. Same course as ECEN 5483. Same course as CHE 5273. MAE 5863 Building Heat Transfer and Simulation. Design requirements for unmanned versus manned vehicles. Prerequisites: Graduate standing or consent of instructor. Description: Basic principles governing the micro-mechanics of a lamina, and the macro-mechanics of a laminate are discussed in detail. Engineering principles of mechanical properties of various tissue and organ systems under normal and diseased conditions. Oral presentations, progress reports, and a professional log book documenting personal activity and contributions. Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours. The Bingo sheet provides an outline of all courses needed to fulfill the requirements for the Welding Engineering degree, and provides a plan to graduate in four years. Potential flows. Prerequisites: MAE 4243 (or equivalent). Aspects of other unmanned systems, including ground, surface, underwater and space vehicles. Mathematical representations of systems; linear dynamic solutions; controllability, observability, and stability; linearization and realization theory; and state feedback and state observer. To learn more, view all CEAT scholarship opportunities. Experimental material characterization and thermodynamic foundation of the constitutive behavior. Some topics included are: the vapor compression cycle (for refrigeration and heat pump applications); compressor and heat exchanger analysis; and waste-heat recovery topics including Organic Rankine Cycles (ORC). State-of-the-art instrumentation, diagnostic, and computerized data acquisition equipment and techniques applied to experiments including application of low speed wind tunnel testing techniques, rocket propulsion and control-jet experiments, fundamentals of supersonic nozzles, and flight test evaluation of performance, stability, control, and handling qualities of a propeller-driven airplane. The Department of Mechanical and Aerospace Engineering has full-time undergraduate academic advisors dedicated to assisting students. Mechanical Engineering is focused on a learning and research environment to instruct Students enrolled in mechanical engineering may choose to take specialized courses throughout the curriculum or maintain a broader course of study. Introduction to robot mobility, l.e., path planning, trajectory generation, and trajectory tracking. School of Mechanical and Aerospace Engineering. Offered for variable credit, 1-9 credit hours, maximum of 9 credit hours. Description: Conduction, convection and radiation heat transfer applied to building thermal simulation. Fluid dynamics instrumentation, digital data acquisition and processing, design of facilities and experiments, technical report writing and design project with experimental verification. Other courses must be approved by the MAE Department, please contact your advisor for … MAE 5503 Mechanics of Advanced Composites for Structural Design. Description: Analytical and experimental techniques for the analysis of vibration, stress, force and motion.
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