Mechanical and Aerospace Engineering. Laboratory studies and case histories. (3 hr. Grid Generation. Simplified UAV path planning algorithmshms. MAE 430. Mechanical automation design associated with robotic systems, including economic justification and ethics. lec.). MAE 216. PR: MAE 365 or MAE 466. The undergraduate curriculum includes extensive study of the basic principles of fluid dynamics, solid mechanics and … MAE 411. MD Curriculum. (3 hr. courses in the mechanical engineering program, see the Mechanical Vibrations. PR: WVU sections require MATH 261 with a grade of C- or better and MAE 320 and (MAE 331 or MAE 335), WVUIT sections require MAE 320 and MAE 321 as prerequisites and MAE 419 as a corequisite. 1 Hour. PR: WVU sections require PHYS 111 and MATH 156, WVUIT sections require MATH 156 as a prerequisite. The dual B.S.A.E./B.S.M.E. Experiments demonstrating fundamental concepts of thermal-fluid systems; hydrostatics, dynamic pressure forces, dimensional analysis, pipe pressure losses, drag on external bodies, flow measurements devices, engine performance, fan and turbine performance, saturated vapor curve determination. they build solutions to complex real-world problems. Introduction to history, current domestic regulations, and policies on unmanned aerial systems. MAE 421. The PDF will include all information unique to this page. lab.) PR: WVU sections require MATH 251 with a grade of C- or better and MAE 241, WVUIT sections require MATH 156 and MAE 242 as prerequisites. Topics include propeller and rotor theory, helicopter performance, jet flaps, ducted fans, and propeller-wing combinations. 3 Hours. PR: Consent. 3 Hours. Analytical and finite element solution of vibration and heat transfer problems. MAE 271. PR: WVU sections require MATH 261 with a grade of C- or better and MAE 343 and (MAE 342 or MAE 345), WVUIT sections require MATH 251 and MAE 454 and MAE 455 as prerequisites and MAE 423 as a corequisite. MAE 316. 1 Hour. PR: MAE 336 and PR or Conc: MAE 426. lec.). have the opportunity to apply what they learn in class to hands-on projects, where lec.). 3 Hours. PR: MAE 336. PR: WVU sections require MATH 261 with a grade of C- or better and MAE 342 and MAE 343, WVUIT sections require MAE 243 as a prerequisite and MAE 342 as a corequisite. 3 Hours. 3 Hours. Students will learn to use of the software debugger to solve coding issues that arise in more complex routines. Box 6878 lab.). Note: The dual degree requires twenty hours of technical electives. (3 hr. Laws of Kepler and Orbital theory. (University of Wisconsin-Milwaukee), Marcello R. Napolitano - Ph.D. (Oklahoma State University), Mario Perhinschi - Ph. Family Resources. Preliminary configuration and design concepts. Also a grade of C- or better is required in each of the four required mathematics courses and physics 111. Explicit, implicit, and iterative techniques. (3 hr. (3 hr. PR: MAE 345. PR: MAE 320. Computer aided design fundamentals and formulation of the stiffness matrix and load vector 1D and 2D elements based on variational principles. Thermal and Fluids Laboratory. Student team completes design, construction, and testing of research experiment; that is then flown on NASA microgravity research aircraft. Problems in Thermodynamics. Introduction to the process of designing mechanical objects and machines composed of multiple objects. PR: Consent. Transient and frequency response using Laplace transformation. Microgravity Research 2. 3 Hours. (3 hr. and perspectives from both disciplines, then apply them to generate novel solutions lec.). Teaching practice as a tutor or assistant. MAE 437. Beyond the classroom, we encourage students to be engaged in various student organizations, PR: MAE 316 and (MAE 331 or MAE 335) with a grade of C or better in each, or consent. Transfer functions and block diagrams for linear physical systems. lec., 6 hr. Common analysis methods and design criteria for launch vehicles, orbital mechanics, atmospheric re-entry, stabilization, thermal, power, and attitude control. Introduction to Mechanical Design. Selection of appropriate noise criteria and control methods. Unsysmmetric bending. 3 Hours. All course equivalencies have been approved by MAE Department Curriculum Committees; these are documented in the WVU Catalog: Students typically can transfer … The MSAE, MSME and MSE degrees require completion of 24 hours of coursework (with a minimum cumulative grade point average of 3.0/4.0) plus 6 hours of research leading to a thesis. in mechanics, modeling and controls, and thermal sciences. These projects include the MAE 475. (1 hr. 1 Hour. Materials Engineering Laboratory. (1 hr. PR: MAE 475. M.S., Control Engineering, Shanghai Jiao Tong University 1999 For specific information on the following programs please see the links to the right: MAE 102. MAE 433. Engineering Systems Design. < West Virginia University Now catalog.wvu.edu. Engineering Acoustics. The coursework must include 6 hours of mathematics from an approved list and 12 hours of courses from mechanical and aerospace engineering. (3 hr. MAE Dept. Flight Vehicle Propulsion. MAE 371. Involves temporary placement with public or private enterprise for professional competence development. Dynamics of vector fluid flow fields. Space Flight and Systems. MAE 417. lec.). MAE 456. MAE 442. MAE 427. One-, two-, three-dimensional steady state conduction: transient conduction; free and forced convection; radiation; heat exchangers; heat and mass transfer by analytical, numerical analogical and experimental methods; design of thermal systems. firstname.lastname@example.org. Introduction to multi-rotor unmanned aerial vehicle (UAV) dynamics. Student teams propose, design, construct, and test experimental packages, launched as payloads via a weather balloon that is tracked and recovered. (3 hr. Advanced Mechatronics. Processing and manufacturing methods for metals, ceramics, polymers, composites, and hybrid materials; considerations for nano-, micro-, and macro-scale; relationships between process method, material structure, properties, cost, process energy requirements, and geometric limitations; and process selection based on materials selection and desired properties. 1-3 Hours. Reveal the mechanical behavior of materials, including elastic behavior, plastic deformation, high temperature deformation and deformation of non-crystalline materials like polymer and composites. increased pressure on aerospace engineers to be adaptive and innovative in PR: MATH 261 with a grade of C- or better, (ENGR 102 or CHE 102 or MAE 102), and MAE 242. (3 hr. Introduction to spacecraft attitude representations, including direction cosine matrices, Euler angles, and quaternions. Balloon Satellite Project 2. lab.). (3 hr. Noise abatement technology. 3 Hours. 3 Hours. 1306 Evansdale Drive | PO Box 6106 Morgantown, West Virginia 26506-6106 Phone: 304.293.3111 | Fax: 304.293.6689 Space Systems Design. Advanced aerodynamic and material concepts are utilized by an integrated sophomore, junior, senior team. For Aeronautical Area of Emphasis students must completed MAE 365, MAE 426, MAE 475, MAE 485. D. (University of Puerto Rico), Ali Baheri - Ph.D. (University of North Carolina at Charlotte), Marc Besch - Ph. Emphasis on applications. Analysis and design of compressible, inviscid flows; isentropic flow, shock waves, Prandtl-Meyer expansions, supersonic nozzles and diffusers. 3 Hours. Learn about next steps, student services and how to connect with other parents and families. MAE 490. Graduates will be engaged in their professional careers and/or post graduate training as demonstrated by their abilities to identify and solve important biomedical … Morgantown, West Virginia 26506-6106 Students have the opportunity to earn a bachelor of science Computer aided design fundamentals and formulation of the stiffness matrix and load vector 1D and 2D elements based on variational principles. lec.). Stability augmentation. IC engine operating characteristics; engine cycles; thermochemistry and fuels; air and fuel induction; fluid motion within combustion chamber; combustion; exhaust flow; emissions and air pollution; heat transfer in engines; friction and lubrication; advanced engine concepts. PR: MAE 242 and MAE 335. 3 Hours. 1 Hour. MAE 426. Vector operations, couples and moments, resultants, centers of gravity and pressure, static friction, free-body diagrams, trusses and frames. Aircraft equations of motion. Instrumentation and measurements emphasizing systems that combine electronics and mechanical components with modern controls and microprocessors. Energy requirements for satellite and interplanetary travel. lec.). MAE 467. Hands-on applications of concepts learned in other courses to meet specified performance or competition criteria of capstone design courses. Validation and verification of solution. Equilibrium combustion thermodynamics. Solution of equations of motion via Laplace transformation. Application of automatic control theory. Analysis techniques include graphical, analytical and computational methods. MAE 215. (May be repeated up to a maximum of 18 hours.) Explore applications of CAD/FEM packages in design case studies. 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