Wind tunnel and water channel experiments at subsonic speeds; use of instrumentation and written reports. Three laboratory hours a week for one semester. Prerequisite: Credit with a grade of at least C or registration for Aerospace Engineering 320 and 333T (or another approved engineering communication course), and Mathematics 427L with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Analysis of aerospace structural systems, with emphasis on matrix methods. Three lecture hours a week for one semester, with discussion hours to be arranged. Prerequisite: Aerospace Engineering 311 (or 211) and Engineering Mechanics 319 with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Study of the deformation and fracture behavior of materials used in aerospace vehicles. Structure-property relations, methods of characterizing material behavior, use of properties in the design process. Case histories. Written reports. Two lecture hours and three laboratory hours a week for one semester. Prerequisite: Engineering Mechanics 319 with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Directed work on an organized student project in aerospace engineering or engineering mechanics. Students complete a final report. The equivalent of one lecture hour a week for one semester. May be repeated for credit. Prerequisite: At least thirty-two semester hours of coursework, a University grade point average of at least 3.00, preparation of a laboratory participation plan, and approval by both the faculty member directing the student project and the undergraduate adviser.
Score: 5.832434 Details | Listing | Web page
Fundamentals of signals and systems; convolution; Laplace transforms; response of linear, time-invariant systems to standard inputs; frequency response methods; time-domain analysis; introduction to control systems. Three lecture hours a week for one semester. Prerequisite: Engineering Mechanics 311M and Mathematics 427K with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Character of viscous fluid motion; laminar and turbulent boundary layer solutions; convective heat transfer solutions for low-speed and high-speed flows; energy transfer by conduction in one and two independent variables; energy transfer by radiation. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 320 with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Development and implementation of finite-difference schemes for numerical solution of subsonic, transonic, and supersonic flows. Emphasis on convection and diffusion equations of fluid dynamics. Evaluation of accuracy, stability, and efficiency. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 311 (or 211) and 320 with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Flutter, divergence, control reversal, flexibility effects on aircraft stability and control; design implications; stability augmentation and response suppression; introduction to quasi-steady aerodynamic theories. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 321K (or 221K and 121M) and 330M with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Conceptual design of an aircraft to meet a mission specification. Includes estimation of weight, cost from payload, and range requirements; selection of configuration; preliminary sizing of wing, fuselage, and tail/canard; aerodynamic design of wing and tail; weight and balance; and performance estimation. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 367K with a grade of at least C, and credit with a grade of at least C or registration for Aerospace Engineering 376K.
Score: 5.832434 Details | Listing | Web page
Preliminary design of an aircraft from a conceptual design to satisfy a given set of requirements. Includes preliminary structural design, detailed estimates of weight, balance, and performance; and satisfaction of stability, control, and handling quality requirements. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 361K with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Shock and expansion waves, quasi-one-dimensional flow, supersonic wind tunnel operation, linearized flow, and compressibility effects on aerodynamics of airfoils and bodies. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 320 with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Experiments using a variable-Mach number supersonic wind tunnel and ballistics range. Studies aerodynamics of blunt bodies and simple airfoils in supersonic flow, and flow visualization techniques and pressure instrumentation. Three laboratory hours a week for one semester. Prerequisite: Aerospace Engineering 362K with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
History and principles of space flight from early Chinese rocket experiments to Apollo 17 and the Space Shuttle; technological benefits from the space program and future space projects. Three lecture hours a week for one semester. May not be counted as an aerospace engineering course for the Bachelor of Science in Aerospace Engineering; may not be counted as a technical elective, a technical area course, or an engineering elective for any engineering degree. Prerequisite: Upper-division standing or consent of instructor.
Score: 5.832434 Details | Listing | Web page
Design of structural components; experimental study of static and dynamic behavior of structures; liability and ethics. Written reports. Three lecture hours and four laboratory hours a week for one semester. Prerequisite: Aerospace Engineering 369K and 333T (or another approved engineering communication course) with a grade of at least C in each, and credit with a grade of at least C or registration for Aerospace Engineering 365.
Score: 5.832434 Details | Listing | Web page
Three lecture hours a week for one semester. Aerospace Engineering 364 and 379L (Topic: Airfoil and Wing Design Theory ) may not both be counted. Prerequisite: Aerospace Engineering 320, and credit with a grade of at least C or registration for Aerospace Engineering 362K.
Score: 5.832434 Details | Listing | Web page
Discrete and continuous models of structures; analysis of transient and steady-state responses; design of dynamic structures by analytical and computer methods. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 330M with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Basic satellite and spacecraft motion, orbital elements, coordinate systems and transformations; basic three-dimensional spacecraft attitude dynamics. Three lecture hours a week for one semester. Prerequisite: Engineering Mechanics 311M and Mathematics 427K with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Selected topics in satellite motion and satellite applications, orbital coordinate systems, time, rendezvous and intercept, interplanetary trajectories, perturbing forces and perturbed trajectories. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 366K with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Mission design program library, numerical techniques, mission planning references, mission constraints, mission design projects. Written reports. Three laboratory hours a week for one semester. Prerequisite: Aerospace Engineering 366K with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Equations of motion for rigid aircraft; aircraft performance, weight and balance, static stability and control, and dynamic stability; design implications. Three lecture hours a week for one semester. Prerequisite: Aerospace Engineering 320 and 330M with a grade of at least C in each.
Score: 5.832434 Details | Listing | Web page
Introduction to flight testing; instrumentation and methodology; performance testing. Computer modeling and dynamic simulation of aircraft motion; aircraft sizing. Written reports. Three laboratory hours a week for one semester. Prerequisite: Credit with a grade of at least C or registration for Aerospace Engineering 367K.
Score: 5.832434 Details | Listing | Web page
Design of measurement systems; standards; calibration; digital signal processing, time-domain and frequency-domain representation of data; transducers and signal conditioning; measurement of acceleration, displacement, force, length, strain, and temperature; safety. Written reports. Two lecture hours and three laboratory hours a week for one semester. Prerequisite: Engineering Mechanics 319 with a grade of at least C, Electrical Engineering 331 or Mechanical Engineering 340 with a grade of at least C, and credit with a grade of at least C or registration for Aerospace Engineering 333T (or another approved engineering communication course).
Score: 5.832434 Details | Listing | Web page
Fundamentals of linear control analysis and design for single-input, single-output systems; stability and performance measures; Routh Hurwitz analysis; root locus methods; frequency response (Bode and Nyquist); introduction to full-state feedback. Three lecture hours a week for one semester. Prerequisite: Credit with a grade of at least C or registration for Aerospace Engineering 367K.
Score: 5.832434 Details | Listing | Web page
Three laboratory hours a week for one semester. Prerequisite: Aerospace Engineering 370L with a grade of at least C.
Score: 5.832434 Details | Listing | Web page
Experimentation with Global Positioning System receivers; determination of performance; special applications, such as surveying and kinematic positioning. Includes prelab and laboratory assignments. Three laboratory hours a week for one semester. Prerequisite: Concurrent enrollment in Aerospace Engineering 272N.
Score: 5.832434 Details | Listing | Web page
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