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Appropriate laboratory experience that combines elements of theory and practice is included in each student’s program, together with extensive computer-based experience. A graduate course or colloquium in a topic related to graduate studies in Aerospace Engineering. This design work will involve detailed design of efforts in such areas as: landing gear design, systems design, propulsion system integration, structures design and aerodynamic design. Completion of the KU Core is required in all majors. This course does not count towards hours needed for completion of degree program. Prerequisite: AE 507, AE 521, AE 545, AE 551, and AE 571. All petitions are approved by the Engineering Dean's Office with the guidance of the student's advisor and department. Engineering students may minor in many liberal arts areas or in the schools of Business, Journalism and Mass Communications, or Music. Study of the basic principles of operation and systems of internal and external combustion engines with emphasis on airplane reciprocating engines. Courses taken during the first 2 years are largely from the first 2 areas, with a few courses in the basic engineering sciences or computer science. Topics will include turbine configuration design, drive train engineering, composite rotor blade aerodynamic and structural design, characterizing the influence of the wind conditions on the operation, loads, and performance of a wind turbine, wind turbine controls systems engineering, and power electronic conversion. Component matching, cooling, regenerative systems, test methods and corrections.

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A student seeking an exception to the rules and practices of the school should first consult an advisor and then petition the school to consider the exception. Study of inlets, compressors, burners, fuels, turbines, jets, methods of analysis, testing, performance; environmental considerations. In accordance with this mission and with KU’s mission, all undergraduate engineering programs and the computer science program must meet these objectives. Additional objectives are specified in program descriptions. Topics include applications of generalized forces and coordinates, Lagrange equations, and a study of the performance of single and multiple degree of freedom in vibrational systems. A few credit hours from courses in aerospace studies, military science, or naval science may be applied toward graduation in lieu of certain required or elective courses. Presentation and discussion of technical and professional paper reports. Discussion of topics such as ethics, registration, interviewing, professional societies, personal planning. A student normally must complete the ROTC curriculum, whether or not it leads to a commission, to receive ROTC hours toward a bachelor’s degree in engineering.

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