Course topics include structural analysis, structural dynamics, materials (including advanced composites), aeroelasticity, experimental structural mechanics, and computer-aided design of structures.Flight mechanics involves the analysis of the motion of aircraft, missiles, rockets, reentry vehicles, and spacecraft that are subjected to gravitational, propulsive, and aerodynamic forces; the study of uncontrolled motion of satellites and coasting spacecraft is usually referred to as orbital mechanics. This option is intended for the undergraduate student whose primary interest is space and spacecraft.The degree requires all students to take three semester hours of an approved structures elective.The department offers students the opportunity to participate in special projects such as student-built radio-controlled aircraft competitions and student satellite-building projects.
This device does not need to be brought to campus on a daily basis, but individual courses may require that the device be brought to certain lectures, labs, and/or exams.
Both area options are complemented by general education courses and courses offered in other engineering disciplines. Graduate study in orbital mechanics is possible for those with degrees in engineering, science, or mathematics. Academic credit for participation in departmentally approved student projects is available on the pass/fail basis through the course 1. The objectives of the program are to enable the student to attain a deeper understanding of aerospace engineering fundamentals, a knowledge of recent developments, and the ability as a master’s degree student to participate in research and as a doctoral degree student to conduct individual research. These subjects are treated at a fundamental level that lays a foundation for work in a broad variety of specialties in the aircraft industry.
Course topics include linear system theory, classical control theory, digital control, and probability theory.Students entering aerospace engineering are required to have access to a portable computing device capable of running the software tools required for undergraduate engineering analyses (MATLAB, SOLIDWORKS, Word, Excel, etc.)
In addition, the student may choose technical electives that increase the breadth of the program or that provide additional depth within one or more subdisciplines within the department. This device does not need to be brought to campus on a daily basis, but individual courses may require that the device be brought to certain lectures, labs, and/or exams.
Because of the diverse nature of the work, the aerospace engineer must have a basic knowledge of physics, mathematics, digital computation, and the various disciplines of aerospace engineering: aerodynamics and propulsion, structural mechanics, flight mechanics and orbital mechanics, and control. Subject matter in these areas includes trajectory analysis and optimization; attitude dynamics, stability, and control; flight test; orbit determination; orbital operations; systems engineering; sensors; satellite hardware applications; and simulation.Control theory is applied in aerospace engineering to the development of automatic flight control systems for aircraft (autopilots and stability augmentation systems), attitude control systems for satellites, and guidance and control systems for missiles, rockets, reentry vehicles, and spacecraft. The curriculum requires students to use modern engineering tools, to work individually, and to practice teamwork.The first two years of the aerospace engineering curriculum emphasize fundamental material along with engineering sciences, while the third year introduces concepts in the areas of fluid mechanics, structural mechanics, system dynamics and control, and experimentation. Students entering aerospace engineering are required to have access to a portable computing device capable of running the software tools required for undergraduate engineering analyses (MATLAB, SOLIDWORKS, Word, Excel, etc.) Courses that may be used to fulfill Courses used to fulfill technical elective requirements must be approved by the aerospace engineering faculty before the student enrolls in them.The student must take all courses required for the degree on the letter-grade basis and must earn a grade of at least The technical area option allows the student to choose 13 semester hours of technical area courses in either atmospheric flight or space flight. Naval Aviation is renowned for the demands it places upon its aviators.
These subjects are treated at a fundamental level that lays a foundation for work in a broad variety of specialties in space-related industries. Minimum and recommended specifications may be found on the department website.Course requirements include courses within the Cockrell School of Engineering and other required courses. These time-intensive projects are open to all aerospace engineering students with at least 15 semester hours of University credit toward the degree and a grade point average of at least 2.50. The skills and concentration required to land a high performance jet on an aircraft carrier deck pitching in the black of night, or to track a submarine while flying at only a few feet above stormy seas, are linked to a solid academic background and top physical conditioning. In UGS 302, all sections carry a writing flag.
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