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AERO 612: Wave Propagation
3.00 Credits
Texas A & M University-College Station
Wave Propagation in Isotropic and Anisotropic Solids. (3-0). Credit 3. Mathematical and experimental methods of studying stress waves with emphasis on anisotropic solids, e.g., fiber-reinforced composite materials; waves in an unbounded medium, in a half-space, in rods; waves in a general anisotropic medium; wave surface, slowness surface, velocity surface, energy velocity and group velocity. Prerequisites: MEMA 601 or AERO 603. Cross-listed with MEMA 612.
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AERO 612 - Wave Propagation
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AERO 615: Num Meth Intern Flow
3.00 Credits
Texas A & M University-College Station
Numerical Methods for Internal Flow. (3-0). Credit 3. Methods for solving internal flow problems; viscous and inviscid compressible flow, Euler/Navier Stokes solvers, boundary conditions. Prerequisite: MATH 601 or approval of instructor.
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AERO 615 - Num Meth Intern Flow
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AERO 616: Damage In Composit Matls
3.00 Credits
Texas A & M University-College Station
Damage and Failure in Composite Materials. (3-0). Credit 3. Mechanisms and models related to damage and failure in composite materials subjected to mechanical loads. Prerequisite: Courses in composite materials, elasticity. Cross-listed with MEMA 616.
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AERO 616 - Damage In Composit Matls
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AERO 617: Micromechanics
3.00 Credits
Texas A & M University-College Station
Micromechanics. (3-0). Credit 3. Eigenstrains; inclusions, and inhomogeneities; Eshelby's solution for an ellipsoidal inclusion; Eshelby's equivalent inclusion method. Effective elastic properties of composites; composite spheres and cylinders models; bounds on effective moduli; Hashin-Shtrikman bounds; applications to fiber, whisker and particulate reinforced composites; introduction to micromechanics of inelastic composites and solids with damage. Prerequisites: MEMA 601, 602, or AERO 603, 605. Cross-listed with MEMA 625.
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AERO 617 - Micromechanics
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AERO 618: Mechanic Active Material
3.00 Credits
Texas A & M University-College Station
Mechanics of Active Materials. (3-0). Credit 3. Introduction to coupled field theories: constitutive response of materials with thermal and electromagnetic coupling; microstructural changes due to phase transformations; shape memory alloys; piezoelectric and magnetostrictive materials; active polymers and solutions. Micromechanics of active composites. Prerequisites: MEMA 601 or MEMA 602. Cross-listed with MEMA 626.
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AERO 618 - Mechanic Active Material
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AERO 619: Matl Model Phase Trans
3.00 Credits
Texas A & M University-College Station
Materials Modeling of Phase Transformation and Microstructural Evolution (3-0) Credit 3. Computer modeling and simulation of microstructural evolution during various phase transformation processes in solid materials, including spinodal decomposition, ordering, martensitic transformation, ferroelectric and ferromagnetic domain evolution, dislocation dynamics, and crack propagation. Prerequisites: Graduate classification and approval of instructor. Cross-listed with MEMA 619 and MSEN 619.
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AERO 619 - Matl Model Phase Trans
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AERO 620: Unsteady Aerodynamics
3.00 Credits
Texas A & M University-College Station
Unsteady Aerodynamics. (3-0). Credit 3. Theoretical formulation of unsteady airfoil theory and techniques used for determining airloads on oscillating lift surfaces; exact solutions and various approximations presented and evaluated; application to problems of unsteady incompressible, subsonic and transonic flows about airfoils and wings. Prerequisite: Approval of instructor.
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AERO 620 - Unsteady Aerodynamics
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AERO 622: Spacecraft Dynamics
3.00 Credits
Texas A & M University-College Station
Spacecraft Dynamics and Control. (3-0). Credit 3. Elements of analytical dynamics; modeling different types of spacecraft and control systems, sensors, and actuators; stability; control system design; effects of flexibility; attitude and orbital coupling; environmental effects. Prerequisites: AERO 422 or ECEN 420.
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AERO 622 - Spacecraft Dynamics
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AERO 623: Spacecraft Maneuvers
3.00 Credits
Texas A & M University-College Station
Optimal Spacecraft Attitude and Orbital Maneuvers. (3-0). Credit 3. Application of optimization and optimal control techniques to spacecraft maneuver problems; computation of open loop and feedback controls for linear and nonlinear spacecraft dynamical systems; low-thrust and impulsive control, discretization methods, case studies. Prerequisite: AERO 423 or equivalent.
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AERO 623 - Spacecraft Maneuvers
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AERO 624: Celestial Mechanics
3.00 Credits
Texas A & M University-College Station
Celestial Mechanics. (3-0). Credit 3. Analytical and numerical methods for computing spacecraft orbits under the influence of gravitational, aerodynamic, thrust and other forces; Keplerian two-body problem, perturbation methods, orbit determination, navigation and guidance for aerospace vehicles. Prerequisite: AERO 423 or equivalent.
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AERO 624 - Celestial Mechanics
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