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Course Criteria
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3.00 Credits
Description: Introduction to space mission design and modern tools available to aid the designer, such as FoM and LCC. Includes brief case histories of some of the more successful space missions and design of a mission. Grading: Regular grades are awarded for this course: A B C D E. Special course fee required: $50. Usually offered: Spring.
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3.00 Credits
Description: Reversible and irreversible macroscopic thermodynamics; selected engineering applications. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): A ME 230, A ME 331. Usually offered: Fall.
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3.00 Credits
Description: Development of numerical techniques for the solution of ordinary and partial differential equations that arise in heat transfer and fluid mechanics; classification of equations, methods of solutions, examples. Graduate-level requirements include three additional projects. Grading: Regular grades are awarded for this course: A B C D E. May be convened with: A ME 431. Usually offered: Spring.
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3.00 Credits
Description: Convective energy, mass and momentum transfer; internal and external flow; exact, approximate and numerical solutions; application to current problems. Grading: Regular grades are awarded for this course: A B C D E. Special course fee required: Special fee may apply for web delivered sections. See the M.Eng Website (http://www.oneflexibledegree.com) for details. Prerequisite(s): A ME 432, A ME 500A, computer programming ability. Usually offered: Spring.
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3.00 Credits
Description: Conduction of heat; steady, transient, moving heat source, phase change, hyperbolic conduction, nonlinear problems and composite media; separation of variables. Laplace transform, integral transform, and Green's function methods. Fundamentals of radiative heat transfer; radiative properties of materials; gray-body and spectral exchange between surfaces; participating media; radiation combined with conduction and convection. Grading: Regular grades are awarded for this course: A B C D E. Special course fee required: Special fee may apply for web delivered sections. See the M.Eng Website (http://www.oneflexibledegree.com) for details. Prerequisite(s): A ME 432. Usually offered: Fall.
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3.00 Credits
Description: Boundary Layer Equations, basic solutions, turbulent flows, compressibility effects, 3D boundary layers. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): A ME 500A, A ME500B, A ME536A, A ME 536B. Usually offered: Spring.
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3.00 Credits
Description: Fundamental equations of motions; surface tension; kinematics of vorticity; integral solutions; irrotational flows; simple viscous flows. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): Concurrent registration, A ME 500A. Usually offered: Fall.
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3.00 Credits
Description: Small-disturbance inviscid theory; low Reynolds number flow; vorticity dynamics; boundary layers. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): Concurrent registration, A ME 500B. Usually offered: Spring.
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3.00 Credits
Description: Governing equations for compressible flows, shock and expansion waves, linearized flow, hypersonic flow, viscous flow, high temperature gas dynamics. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): A ME 500A, A ME 536A. Concurrent registration, A ME 500B. Usually offered: Spring.
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3.00 Credits
Description: Physical phenomena in turbulent shear flows; experimental techniques; observations and physical consequences; prediction methods; recent advances. Grading: Regular grades are awarded for this course: A B C D E. Prerequisite(s): A ME 500B, A ME 536A, A ME 536B. Usually offered: Fall.
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