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A A 499: Undergraduate Research
1.00 - 5.00 Credits
University of Washington-Seattle Campus
Research on special topics under the supervision of a faculty member. Application of fundamentals learned in the oom to real problems in research. A maximum of 6 credits may be applied toward senior technical electives. Offered: AWSpS.
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A A 499 - Undergraduate Research
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A A 501: Physical Gasdynamics I
3.00 Credits
University of Washington-Seattle Campus
Equilibrium kinetic theory; chemical thermodynamics; thermodynamic properties derived from quantum statistical mechanics; reacting gas mixtures; applications to real gas flows and gas dynamics. Offered: odd years; A.
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A A 501 - Physical Gasdynamics I
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A A 502: Physical Gasdynamics II
3.00 Credits
University of Washington-Seattle Campus
Introduction to vibrational relaxation and nonequilibrium chemistry. Nonequilibrium physics applied to flow. Brief introduction to nonequilibrium kinetic theory. Application to a variety of research and development areas such as high-temperature energy systems and gas lasers. Offered: even years; W.
Prerequisite:
A A 501 or permission of instructor
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A A 502 - Physical Gasdynamics II
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A A 503: Kinetic Theory/Radiative Transfer
3.00 Credits
University of Washington-Seattle Campus
Boltzmann and Collisionless Boltzmann (Vlasov) equations. Instabilities in homogeneous and inhomogeneous plasma, quasi-linear diffusion, wave-particle interaction, collisional (Fokker- Plank) equation. Introduction to radiative nonequilibrium, scattering and absorption processes. Integral equation of radiative transfer. Offered: even years; Sp.
Prerequisite:
A A 501 or permission of instructor
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A A 503 - Kinetic Theory/Radiative Transfer
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A A 504: Fluid Mechanics
3.00 Credits
University of Washington-Seattle Campus
Review of thermodynamics; vectors and dyads. Derivation of the Navier-Stokes equations, stream functions and potential functions; integrals of the equations of motion. Boundary conditions and discontinuity surfaces in fluids. Exact solutions. Dimensional analysis. Vorticity dynamics. Highly viscous flows. Rotational flows. Offered: A.
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A A 504 - Fluid Mechanics
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A A 505: Fluid Mechanics of Inviscid Flow I
3.00 Credits
University of Washington-Seattle Campus
Ideal incompressible flow; potential and stream functions. Airfoil theory and lifting line theory. Introduction to nonsteady flow; sound waves and surface waves; special topics. Offered: even years; W.
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A A 505 - Fluid Mechanics of Inviscid Flow I
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A A 506: Fluid Mechanics of Inviscid Flow II
3.00 Credits
University of Washington-Seattle Campus
Ideal compressible flow; supersonic airfoils; shock waves; slender-body theory; lifting surface theory; approximate methods. Transonic flow; similarity; special topics. Offered: even years; Sp.
Prerequisite:
A A 505
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A A 506 - Fluid Mechanics of Inviscid Flow II
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A A 507: Aerodynamics of Viscous Fluids I
3.00 Credits
University of Washington-Seattle Campus
Introduction to viscous flow; exact solutions of the laminar equations of motion; approximate equations. Exact solutions for laminar boundarylayer equations. Approximate methods for compressible laminar boundary layers. Offered: odd years; W.
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A A 507 - Aerodynamics of Viscous Fluids I
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A A 508: Aerodynamics of Viscous Fluids II
3.00 Credits
University of Washington-Seattle Campus
The phenomena of turbulence; transition prediction; Reynolds stresses; turbulent boundary-layer equations. Approximate methods for turbulent boundary layers. Offered: odd years; Sp.
Prerequisite:
A A 507 or permission of instructor
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A A 508 - Aerodynamics of Viscous Fluids II
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A A 509: CFD I
3.00 Credits
University of Washington-Seattle Campus
No course description available.
Prerequisite:
Separate File
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A A 509 - CFD I
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