2.097J/6.339J/16.920J Numerical Methods for Partial Differential Equations
Fall 2008
Flow over an HT13 airfoil at Reynolds number of 5000, solved with the Discontinuous Galerkin Finte Element code 3DG; Mach number contours (image ACDL, MIT)
Instructors: Anthony T Patera, Jaime Peraire, Jacob K White
TA: Alejandra Uranga Cabrera
Lecture: MW 8-9:30 A.M. (1-390)
Information:
A presentation of the fundamentals of modern numerical techniques for a wide range of linear and nonlinear elliptic, parabolic and hyperbolic partial differential equations and integral equations central to a wide variety of applications in science, engineering, and other fields. Topics include: mathematical formulations, finite difference and finite volume discretizations, finite element discretizations, boundary element discretizations, direct and iterative solution methods.
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