Difference between revisions of "Numpde19"

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- Preliminary lecture notes:
 
- Preliminary lecture notes:
[http://www.asc.tuwien.ac.at/~schoeberl/wiki/lva/notes/numpde.pdf pdf]
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[http://www.asc.tuwien.ac.at/~schoeberl/wiki/lva/numpde18/numpde.pdf pdf]
  
 
- In the exercises, we are going to use [https://ngsolve.org NGSolve]: Tutorials: [https://ngsolve.org/docu/latest/i-tutorials/index.html i-Tutorials] [http://www.asc.tuwien.ac.at/~schoeberl/wiki/lva/numpde15/lec1.py lec1.py]
 
- In the exercises, we are going to use [https://ngsolve.org NGSolve]: Tutorials: [https://ngsolve.org/docu/latest/i-tutorials/index.html i-Tutorials] [http://www.asc.tuwien.ac.at/~schoeberl/wiki/lva/numpde15/lec1.py lec1.py]

Revision as of 15:24, 27 February 2019

First lecture: 4. March 2019 at Freihaus, third floor, green area, room: Seminarraum DA 03 C

Lecture and exercise: Philip Lederer (Philip Lederer)

Notes on lecture and exercise

- Preliminary lecture notes: pdf

- In the exercises, we are going to use NGSolve: Tutorials: i-Tutorials lec1.py

- Exercises are located here (psw protected)

Additional literature

Dietrich Braess: Finite Elements: Theory, Fast Solvers, and Applications in Solid Mechanics, Cambridge University Press, 2007

Cleas Johnson: Numerical Solution of Partial Differential Equations by the Finite Element Method, Cambridge Univ. Press, 1987, Dover 2009

Susanne Brenner & Ridgway Scott: The Mathematical Theory of Finite Elements, Springer 2008

Alexandre Ern & Jean-Luc Guermond: Theory and Practice of Finite Elements, Springer, 2010