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Discrete and Continuum Simulation (DCS)5 ECTS
(englische Bezeichnung: Discrete and Continuum Simulation)
(Prüfungsordnungsmodul: Discrete and Continuum Simulation)

Modulverantwortliche/r: Paolo Moretti
Lehrende: Michael Zaiser, Erik Bitzek


Start semester: WS 2021/2022Duration: 2 semesterCycle: halbjährlich (WS+SS)
Präsenzzeit: 60 Std.Eigenstudium: 90 Std.Language: Englisch

Lectures:

    • Foundations of Finite Element Simulation (Lecture/Tutorial) (WS 2021/2022)
      (Vorlesung, 1 SWS, Michael Zaiser, Wed, 10:15 - 11:45, CIP Pool WW; Topic: FEM I Time: Wednesdays 10:15 AM Amsterdam, Berlin, Rome, Stockholm, Vienna Join Zoom Meeting https://fau.zoom.us/j/93555063204?pwd=WmZ4L1ozaCtUOEpKMDZ2VHVnK2xZdz09 Meeting ID: 935 5506 3204 Passcode: 876554; Preliminary meeting: 27.10.2021, 10:15 - 11:45 Uhr, 2.018-2 Seminarraum Technikum 2)
    • Foundations of Finite Element Simulation (Tutorial) (WS 2021/2022)
      (Übung, 1 SWS, Michael Zaiser, Preliminary meeting: 27.10.2021, 10:15 - 11:45 Uhr, 2.018-2 Seminarraum Technikum 2)
    • Numerische Methoden in den Werkstoffwissenschaften - Atomistische Methoden (SS 2022)
      (Vorlesung mit Übung, 4 SWS, Erik Bitzek, single appointment on 3.6.2022, 13:15 - 14:45, 1.84; single appointment on 3.6.2022, 15:00 - 18:00, 0.157-115; single appointment on 24.6.2022, 13:15 - 14:45, 1.84; single appointment on 24.6.2022, 15:00 - 18:00, 0.157-115; single appointment on 22.7.2022, 15:00 - 18:00, 0.157-115; single appointment on 22.7.2022, 13:15 - 14:45, 1.84; Vorbesprechung 06.05. 13:15-14:00 Uhr per zoom; For more information see studon: https://www.studon.fau.de/crs2202381.html)

Inhalt:

1. Atomistic simulation methods; 2. Molecular dynamics simulations; 3. Statics and energy minimization; 4. Continuum models for materials simulation; 4. Mathematical formulation and discretization schemes; 5. Finite element method

Lernziele und Kompetenzen:

The students

  • understand and operate the state-of-the-art modeling techniques in materials simulation, both at the atomistic level and in the continuum.

  • acquire advanced knowledge of the molecular dynamics methods,

  • acquire advanced knowledge of the finite element method

  • acquire advanced knowledge of the advanced techniques of data analysis that are relevant in material modeling, both in research and in applications.


Verwendbarkeit des Moduls / Einpassung in den Musterstudienplan:

  1. Nanotechnologie (Master of Science)
    (Po-Vers. 2020w | TechFak | Nanotechnologie (Master of Science) | Gesamtkonto | Kernfächer | Werkstoffsimulation | Discrete and Continuum Simulation)
Dieses Modul ist daneben auch in den Studienfächern "Materialwissenschaft und Werkstofftechnik (Master of Science)" verwendbar. Details

Studien-/Prüfungsleistungen:

Discrete and Continuum Simulation (Prüfungsnummer: 62721)
Prüfungsleistung, mündliche Prüfung, Dauer (in Minuten): 15, benotet, 5 ECTS
Anteil an der Berechnung der Modulnote: 100.0 %
Prüfungssprache: Englisch

Erstablegung: SS 2022, 1. Wdh.: WS 2022/2023
1. Prüfer: Michael Zaiser

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