Advanced Strength of Materials

Faculty

Faculty of Engineering and Computer Science

Version

Version 1 of 14.02.2026.

Module identifier

11M2219

Module level

Master

Language of instruction

German

ECTS credit points and grading

5.0

Module frequency

only winter term

Duration

1 semester

 

 

Overall workload

The total workload for the module is 150 hours (see also "ECTS credit points and grading").

Teaching and learning methods
Lecturer based learning
Workload hoursType of teachingMedia implementationConcretization
30Lecture-
15Practice-
Lecturer independent learning
Workload hoursType of teachingMedia implementationConcretization
15Exam preparation-
30Preparation/follow-up for course work-
60seminar paper-
Graded examination
  • Homework / Assignment and oral exam
Literature

  1. P. Seifert, Höhere Festigkeitslehre, Vorlesungsskript (Hochschule Osnabrück), 2016.
  2. R. Kienzler, R. Schröder, Einführung in die Höhere Festigkeitslehre, Springer, 2019.
  3. H. Göldner: Lehrbuch höhere Festigkeitslehre, Bd. 1. Leipzig: Fachbuchverlag, 1991.
  4. H. Göldner: Lehrbuch höhere Festigkeitslehre, Bd. 2. Leipzig: Fachbuchverlag, 1992.
  5. E. Hinton: Analysis and optimization of prismatic and axissymmetric shell structures. London: Springer, 2003.
  6. J. Rösler, H. Harders, M. Bäker: Mechanisches Verhalten der werkstoffe, Vieweg + Teubner, 2019.

Applicability in study programs

  • Applied Materials Sciences
    • Applied Materials Sciences M.Sc. (01.09.2025)

    Person responsible for the module
    • Mola, Javad
    Teachers
    • Mola, Javad