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 hours Type of teaching Media implementation Concretization 30 Lecture - 15 Practice - Lecturer independent learning Workload hours Type of teaching Media implementation Concretization 15 Exam preparation - 30 Preparation/follow-up for course work - 60 seminar paper -
- Graded examination
- Homework / Assignment and oral exam
- Literature
- P. Seifert, Höhere Festigkeitslehre, Vorlesungsskript (Hochschule Osnabrück), 2016.
- R. Kienzler, R. Schröder, Einführung in die Höhere Festigkeitslehre, Springer, 2019.
- H. Göldner: Lehrbuch höhere Festigkeitslehre, Bd. 1. Leipzig: Fachbuchverlag, 1991.
- H. Göldner: Lehrbuch höhere Festigkeitslehre, Bd. 2. Leipzig: Fachbuchverlag, 1992.
- E. Hinton: Analysis and optimization of prismatic and axissymmetric shell structures. London: Springer, 2003.
- 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